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Published in: Brain Structure and Function 5/2014

01-09-2014 | Review

α-Synuclein in the olfactory system in Parkinson’s disease: role of neural connections on spreading pathology

Authors: Isabel Ubeda-Bañon, Daniel Saiz-Sanchez, Carlos de la Rosa-Prieto, Alino Martinez-Marcos

Published in: Brain Structure and Function | Issue 5/2014

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Abstract

Parkinson’s disease (PD) is a neurodegenerative disease characterized by bradykinesia, rigidity, resting tremor, and postural instability. Neuropathologically, intracellular aggregates of α-synuclein in Lewy bodies and Lewy neurites appear in particular brain areas according to a sequence of stages. Clinical diagnosis is usually established when motor symptoms are evident (corresponding to Braak stage III or later), years or even decades after onset of the disease. Research at early stages is therefore essential to understand the etiology of PD and improve treatment. Although classically considered as a motor disease, non-motor symptoms have recently gained interest. Olfactory deficits are among the earliest non-motor features of PD. Interestingly, α-synuclein deposits are present in the olfactory bulb and anterior olfactory nucleus at Braak stage I. Several lines of evidence have led to proposals that PD pathology spreads by a prion-like mechanism via the olfactory and vagal systems to the substantia nigra. In this context, current data on the temporal appearance of α-synuclein aggregates in the olfactory system of both humans and transgenic mice are of particular relevance. In addition to the proposed retrograde nigral involvement via brainstem nuclei, olfactory pathways could potentially reach the substantia nigra, and the possibility of centrifugal progression warrants investigation. This review analyzes the involvement of α-synuclein in different elements of the olfactory system, in both humans and transgenic models, from the hodological perspective of possible anterograde and/or retrograde progression of this proteinopathy within the olfactory system and beyond—to the substantia nigra and the remainder of the central and peripheral nervous systems.
Literature
go back to reference Albers MW, Tabert MH, Devanand DP (2006) Olfactory dysfunction as a predictor of neurodegenerative disease. Curr Neurol Neurosci Rep 6:379–386PubMed Albers MW, Tabert MH, Devanand DP (2006) Olfactory dysfunction as a predictor of neurodegenerative disease. Curr Neurol Neurosci Rep 6:379–386PubMed
go back to reference Angot E, Steiner JA, Hansen C, Li JY, Brundin P (2010) Are synucleinopathies prion-like disorders? Lancet Neurol 9:1128–1138PubMed Angot E, Steiner JA, Hansen C, Li JY, Brundin P (2010) Are synucleinopathies prion-like disorders? Lancet Neurol 9:1128–1138PubMed
go back to reference Ansari KA, Johnson A (1975) Olfactory function in patients with Parkinson’s disease. J Chronic Dis 28:493–497PubMed Ansari KA, Johnson A (1975) Olfactory function in patients with Parkinson’s disease. J Chronic Dis 28:493–497PubMed
go back to reference Arnold SE, Lee EB, Moberg PJ, Stutzbach L, Kazi H, Han LY, Lee VM, Trojanowski JQ (2010) Olfactory epithelium amyloid-beta and paired helical filament-tau pathology in Alzheimer disease. Ann Neurol 67:462–469PubMedCentralPubMed Arnold SE, Lee EB, Moberg PJ, Stutzbach L, Kazi H, Han LY, Lee VM, Trojanowski JQ (2010) Olfactory epithelium amyloid-beta and paired helical filament-tau pathology in Alzheimer disease. Ann Neurol 67:462–469PubMedCentralPubMed
go back to reference Beach TG, White CL 3rd, Hladik CL, Sabbagh MN, Connor DJ, Shill HA, Sue LI, Sasse J, Bachalakuri J, Henry-Watson J, Akiyama H, Adler CH (2009) Olfactory bulb alpha-synucleinopathy has high specificity and sensitivity for Lewy body disorders. Acta Neuropathol 117:169–174PubMedCentralPubMed Beach TG, White CL 3rd, Hladik CL, Sabbagh MN, Connor DJ, Shill HA, Sue LI, Sasse J, Bachalakuri J, Henry-Watson J, Akiyama H, Adler CH (2009) Olfactory bulb alpha-synucleinopathy has high specificity and sensitivity for Lewy body disorders. Acta Neuropathol 117:169–174PubMedCentralPubMed
go back to reference Benarroch EE (2010) Olfactory system: functional organization and involvement in neurodegenerative disease. Neurology 75:1104–1109PubMed Benarroch EE (2010) Olfactory system: functional organization and involvement in neurodegenerative disease. Neurology 75:1104–1109PubMed
go back to reference Berg D, Lang AE, Postuma RB, Maetzler W, Deuschl G, Gasser T, Siderowf A, Schapira AH, Oertel W, Obeso JA, Olanow CW, Poewe W, Stern M (2013) Changing the research criteria for the diagnosis of Parkinson’s disease: obstacles and opportunities. Lancet Neurol 12:514–524PubMed Berg D, Lang AE, Postuma RB, Maetzler W, Deuschl G, Gasser T, Siderowf A, Schapira AH, Oertel W, Obeso JA, Olanow CW, Poewe W, Stern M (2013) Changing the research criteria for the diagnosis of Parkinson’s disease: obstacles and opportunities. Lancet Neurol 12:514–524PubMed
go back to reference Bergmann O, Liebl J, Bernard S, Alkass K, Yeung MS, Steier P, Kutschera W, Johnson L, Landen M, Druid H, Spalding KL, Frisen J (2012) The age of olfactory bulb neurons in humans. Neuron 74:634–639PubMed Bergmann O, Liebl J, Bernard S, Alkass K, Yeung MS, Steier P, Kutschera W, Johnson L, Landen M, Druid H, Spalding KL, Frisen J (2012) The age of olfactory bulb neurons in humans. Neuron 74:634–639PubMed
go back to reference Bermingham-McDonogh O, Reh TA (2011) Regulated reprogramming in the regeneration of sensory receptor cells. Neuron 71:389–405PubMed Bermingham-McDonogh O, Reh TA (2011) Regulated reprogramming in the regeneration of sensory receptor cells. Neuron 71:389–405PubMed
go back to reference Bernheimer H, Birkmayer W, Hornykiewicz O, Jellinger K, Seitelberger F (1973) Brain dopamine and the syndromes of Parkinson and Huntington. Clinical, morphological and neurochemical correlations. J Neurol Sci 20:415–455PubMed Bernheimer H, Birkmayer W, Hornykiewicz O, Jellinger K, Seitelberger F (1973) Brain dopamine and the syndromes of Parkinson and Huntington. Clinical, morphological and neurochemical correlations. J Neurol Sci 20:415–455PubMed
go back to reference Bhatnagar KP, Kennedy RC, Baron G, Greenberg RA (1987) Number of mitral cells and the bulb volume in the aging human olfactory bulb: a quantitative morphological study. Anat Rec 218:73–87PubMed Bhatnagar KP, Kennedy RC, Baron G, Greenberg RA (1987) Number of mitral cells and the bulb volume in the aging human olfactory bulb: a quantitative morphological study. Anat Rec 218:73–87PubMed
go back to reference Bohnen NI, Muller ML, Kotagal V, Koeppe RA, Kilbourn MA, Albin RL, Frey KA (2010) Olfactory dysfunction, central cholinergic integrity and cognitive impairment in Parkinson’s disease. Brain 133:1747–1754PubMedCentralPubMed Bohnen NI, Muller ML, Kotagal V, Koeppe RA, Kilbourn MA, Albin RL, Frey KA (2010) Olfactory dysfunction, central cholinergic integrity and cognitive impairment in Parkinson’s disease. Brain 133:1747–1754PubMedCentralPubMed
go back to reference Braak H, Del Tredici K (2008) Invited Article: nervous system pathology in sporadic Parkinson disease. Neurology 70:1916–1925PubMed Braak H, Del Tredici K (2008) Invited Article: nervous system pathology in sporadic Parkinson disease. Neurology 70:1916–1925PubMed
go back to reference Braak H, Braak E, Yilmazer D, de Vos RA, Jansen EN, Bohl J, Jellinger K (1994) Amygdala pathology in Parkinson’s disease. Acta Neuropathol 88:493–500PubMed Braak H, Braak E, Yilmazer D, de Vos RA, Jansen EN, Bohl J, Jellinger K (1994) Amygdala pathology in Parkinson’s disease. Acta Neuropathol 88:493–500PubMed
go back to reference Braak H, Del Tredici K, Rub U, de Vos RA, Jansen Steur EN, Braak E (2003a) Staging of brain pathology related to sporadic Parkinson’s disease. Neurobiol Aging 24:197–211PubMed Braak H, Del Tredici K, Rub U, de Vos RA, Jansen Steur EN, Braak E (2003a) Staging of brain pathology related to sporadic Parkinson’s disease. Neurobiol Aging 24:197–211PubMed
go back to reference Braak H, Rub U, Gai WP, Del Tredici K (2003b) Idiopathic Parkinson’s disease: possible routes by which vulnerable neuronal types may be subject to neuroinvasion by an unknown pathogen. J Neural Transm 110:517–536PubMed Braak H, Rub U, Gai WP, Del Tredici K (2003b) Idiopathic Parkinson’s disease: possible routes by which vulnerable neuronal types may be subject to neuroinvasion by an unknown pathogen. J Neural Transm 110:517–536PubMed
go back to reference Braak H, de Vos RA, Bohl J, Del Tredici K (2006a) Gastric alpha-synuclein immunoreactive inclusions in Meissner’s and Auerbach’s plexuses in cases staged for Parkinson’s disease-related brain pathology. Neurosci Lett 396:67–72PubMed Braak H, de Vos RA, Bohl J, Del Tredici K (2006a) Gastric alpha-synuclein immunoreactive inclusions in Meissner’s and Auerbach’s plexuses in cases staged for Parkinson’s disease-related brain pathology. Neurosci Lett 396:67–72PubMed
go back to reference Braak H, Muller CM, Rub U, Ackermann H, Bratzke H, de Vos RA, Del Tredici K (2006b) Pathology associated with sporadic Parkinson’s disease–where does it end? J Neural Transm Suppl:89–97 Braak H, Muller CM, Rub U, Ackermann H, Bratzke H, de Vos RA, Del Tredici K (2006b) Pathology associated with sporadic Parkinson’s disease–where does it end? J Neural Transm Suppl:89–97
go back to reference Brundin P, Li JY, Holton JL, Lindvall O, Revesz T (2008) Research in motion: the enigma of Parkinson’s disease pathology spread. Nat Rev Neurosci 9:741–745PubMed Brundin P, Li JY, Holton JL, Lindvall O, Revesz T (2008) Research in motion: the enigma of Parkinson’s disease pathology spread. Nat Rev Neurosci 9:741–745PubMed
go back to reference Brunjes PC, Illig KR, Meyer EA (2005) A field guide to the anterior olfactory nucleus (cortex). Brain Res Brain Res Rev 50:305–335PubMed Brunjes PC, Illig KR, Meyer EA (2005) A field guide to the anterior olfactory nucleus (cortex). Brain Res Brain Res Rev 50:305–335PubMed
go back to reference Buck L, Axel R (1991) A novel multigene family may encode odorant receptors: a molecular basis for odor recognition. Cell 65:175–187PubMed Buck L, Axel R (1991) A novel multigene family may encode odorant receptors: a molecular basis for odor recognition. Cell 65:175–187PubMed
go back to reference Burke RE, Dauer WT, Vonsattel JP (2008) A critical evaluation of the Braak staging scheme for Parkinson’s disease. Ann Neurol 64:485–491PubMedCentralPubMed Burke RE, Dauer WT, Vonsattel JP (2008) A critical evaluation of the Braak staging scheme for Parkinson’s disease. Ann Neurol 64:485–491PubMedCentralPubMed
go back to reference Chaudhuri KR, Odin P (2010) The challenge of non-motor symptoms in Parkinson’s disease. Prog Brain Res 184:325–341PubMed Chaudhuri KR, Odin P (2010) The challenge of non-motor symptoms in Parkinson’s disease. Prog Brain Res 184:325–341PubMed
go back to reference Chaudhuri KR, Schapira AH (2009) Non-motor symptoms of Parkinson’s disease: dopaminergic pathophysiology and treatment. Lancet Neurol 8:464–474PubMed Chaudhuri KR, Schapira AH (2009) Non-motor symptoms of Parkinson’s disease: dopaminergic pathophysiology and treatment. Lancet Neurol 8:464–474PubMed
go back to reference Cheng HC, Ulane CM, Burke RE (2010) Clinical progression in Parkinson disease and the neurobiology of axons. Ann Neurol 67:715–725PubMedCentralPubMed Cheng HC, Ulane CM, Burke RE (2010) Clinical progression in Parkinson disease and the neurobiology of axons. Ann Neurol 67:715–725PubMedCentralPubMed
go back to reference Claassen DO, Josephs KA, Ahlskog JE, Silber MH, Tippmann-Peikert M, Boeve BF (2010) REM sleep behavior disorder preceding other aspects of synucleinopathies by up to half a century. Neurology 75:494–499PubMedCentralPubMed Claassen DO, Josephs KA, Ahlskog JE, Silber MH, Tippmann-Peikert M, Boeve BF (2010) REM sleep behavior disorder preceding other aspects of synucleinopathies by up to half a century. Neurology 75:494–499PubMedCentralPubMed
go back to reference Constantinidis J, de Ajuriaguerra J (1970) Familial syndrome with parkinsonian tremor and anosmia and its therapy with l-dopa associated with a decarboxylase inhibitor. Therapeutique 46:263–269PubMed Constantinidis J, de Ajuriaguerra J (1970) Familial syndrome with parkinsonian tremor and anosmia and its therapy with l-dopa associated with a decarboxylase inhibitor. Therapeutique 46:263–269PubMed
go back to reference Curtis MA, Kam M, Nannmark U, Anderson MF, Axell MZ, Wikkelso C, Holtas S, van Roon-Mom WM, Bjork-Eriksson T, Nordborg C, Frisen J, Dragunow M, Faull RL, Eriksson PS (2007) Human neuroblasts migrate to the olfactory bulb via a lateral ventricular extension. Science 315:1243–1249PubMed Curtis MA, Kam M, Nannmark U, Anderson MF, Axell MZ, Wikkelso C, Holtas S, van Roon-Mom WM, Bjork-Eriksson T, Nordborg C, Frisen J, Dragunow M, Faull RL, Eriksson PS (2007) Human neuroblasts migrate to the olfactory bulb via a lateral ventricular extension. Science 315:1243–1249PubMed
go back to reference Daniel SE, Hawkes CH (1992) Preliminary diagnosis of Parkinson’s disease by olfactory bulb pathology. Lancet 340:186PubMed Daniel SE, Hawkes CH (1992) Preliminary diagnosis of Parkinson’s disease by olfactory bulb pathology. Lancet 340:186PubMed
go back to reference Del Tredici K, Braak H (2012) Lewy pathology and neurodegeneration in premotor Parkinson’s disease. Mov Disord 27:597–607PubMed Del Tredici K, Braak H (2012) Lewy pathology and neurodegeneration in premotor Parkinson’s disease. Mov Disord 27:597–607PubMed
go back to reference Del Tredici K, Rub U, De Vos RA, Bohl JR, Braak H (2002) Where does Parkinson disease pathology begin in the brain? J Neuropathol Exp Neurol 61:413–426PubMed Del Tredici K, Rub U, De Vos RA, Bohl JR, Braak H (2002) Where does Parkinson disease pathology begin in the brain? J Neuropathol Exp Neurol 61:413–426PubMed
go back to reference Dickson DW, Braak H, Duda JE, Duyckaerts C, Gasser T, Halliday GM, Hardy J, Leverenz JB, Del Tredici K, Wszolek ZK, Litvan I (2009) Neuropathological assessment of Parkinson’s disease: refining the diagnostic criteria. Lancet Neurol 8:1150–1157PubMed Dickson DW, Braak H, Duda JE, Duyckaerts C, Gasser T, Halliday GM, Hardy J, Leverenz JB, Del Tredici K, Wszolek ZK, Litvan I (2009) Neuropathological assessment of Parkinson’s disease: refining the diagnostic criteria. Lancet Neurol 8:1150–1157PubMed
go back to reference Doty RL (2008) The olfactory vector hypothesis of neurodegenerative disease: is it viable? Ann Neurol 63:7–15PubMed Doty RL (2008) The olfactory vector hypothesis of neurodegenerative disease: is it viable? Ann Neurol 63:7–15PubMed
go back to reference Doty RL (2012b) Olfactory dysfunction in Parkinson disease. Nat Rev Neurol 8:329–339PubMed Doty RL (2012b) Olfactory dysfunction in Parkinson disease. Nat Rev Neurol 8:329–339PubMed
go back to reference Doty RL, Deems DA, Stellar S (1988) Olfactory dysfunction in Parkinsonism: a general deficit unrelated to neurologic signs, disease stage, or disease duration. Neurology 38:1237–1244PubMed Doty RL, Deems DA, Stellar S (1988) Olfactory dysfunction in Parkinsonism: a general deficit unrelated to neurologic signs, disease stage, or disease duration. Neurology 38:1237–1244PubMed
go back to reference Doty RL, Riklan M, Deems DA, Reynolds C, Stellar S (1989) The olfactory and cognitive deficits of Parkinson’s disease: evidence for independence. Ann Neurol 25:166–171PubMed Doty RL, Riklan M, Deems DA, Reynolds C, Stellar S (1989) The olfactory and cognitive deficits of Parkinson’s disease: evidence for independence. Ann Neurol 25:166–171PubMed
go back to reference Doty RL, Perl DP, Steele JC, Chen KM, Pierce JD Jr, Reyes P, Kurland LT (1991) Odor identification deficit of the Parkinsonism–dementia complex of Guam: equivalence to that of Alzheimer’s and idiopathic Parkinson’s disease. Neurology 41:77–80 (discussion 80–71)PubMed Doty RL, Perl DP, Steele JC, Chen KM, Pierce JD Jr, Reyes P, Kurland LT (1991) Odor identification deficit of the Parkinsonism–dementia complex of Guam: equivalence to that of Alzheimer’s and idiopathic Parkinson’s disease. Neurology 41:77–80 (discussion 80–71)PubMed
go back to reference Duda JE (2010) Olfactory system pathology as a model of Lewy neurodegenerative disease. J Neurol Sci 289:49–54PubMed Duda JE (2010) Olfactory system pathology as a model of Lewy neurodegenerative disease. J Neurol Sci 289:49–54PubMed
go back to reference Duda JE, Shah U, Arnold SE, Lee VM, Trojanowski JQ (1999) The expression of alpha-, beta-, and gamma-synucleins in olfactory mucosa from patients with and without neurodegenerative diseases. Exp Neurol 160:515–522PubMed Duda JE, Shah U, Arnold SE, Lee VM, Trojanowski JQ (1999) The expression of alpha-, beta-, and gamma-synucleins in olfactory mucosa from patients with and without neurodegenerative diseases. Exp Neurol 160:515–522PubMed
go back to reference Dunning CJ, Reyes JF, Steiner JA, Brundin P (2012) Can Parkinson’s disease pathology be propagated from one neuron to another? Prog Neurobiol 97:205–219PubMed Dunning CJ, Reyes JF, Steiner JA, Brundin P (2012) Can Parkinson’s disease pathology be propagated from one neuron to another? Prog Neurobiol 97:205–219PubMed
go back to reference Farrer M, Gwinn-Hardy K, Muenter M, DeVrieze FW, Crook R, Perez-Tur J, Lincoln S, Maraganore D, Adler C, Newman S, MacElwee K, McCarthy P, Miller C, Waters C, Hardy J (1999) A chromosome 4p haplotype segregating with Parkinson’s disease and postural tremor. Hum Mol Genet 8:81–85PubMed Farrer M, Gwinn-Hardy K, Muenter M, DeVrieze FW, Crook R, Perez-Tur J, Lincoln S, Maraganore D, Adler C, Newman S, MacElwee K, McCarthy P, Miller C, Waters C, Hardy J (1999) A chromosome 4p haplotype segregating with Parkinson’s disease and postural tremor. Hum Mol Genet 8:81–85PubMed
go back to reference Fearnley JM, Lees AJ (1991) Ageing and Parkinson’s disease: substantia nigra regional selectivity. Brain 114(Pt 5):2283–2301PubMed Fearnley JM, Lees AJ (1991) Ageing and Parkinson’s disease: substantia nigra regional selectivity. Brain 114(Pt 5):2283–2301PubMed
go back to reference Ferrer I, Martinez A, Blanco R, Dalfo E, Carmona M (2011) Neuropathology of sporadic Parkinson disease before the appearance of Parkinsonism: preclinical Parkinson disease. J Neural Transm 118:821–839PubMed Ferrer I, Martinez A, Blanco R, Dalfo E, Carmona M (2011) Neuropathology of sporadic Parkinson disease before the appearance of Parkinsonism: preclinical Parkinson disease. J Neural Transm 118:821–839PubMed
go back to reference Ferreyra-Moyano H, Barragan E (1989) The olfactory system and Alzheimer’s disease. Int J Neurosci 49:157–197PubMed Ferreyra-Moyano H, Barragan E (1989) The olfactory system and Alzheimer’s disease. Int J Neurosci 49:157–197PubMed
go back to reference Giasson BI, Duda JE, Quinn SM, Zhang B, Trojanowski JQ, Lee VM (2002) Neuronal alpha-synucleinopathy with severe movement disorder in mice expressing A53T human alpha-synuclein. Neuron 34:521–533PubMed Giasson BI, Duda JE, Quinn SM, Zhang B, Trojanowski JQ, Lee VM (2002) Neuronal alpha-synucleinopathy with severe movement disorder in mice expressing A53T human alpha-synuclein. Neuron 34:521–533PubMed
go back to reference Greffard S, Verny M, Bonnet AM, Seilhean D, Hauw JJ, Duyckaerts C (2010) A stable proportion of Lewy body bearing neurons in the substantia nigra suggests a model in which the Lewy body causes neuronal death. Neurobiol Aging 31:99–103PubMed Greffard S, Verny M, Bonnet AM, Seilhean D, Hauw JJ, Duyckaerts C (2010) A stable proportion of Lewy body bearing neurons in the substantia nigra suggests a model in which the Lewy body causes neuronal death. Neurobiol Aging 31:99–103PubMed
go back to reference Haehner A, Hummel T, Hummel C, Sommer U, Junghanns S, Reichmann H (2007) Olfactory loss may be a first sign of idiopathic Parkinson’s disease. Mov Disord 22:839–842PubMed Haehner A, Hummel T, Hummel C, Sommer U, Junghanns S, Reichmann H (2007) Olfactory loss may be a first sign of idiopathic Parkinson’s disease. Mov Disord 22:839–842PubMed
go back to reference Halliday GM, McCann H (2008) Human-based studies on alpha-synuclein deposition and relationship to Parkinson’s disease symptoms. Exp Neurol 209:12–21PubMed Halliday GM, McCann H (2008) Human-based studies on alpha-synuclein deposition and relationship to Parkinson’s disease symptoms. Exp Neurol 209:12–21PubMed
go back to reference Halpern M, Martinez-Marcos A (2003) Structure and function of the vomeronasal system: an update. Prog Neurobiol 70:245–318PubMed Halpern M, Martinez-Marcos A (2003) Structure and function of the vomeronasal system: an update. Prog Neurobiol 70:245–318PubMed
go back to reference Hansen C, Li JY (2012) Beyond alpha-synuclein transfer: pathology propagation in Parkinson’s disease. Trends Mol Med 18:248–255PubMed Hansen C, Li JY (2012) Beyond alpha-synuclein transfer: pathology propagation in Parkinson’s disease. Trends Mol Med 18:248–255PubMed
go back to reference Harding AJ, Stimson E, Henderson JM, Halliday GM (2002) Clinical correlates of selective pathology in the amygdala of patients with Parkinson’s disease. Brain 125:2431–2445PubMed Harding AJ, Stimson E, Henderson JM, Halliday GM (2002) Clinical correlates of selective pathology in the amygdala of patients with Parkinson’s disease. Brain 125:2431–2445PubMed
go back to reference Harrison PJ (1990) Neurodegeneration and the nose. Clin Otolaryngol Allied Sci 15:289–291PubMed Harrison PJ (1990) Neurodegeneration and the nose. Clin Otolaryngol Allied Sci 15:289–291PubMed
go back to reference Hawkes CH (2008) The prodromal phase of sporadic Parkinson’s disease: does it exist and if so how long is it? Mov Disord 23:1799–1807PubMed Hawkes CH (2008) The prodromal phase of sporadic Parkinson’s disease: does it exist and if so how long is it? Mov Disord 23:1799–1807PubMed
go back to reference Hawkes CH, Doty RL (2009) The neurology of olfaction. Cambridge University Press, Cambridge Hawkes CH, Doty RL (2009) The neurology of olfaction. Cambridge University Press, Cambridge
go back to reference Hawkes CH, Shephard BC (1993) Selective anosmia in Parkinson’s disease? Lancet 341:435–436PubMed Hawkes CH, Shephard BC (1993) Selective anosmia in Parkinson’s disease? Lancet 341:435–436PubMed
go back to reference Hawkes CH, Shephard BC, Daniel SE (1999) Is Parkinson’s disease a primary olfactory disorder? QJM 92:473–480PubMed Hawkes CH, Shephard BC, Daniel SE (1999) Is Parkinson’s disease a primary olfactory disorder? QJM 92:473–480PubMed
go back to reference Hawkes CH, Del Tredici K, Braak H (2007) Parkinson’s disease: a dual-hit hypothesis. Neuropathol Appl Neurobiol 33:599–614PubMed Hawkes CH, Del Tredici K, Braak H (2007) Parkinson’s disease: a dual-hit hypothesis. Neuropathol Appl Neurobiol 33:599–614PubMed
go back to reference Hawkes CH, Del Tredici K, Braak H (2009) Parkinson’s disease: the dual hit theory revisited. Ann NY Acad Sci 1170:615–622PubMed Hawkes CH, Del Tredici K, Braak H (2009) Parkinson’s disease: the dual hit theory revisited. Ann NY Acad Sci 1170:615–622PubMed
go back to reference Hawkes CH, Del Tredici K, Braak H (2010) A timeline for Parkinson’s disease. Parkinsonism Relat Disord 16:79–84PubMed Hawkes CH, Del Tredici K, Braak H (2010) A timeline for Parkinson’s disease. Parkinsonism Relat Disord 16:79–84PubMed
go back to reference Hobson DE (2012) Asymmetry in Parkinsonism, spreading pathogens and the nose. Parkinsonism Relat Disord 18:1–9PubMed Hobson DE (2012) Asymmetry in Parkinsonism, spreading pathogens and the nose. Parkinsonism Relat Disord 18:1–9PubMed
go back to reference Hubbard PS, Esiri MM, Reading M, McShane R, Nagy Z (2007) Alpha-synuclein pathology in the olfactory pathways of dementia patients. J Anat 211:117–124PubMedCentralPubMed Hubbard PS, Esiri MM, Reading M, McShane R, Nagy Z (2007) Alpha-synuclein pathology in the olfactory pathways of dementia patients. J Anat 211:117–124PubMedCentralPubMed
go back to reference Insausti R (1993) Comparative anatomy of the entorhinal cortex and hippocampus in mammals. Hippocampus 3:19–26PubMed Insausti R (1993) Comparative anatomy of the entorhinal cortex and hippocampus in mammals. Hippocampus 3:19–26PubMed
go back to reference Insausti R, Tunon T, Sobreviela T, Insausti AM, Gonzalo LM (1995) The human entorhinal cortex: a cytoarchitectonic analysis. J Comp Neurol 355:171–198PubMed Insausti R, Tunon T, Sobreviela T, Insausti AM, Gonzalo LM (1995) The human entorhinal cortex: a cytoarchitectonic analysis. J Comp Neurol 355:171–198PubMed
go back to reference Insausti R, Marcos P, Arroyo-Jimenez MM, Blaizot X, Martinez-Marcos A (2002) Comparative aspects of the olfactory portion of the entorhinal cortex and its projection to the hippocampus in rodents, nonhuman primates, and the human brain. Brain Res Bull 57:557–560PubMed Insausti R, Marcos P, Arroyo-Jimenez MM, Blaizot X, Martinez-Marcos A (2002) Comparative aspects of the olfactory portion of the entorhinal cortex and its projection to the hippocampus in rodents, nonhuman primates, and the human brain. Brain Res Bull 57:557–560PubMed
go back to reference Jellinger KA (2010) Critical evaluation of the Braak staging scheme for Parkinson’s disease. Ann Neurol 67:550PubMed Jellinger KA (2010) Critical evaluation of the Braak staging scheme for Parkinson’s disease. Ann Neurol 67:550PubMed
go back to reference Kalaitzakis ME, Graeber MB, Gentleman SM, Pearce RK (2008) Controversies over the staging of alpha-synuclein pathology in Parkinson’s disease. Acta Neuropathol 116:125–128 (author reply 129–131)PubMed Kalaitzakis ME, Graeber MB, Gentleman SM, Pearce RK (2008) Controversies over the staging of alpha-synuclein pathology in Parkinson’s disease. Acta Neuropathol 116:125–128 (author reply 129–131)PubMed
go back to reference Kissel P, Andre JM (1976) Parkinson’s disease and anosmia in monozygotic twin sisters (author’s transl). J Genet Hum 24:113–117PubMed Kissel P, Andre JM (1976) Parkinson’s disease and anosmia in monozygotic twin sisters (author’s transl). J Genet Hum 24:113–117PubMed
go back to reference Kordower JH, Chu Y, Hauser RA, Freeman TB, Olanow CW (2008) Lewy body-like pathology in long-term embryonic nigral transplants in Parkinson’s disease. Nat Med 14:504–506PubMed Kordower JH, Chu Y, Hauser RA, Freeman TB, Olanow CW (2008) Lewy body-like pathology in long-term embryonic nigral transplants in Parkinson’s disease. Nat Med 14:504–506PubMed
go back to reference Kranick SM, Duda JE (2008) Olfactory dysfunction in Parkinson’s disease. Neurosignals 16:35–40PubMed Kranick SM, Duda JE (2008) Olfactory dysfunction in Parkinson’s disease. Neurosignals 16:35–40PubMed
go back to reference Kruger R, Kuhn W, Muller T, Woitalla D, Graeber M, Kosel S, Przuntek H, Epplen JT, Schols L, Riess O (1998) Ala30Pro mutation in the gene encoding alpha-synuclein in Parkinson’s disease. Nat Genet 18:106–108PubMed Kruger R, Kuhn W, Muller T, Woitalla D, Graeber M, Kosel S, Przuntek H, Epplen JT, Schols L, Riess O (1998) Ala30Pro mutation in the gene encoding alpha-synuclein in Parkinson’s disease. Nat Genet 18:106–108PubMed
go back to reference Lee VM, Trojanowski JQ (2006) Mechanisms of Parkinson’s disease linked to pathological alpha-synuclein: new targets for drug discovery. Neuron 52:33–38PubMed Lee VM, Trojanowski JQ (2006) Mechanisms of Parkinson’s disease linked to pathological alpha-synuclein: new targets for drug discovery. Neuron 52:33–38PubMed
go back to reference Lee HJ, Baek SM, Ho DH, Suk JE, Cho ED, Lee SJ (2011) Dopamine promotes formation and secretion of non-fibrillar alpha-synuclein oligomers. Exp Mol Med 43:216–222PubMedCentralPubMed Lee HJ, Baek SM, Ho DH, Suk JE, Cho ED, Lee SJ (2011) Dopamine promotes formation and secretion of non-fibrillar alpha-synuclein oligomers. Exp Mol Med 43:216–222PubMedCentralPubMed
go back to reference Lees AJ, Hardy J, Revesz T (2009) Parkinson’s disease. Lancet 373:2055–2066PubMed Lees AJ, Hardy J, Revesz T (2009) Parkinson’s disease. Lancet 373:2055–2066PubMed
go back to reference Lelan F, Boyer C, Thinard R, Remy S, Usal C, Tesson L, Anegon I, Neveu I, Damier P, Naveilhan P, Lescaudron L (2011) Effects of human alpha-synuclein A53T-A30P mutations on SVZ and local olfactory bulb cell proliferation in a transgenic rat model of Parkinson disease. Parkinsons Dis 2011:987084PubMedCentralPubMed Lelan F, Boyer C, Thinard R, Remy S, Usal C, Tesson L, Anegon I, Neveu I, Damier P, Naveilhan P, Lescaudron L (2011) Effects of human alpha-synuclein A53T-A30P mutations on SVZ and local olfactory bulb cell proliferation in a transgenic rat model of Parkinson disease. Parkinsons Dis 2011:987084PubMedCentralPubMed
go back to reference Lepousez G, Valley MT, Lledo PM (2013) The impact of adult neurogenesis on olfactory bulb circuits and computations. Annu Rev Physiol 75:339–363PubMed Lepousez G, Valley MT, Lledo PM (2013) The impact of adult neurogenesis on olfactory bulb circuits and computations. Annu Rev Physiol 75:339–363PubMed
go back to reference Li HT, Du HN, Tang L, Hu J, Hu HY (2002) Structural transformation and aggregation of human alpha-synuclein in trifluoroethanol: non-amyloid component sequence is essential and beta-sheet formation is prerequisite to aggregation. Biopolymers 64:221–226PubMed Li HT, Du HN, Tang L, Hu J, Hu HY (2002) Structural transformation and aggregation of human alpha-synuclein in trifluoroethanol: non-amyloid component sequence is essential and beta-sheet formation is prerequisite to aggregation. Biopolymers 64:221–226PubMed
go back to reference Li JY, Englund E, Holton JL, Soulet D, Hagell P, Lees AJ, Lashley T, Quinn NP, Rehncrona S, Bjorklund A, Widner H, Revesz T, Lindvall O, Brundin P (2008) Lewy bodies in grafted neurons in subjects with Parkinson’s disease suggest host-to-graft disease propagation. Nat Med 14:501–503PubMed Li JY, Englund E, Holton JL, Soulet D, Hagell P, Lees AJ, Lashley T, Quinn NP, Rehncrona S, Bjorklund A, Widner H, Revesz T, Lindvall O, Brundin P (2008) Lewy bodies in grafted neurons in subjects with Parkinson’s disease suggest host-to-graft disease propagation. Nat Med 14:501–503PubMed
go back to reference Lim SY, Lang AE (2010) The nonmotor symptoms of Parkinson’s disease—an overview. Mov Disord 25(Suppl 1):S123–S130PubMed Lim SY, Lang AE (2010) The nonmotor symptoms of Parkinson’s disease—an overview. Mov Disord 25(Suppl 1):S123–S130PubMed
go back to reference Loughlin SE, Fallon JH (1984) Substantia nigra and ventral tegmental area projections to cortex: topography and collateralization. Neuroscience 11:425–435PubMed Loughlin SE, Fallon JH (1984) Substantia nigra and ventral tegmental area projections to cortex: topography and collateralization. Neuroscience 11:425–435PubMed
go back to reference Luk KC, Song C, O’Brien P, Stieber A, Branch JR, Brunden KR, Trojanowski JQ, Lee VM (2009) Exogenous alpha-synuclein fibrils seed the formation of Lewy body-like intracellular inclusions in cultured cells. Proc Natl Acad Sci USA 106:20051–20056PubMedCentralPubMed Luk KC, Song C, O’Brien P, Stieber A, Branch JR, Brunden KR, Trojanowski JQ, Lee VM (2009) Exogenous alpha-synuclein fibrils seed the formation of Lewy body-like intracellular inclusions in cultured cells. Proc Natl Acad Sci USA 106:20051–20056PubMedCentralPubMed
go back to reference Luk KC, Kehm V, Carroll J, Zhang B, O’Brien P, Trojanowski JQ, Lee VM (2012a) Pathological alpha-synuclein transmission initiates Parkinson-like neurodegeneration in nontransgenic mice. Science 338:949–953PubMedCentralPubMed Luk KC, Kehm V, Carroll J, Zhang B, O’Brien P, Trojanowski JQ, Lee VM (2012a) Pathological alpha-synuclein transmission initiates Parkinson-like neurodegeneration in nontransgenic mice. Science 338:949–953PubMedCentralPubMed
go back to reference Luk KC, Kehm VM, Zhang B, O’Brien P, Trojanowski JQ, Lee VM (2012b) Intracerebral inoculation of pathological alpha-synuclein initiates a rapidly progressive neurodegenerative alpha-synucleinopathy in mice. J Exp Med 209:975–986PubMedCentralPubMed Luk KC, Kehm VM, Zhang B, O’Brien P, Trojanowski JQ, Lee VM (2012b) Intracerebral inoculation of pathological alpha-synuclein initiates a rapidly progressive neurodegenerative alpha-synucleinopathy in mice. J Exp Med 209:975–986PubMedCentralPubMed
go back to reference Luskin MB, Price JL (1983) The laminar distribution of intracortical fibers originating in the olfactory cortex of the rat. J Comp Neurol 216:292–302PubMed Luskin MB, Price JL (1983) The laminar distribution of intracortical fibers originating in the olfactory cortex of the rat. J Comp Neurol 216:292–302PubMed
go back to reference Ma SY, Roytta M, Rinne JO, Collan Y, Rinne UK (1997) Correlation between neuromorphometry in the substantia nigra and clinical features in Parkinson’s disease using dissector counts. J Neurol Sci 151:83–87PubMed Ma SY, Roytta M, Rinne JO, Collan Y, Rinne UK (1997) Correlation between neuromorphometry in the substantia nigra and clinical features in Parkinson’s disease using dissector counts. J Neurol Sci 151:83–87PubMed
go back to reference Magen I, Chesselet MF (2010) Genetic mouse models of Parkinson’s disease: the state of the art. Prog Brain Res 184:53–87PubMed Magen I, Chesselet MF (2010) Genetic mouse models of Parkinson’s disease: the state of the art. Prog Brain Res 184:53–87PubMed
go back to reference Martinez-Marcos A (2009) On the organization of olfactory and vomeronasal cortices. Prog Neurobiol 87:21–30PubMed Martinez-Marcos A (2009) On the organization of olfactory and vomeronasal cortices. Prog Neurobiol 87:21–30PubMed
go back to reference Martinez-Marcos A, Halpern M (2006) Efferent connections of the main olfactory bulb in the opossum (Monodelphis domestica): a characterization of the olfactory entorhinal cortex in a marsupial. Neurosci Lett 395:51–56PubMed Martinez-Marcos A, Halpern M (2006) Efferent connections of the main olfactory bulb in the opossum (Monodelphis domestica): a characterization of the olfactory entorhinal cortex in a marsupial. Neurosci Lett 395:51–56PubMed
go back to reference Marxreiter F, Regensburger M, Winkler J (2013) Adult neurogenesis in Parkinson’s disease. Cell Mol Life Sci 70:459–473PubMed Marxreiter F, Regensburger M, Winkler J (2013) Adult neurogenesis in Parkinson’s disease. Cell Mol Life Sci 70:459–473PubMed
go back to reference Mattock C, Marmot M, Stern G (1988) Could Parkinson’s disease follow intra-uterine influenza? a speculative hypothesis. J Neurol Neurosurg Psychiatry 51:753–756PubMedCentralPubMed Mattock C, Marmot M, Stern G (1988) Could Parkinson’s disease follow intra-uterine influenza? a speculative hypothesis. J Neurol Neurosurg Psychiatry 51:753–756PubMedCentralPubMed
go back to reference Mendez I, Vinuela A, Astradsson A, Mukhida K, Hallett P, Robertson H, Tierney T, Holness R, Dagher A, Trojanowski JQ, Isacson O (2008) Dopamine neurons implanted into people with Parkinson’s disease survive without pathology for 14 years. Nat Med 14:507–509PubMedCentralPubMed Mendez I, Vinuela A, Astradsson A, Mukhida K, Hallett P, Robertson H, Tierney T, Holness R, Dagher A, Trojanowski JQ, Isacson O (2008) Dopamine neurons implanted into people with Parkinson’s disease survive without pathology for 14 years. Nat Med 14:507–509PubMedCentralPubMed
go back to reference Mohedano-Moriano A, Martinez-Marcos A, Munoz M, Arroyo-Jimenez MM, Marcos P, Artacho-Perula E, Blaizot X, Insausti R (2005) Reciprocal connections between olfactory structures and the cortex of the rostral superior temporal sulcus in the Macaca fascicularis monkey. Eur J Neurosci 22:2503–2518PubMed Mohedano-Moriano A, Martinez-Marcos A, Munoz M, Arroyo-Jimenez MM, Marcos P, Artacho-Perula E, Blaizot X, Insausti R (2005) Reciprocal connections between olfactory structures and the cortex of the rostral superior temporal sulcus in the Macaca fascicularis monkey. Eur J Neurosci 22:2503–2518PubMed
go back to reference Mohedano-Moriano A, de la Rosa-Prieto C, Saiz-Sanchez D, Ubeda-Banon I, Pro-Sistiaga P, de Moya-Pinilla M, Martinez-Marcos A (2012) Centrifugal telencephalic afferent connections to the main and accessory olfactory bulbs. Front Neuroanat 6:19PubMedCentralPubMed Mohedano-Moriano A, de la Rosa-Prieto C, Saiz-Sanchez D, Ubeda-Banon I, Pro-Sistiaga P, de Moya-Pinilla M, Martinez-Marcos A (2012) Centrifugal telencephalic afferent connections to the main and accessory olfactory bulbs. Front Neuroanat 6:19PubMedCentralPubMed
go back to reference Mori K, Sakano H (2011) How is the olfactory map formed and interpreted in the mammalian brain? Annu Rev Neurosci 34:467–499PubMed Mori K, Sakano H (2011) How is the olfactory map formed and interpreted in the mammalian brain? Annu Rev Neurosci 34:467–499PubMed
go back to reference Morley JF, Hurtig HI (2010) Current understanding and management of Parkinson disease: five new things. Neurology 75:S9–S15PubMed Morley JF, Hurtig HI (2010) Current understanding and management of Parkinson disease: five new things. Neurology 75:S9–S15PubMed
go back to reference Mundinano IC, Caballero MC, Ordonez C, Hernandez M, DiCaudo C, Marcilla I, Erro ME, Tunon MT, Luquin MR (2011) Increased dopaminergic cells and protein aggregates in the olfactory bulb of patients with neurodegenerative disorders. Acta Neuropathol 122:61–74PubMed Mundinano IC, Caballero MC, Ordonez C, Hernandez M, DiCaudo C, Marcilla I, Erro ME, Tunon MT, Luquin MR (2011) Increased dopaminergic cells and protein aggregates in the olfactory bulb of patients with neurodegenerative disorders. Acta Neuropathol 122:61–74PubMed
go back to reference Murthy VN (2011) Olfactory maps in the brain. Annu Rev Neurosci 34:233–258PubMed Murthy VN (2011) Olfactory maps in the brain. Annu Rev Neurosci 34:233–258PubMed
go back to reference Nakaso K, Tajima N, Ito S, Teraoka M, Yamashita A, Horikoshi Y, Kikuchi D, Mochida S, Nakashima K, Matsura T (2013) Dopamine-mediated oxidation of methionine 127 in alpha-synuclein causes cytotoxicity and oligomerization of alpha-synuclein. PLoS One 8:e55068PubMedCentralPubMed Nakaso K, Tajima N, Ito S, Teraoka M, Yamashita A, Horikoshi Y, Kikuchi D, Mochida S, Nakashima K, Matsura T (2013) Dopamine-mediated oxidation of methionine 127 in alpha-synuclein causes cytotoxicity and oligomerization of alpha-synuclein. PLoS One 8:e55068PubMedCentralPubMed
go back to reference Newman R, Winans SS (1980) An experimental study of the ventral striatum of the golden hamster. II. Neuronal connections of the olfactory tubercle. J Comp Neurol 191:193–212PubMed Newman R, Winans SS (1980) An experimental study of the ventral striatum of the golden hamster. II. Neuronal connections of the olfactory tubercle. J Comp Neurol 191:193–212PubMed
go back to reference Noyce AJ, Bestwick JP, Silveira-Moriyama L, Hawkes CH, Giovannoni G, Lees AJ, Schrag A (2012) Meta-analysis of early nonmotor features and risk factors for Parkinson disease. Ann Neurol 72:893–901PubMedCentralPubMed Noyce AJ, Bestwick JP, Silveira-Moriyama L, Hawkes CH, Giovannoni G, Lees AJ, Schrag A (2012) Meta-analysis of early nonmotor features and risk factors for Parkinson disease. Ann Neurol 72:893–901PubMedCentralPubMed
go back to reference Nuber S, Petrasch-Parwez E, Arias-Carrion O, Koch L, Kohl Z, Schneider J, Calaminus C, Dermietzel R, Samarina A, Boy J, Nguyen HP, Teismann P, Velavan TP, Kahle PJ, von Horsten S, Fendt M, Kruger R, Riess O (2011) Olfactory neuron-specific expression of A30P alpha-synuclein exacerbates dopamine deficiency and hyperactivity in a novel conditional model of early Parkinson’s disease stages. Neurobiol Dis 44:192–204PubMed Nuber S, Petrasch-Parwez E, Arias-Carrion O, Koch L, Kohl Z, Schneider J, Calaminus C, Dermietzel R, Samarina A, Boy J, Nguyen HP, Teismann P, Velavan TP, Kahle PJ, von Horsten S, Fendt M, Kruger R, Riess O (2011) Olfactory neuron-specific expression of A30P alpha-synuclein exacerbates dopamine deficiency and hyperactivity in a novel conditional model of early Parkinson’s disease stages. Neurobiol Dis 44:192–204PubMed
go back to reference Nuber S, Harmuth F, Kohl Z, Adame A, Trejo M, Schonig K, Zimmermann F, Bauer C, Casadei N, Giel C, Calaminus C, Pichler BJ, Jensen PH, Muller CP, Amato D, Kornhuber J, Teismann P, Yamakado H, Takahashi R, Winkler J, Masliah E, Riess O (2013) A progressive dopaminergic phenotype associated with neurotoxic conversion of alpha-synuclein in BAC-transgenic rats. Brain 136:412–432PubMedCentralPubMed Nuber S, Harmuth F, Kohl Z, Adame A, Trejo M, Schonig K, Zimmermann F, Bauer C, Casadei N, Giel C, Calaminus C, Pichler BJ, Jensen PH, Muller CP, Amato D, Kornhuber J, Teismann P, Yamakado H, Takahashi R, Winkler J, Masliah E, Riess O (2013) A progressive dopaminergic phenotype associated with neurotoxic conversion of alpha-synuclein in BAC-transgenic rats. Brain 136:412–432PubMedCentralPubMed
go back to reference Olanow CW, Brundin P (2013) Parkinson’s disease and alpha synuclein: is Parkinson’s disease a prion-like disorder? Mov Disord 28:31–40PubMed Olanow CW, Brundin P (2013) Parkinson’s disease and alpha synuclein: is Parkinson’s disease a prion-like disorder? Mov Disord 28:31–40PubMed
go back to reference Olanow CW, Obeso JA (2012) The significance of defining preclinical or prodromal Parkinson’s disease. Mov Disord 27:666–669PubMed Olanow CW, Obeso JA (2012) The significance of defining preclinical or prodromal Parkinson’s disease. Mov Disord 27:666–669PubMed
go back to reference Parkkinen L, O’sullivan SS, Collins C, Petrie A, Holton JL, Revesz T, Lees AJ (2011) Disentangling the relationship between Lewy Bodies and nigral neuronal loss in Parkinson’s disease. J Parkinson’s Dis 1:277–286 Parkkinen L, O’sullivan SS, Collins C, Petrie A, Holton JL, Revesz T, Lees AJ (2011) Disentangling the relationship between Lewy Bodies and nigral neuronal loss in Parkinson’s disease. J Parkinson’s Dis 1:277–286
go back to reference Pearce RK, Hawkes CH, Daniel SE (1995) The anterior olfactory nucleus in Parkinson’s disease. Mov Disord 10:283–287PubMed Pearce RK, Hawkes CH, Daniel SE (1995) The anterior olfactory nucleus in Parkinson’s disease. Mov Disord 10:283–287PubMed
go back to reference Pearson RC, Esiri MM, Hiorns RW, Wilcock GK, Powell TP (1985) Anatomical correlates of the distribution of the pathological changes in the neocortex in Alzheimer disease. Proc Natl Acad Sci USA 82:4531–4534PubMedCentralPubMed Pearson RC, Esiri MM, Hiorns RW, Wilcock GK, Powell TP (1985) Anatomical correlates of the distribution of the pathological changes in the neocortex in Alzheimer disease. Proc Natl Acad Sci USA 82:4531–4534PubMedCentralPubMed
go back to reference Polymeropoulos MH, Lavedan C, Leroy E, Ide SE, Dehejia A, Dutra A, Pike B, Root H, Rubenstein J, Boyer R, Stenroos ES, Chandrasekharappa S, Athanassiadou A, Papapetropoulos T, Johnson WG, Lazzarini AM, Duvoisin RC, Di Iorio G, Golbe LI, Nussbaum RL (1997) Mutation in the alpha-synuclein gene identified in families with Parkinson’s disease. Science 276:2045–2047PubMed Polymeropoulos MH, Lavedan C, Leroy E, Ide SE, Dehejia A, Dutra A, Pike B, Root H, Rubenstein J, Boyer R, Stenroos ES, Chandrasekharappa S, Athanassiadou A, Papapetropoulos T, Johnson WG, Lazzarini AM, Duvoisin RC, Di Iorio G, Golbe LI, Nussbaum RL (1997) Mutation in the alpha-synuclein gene identified in families with Parkinson’s disease. Science 276:2045–2047PubMed
go back to reference Ponsen MM, Stoffers D, Booij J, van Eck-Smit BL, Wolters E, Berendse HW (2004) Idiopathic hyposmia as a preclinical sign of Parkinson’s disease. Ann Neurol 56:173–181PubMed Ponsen MM, Stoffers D, Booij J, van Eck-Smit BL, Wolters E, Berendse HW (2004) Idiopathic hyposmia as a preclinical sign of Parkinson’s disease. Ann Neurol 56:173–181PubMed
go back to reference Prediger RD, Rial D, Medeiros R, Figueiredo CP, Doty RL, Takahashi RN (2009) Risk is in the air: an intranasal MPTP (1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine) rat model of Parkinson’s disease. Ann NY Acad Sci 1170:629–636PubMed Prediger RD, Rial D, Medeiros R, Figueiredo CP, Doty RL, Takahashi RN (2009) Risk is in the air: an intranasal MPTP (1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine) rat model of Parkinson’s disease. Ann NY Acad Sci 1170:629–636PubMed
go back to reference Prediger RD, Aguiar AS Jr, Rojas-Mayorquin AE, Figueiredo CP, Matheus FC, Ginestet L, Chevarin C, Bel ED, Mongeau R, Hamon M, Lanfumey L, Raisman-Vozari R (2010) Single intranasal administration of 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine in C57BL/6 mice models early preclinical phase of Parkinson’s disease. Neurotox Res 17:114–129PubMed Prediger RD, Aguiar AS Jr, Rojas-Mayorquin AE, Figueiredo CP, Matheus FC, Ginestet L, Chevarin C, Bel ED, Mongeau R, Hamon M, Lanfumey L, Raisman-Vozari R (2010) Single intranasal administration of 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine in C57BL/6 mice models early preclinical phase of Parkinson’s disease. Neurotox Res 17:114–129PubMed
go back to reference Prediger RD, Aguiar AS Jr, Moreira EL, Matheus FC, Castro AA, Walz R, De Bem AF, Latini A, Tasca CI, Farina M, Raisman-Vozari R (2011) The intranasal administration of 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP): a new rodent model to test palliative and neuroprotective agents for Parkinson’s disease. Curr Pharm Des 17:489–507PubMed Prediger RD, Aguiar AS Jr, Moreira EL, Matheus FC, Castro AA, Walz R, De Bem AF, Latini A, Tasca CI, Farina M, Raisman-Vozari R (2011) The intranasal administration of 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP): a new rodent model to test palliative and neuroprotective agents for Parkinson’s disease. Curr Pharm Des 17:489–507PubMed
go back to reference Proukakis C, Dudzik CG, Brier T, MacKay DS, Cooper JM, Millhauser GL, Houlden H, Schapira AH (2013) A novel alpha-synuclein missense mutation in Parkinson disease. Neurology 80:1062–1064PubMedCentralPubMed Proukakis C, Dudzik CG, Brier T, MacKay DS, Cooper JM, Millhauser GL, Houlden H, Schapira AH (2013) A novel alpha-synuclein missense mutation in Parkinson disease. Neurology 80:1062–1064PubMedCentralPubMed
go back to reference Quinn NP, Rossor MN, Marsden CD (1987) Olfactory threshold in Parkinson’s disease. J Neurol Neurosurg Psychiatry 50:88–89PubMedCentralPubMed Quinn NP, Rossor MN, Marsden CD (1987) Olfactory threshold in Parkinson’s disease. J Neurol Neurosurg Psychiatry 50:88–89PubMedCentralPubMed
go back to reference Riederer P, Wuketich S (1976) Time course of nigrostriatal degeneration in Parkinson’s disease. A detailed study of influential factors in human brain amine analysis. J Neural Transm 38:277–301PubMed Riederer P, Wuketich S (1976) Time course of nigrostriatal degeneration in Parkinson’s disease. A detailed study of influential factors in human brain amine analysis. J Neural Transm 38:277–301PubMed
go back to reference Roberts E (1986) Alzheimer’s disease may begin in the nose and may be caused by aluminosilicates. Neurobiol Aging 7:561–567PubMed Roberts E (1986) Alzheimer’s disease may begin in the nose and may be caused by aluminosilicates. Neurobiol Aging 7:561–567PubMed
go back to reference Rohn TT, Catlin LW (2011) Immunolocalization of influenza A virus and markers of inflammation in the human Parkinson’s disease brain. PLoS One 6:e20495PubMedCentralPubMed Rohn TT, Catlin LW (2011) Immunolocalization of influenza A virus and markers of inflammation in the human Parkinson’s disease brain. PLoS One 6:e20495PubMedCentralPubMed
go back to reference Ross GW, Petrovitch H, Abbott RD, Tanner CM, Popper J, Masaki K, Launer L, White LR (2008) Association of olfactory dysfunction with risk for future Parkinson’s disease. Ann Neurol 63:167–173PubMed Ross GW, Petrovitch H, Abbott RD, Tanner CM, Popper J, Masaki K, Launer L, White LR (2008) Association of olfactory dysfunction with risk for future Parkinson’s disease. Ann Neurol 63:167–173PubMed
go back to reference Ruan Y, Zheng XY, Zhang HL, Zhu W, Zhu J (2012) Olfactory dysfunctions in neurodegenerative disorders. J Neurosci Res 90:1693–1700PubMed Ruan Y, Zheng XY, Zhang HL, Zhu W, Zhu J (2012) Olfactory dysfunctions in neurodegenerative disorders. J Neurosci Res 90:1693–1700PubMed
go back to reference Saiz-Sanchez D, Ubeda-Banon I, de La Rosa-Prieto C, Argandona-Palacios L, garcia-Munozguren S, Insausti R, Martinez-Marcos A (2010a) The human olfactory system: an anatomical and cytoarchitectonic study of the anterior olfactory nucleus. In: Flynn CE, Callaghan BR (eds) Neuroanatomy Research Advances New York, pp 171–182 Saiz-Sanchez D, Ubeda-Banon I, de La Rosa-Prieto C, Argandona-Palacios L, garcia-Munozguren S, Insausti R, Martinez-Marcos A (2010a) The human olfactory system: an anatomical and cytoarchitectonic study of the anterior olfactory nucleus. In: Flynn CE, Callaghan BR (eds) Neuroanatomy Research Advances New York, pp 171–182
go back to reference Saiz-Sanchez D, Ubeda-Banon I, de la Rosa-Prieto C, Argandona-Palacios L, Garcia-Munozguren S, Insausti R, Martinez-Marcos A (2010b) Somatostatin, tau, and beta-amyloid within the anterior olfactory nucleus in Alzheimer disease. Exp Neurol 223:347–350PubMed Saiz-Sanchez D, Ubeda-Banon I, de la Rosa-Prieto C, Argandona-Palacios L, Garcia-Munozguren S, Insausti R, Martinez-Marcos A (2010b) Somatostatin, tau, and beta-amyloid within the anterior olfactory nucleus in Alzheimer disease. Exp Neurol 223:347–350PubMed
go back to reference Sengoku R, Saito Y, Ikemura M, Hatsuta H, Sakiyama Y, Kanemaru K, Arai T, Sawabe M, Tanaka N, Mochizuki H, Inoue K, Murayama S (2008) Incidence and extent of Lewy body-related alpha-synucleinopathy in aging human olfactory bulb. J Neuropathol Exp Neurol 67:1072–1083PubMed Sengoku R, Saito Y, Ikemura M, Hatsuta H, Sakiyama Y, Kanemaru K, Arai T, Sawabe M, Tanaka N, Mochizuki H, Inoue K, Murayama S (2008) Incidence and extent of Lewy body-related alpha-synucleinopathy in aging human olfactory bulb. J Neuropathol Exp Neurol 67:1072–1083PubMed
go back to reference Shipley MT (1985) Transport of molecules from nose to brain: transneuronal anterograde and retrograde labeling in the rat olfactory system by wheat germ agglutinin-horseradish peroxidase applied to the nasal epithelium. Brain Res Bull 15:129–142PubMed Shipley MT (1985) Transport of molecules from nose to brain: transneuronal anterograde and retrograde labeling in the rat olfactory system by wheat germ agglutinin-horseradish peroxidase applied to the nasal epithelium. Brain Res Bull 15:129–142PubMed
go back to reference Shipley MT, Adamek GD (1984) The connections of the mouse olfactory bulb: a study using orthograde and retrograde transport of wheat germ agglutinin conjugated to horseradish peroxidase. Brain Res Bull 12:669–688PubMed Shipley MT, Adamek GD (1984) The connections of the mouse olfactory bulb: a study using orthograde and retrograde transport of wheat germ agglutinin conjugated to horseradish peroxidase. Brain Res Bull 12:669–688PubMed
go back to reference Siderowf A, Stern MB (2008) Premotor Parkinson’s disease: clinical features, detection, and prospects for treatment. Ann Neurol 64(Suppl 2):S139–S147PubMed Siderowf A, Stern MB (2008) Premotor Parkinson’s disease: clinical features, detection, and prospects for treatment. Ann Neurol 64(Suppl 2):S139–S147PubMed
go back to reference Silveira-Moriyama L, Holton JL, Kingsbury A, Ayling H, Petrie A, Sterlacci W, Poewe W, Maier H, Lees AJ, Revesz T (2009) Regional differences in the severity of Lewy body pathology across the olfactory cortex. Neurosci Lett 453:77–80PubMed Silveira-Moriyama L, Holton JL, Kingsbury A, Ayling H, Petrie A, Sterlacci W, Poewe W, Maier H, Lees AJ, Revesz T (2009) Regional differences in the severity of Lewy body pathology across the olfactory cortex. Neurosci Lett 453:77–80PubMed
go back to reference Smith RL, Baker H, Greer CA (1993) Immunohistochemical analyses of the human olfactory bulb. J Comp Neurol 333:519–530PubMed Smith RL, Baker H, Greer CA (1993) Immunohistochemical analyses of the human olfactory bulb. J Comp Neurol 333:519–530PubMed
go back to reference Smith GA, Isacson O, Dunnett SB (2012) The search for genetic mouse models of prodromal Parkinson’s disease. Exp Neurol 237:267–273PubMed Smith GA, Isacson O, Dunnett SB (2012) The search for genetic mouse models of prodromal Parkinson’s disease. Exp Neurol 237:267–273PubMed
go back to reference Spillantini MG, Schmidt ML, Lee VM, Trojanowski JQ, Jakes R, Goedert M (1997) Alpha-synuclein in Lewy bodies. Nature 388:839–840PubMed Spillantini MG, Schmidt ML, Lee VM, Trojanowski JQ, Jakes R, Goedert M (1997) Alpha-synuclein in Lewy bodies. Nature 388:839–840PubMed
go back to reference Stiasny-Kolster K, Doerr Y, Moller JC, Hoffken H, Behr TM, Oertel WH, Mayer G (2005) Combination of ‘idiopathic’ REM sleep behaviour disorder and olfactory dysfunction as possible indicator for alpha-synucleinopathy demonstrated by dopamine transporter FP-CIT-SPECT. Brain 128:126–137PubMed Stiasny-Kolster K, Doerr Y, Moller JC, Hoffken H, Behr TM, Oertel WH, Mayer G (2005) Combination of ‘idiopathic’ REM sleep behaviour disorder and olfactory dysfunction as possible indicator for alpha-synucleinopathy demonstrated by dopamine transporter FP-CIT-SPECT. Brain 128:126–137PubMed
go back to reference Thuret S, Bhatt L, O’Leary DD, Simon HH (2004) Identification and developmental analysis of genes expressed by dopaminergic neurons of the substantia nigra pars compacta. Mol Cell Neurosci 25:394–405PubMed Thuret S, Bhatt L, O’Leary DD, Simon HH (2004) Identification and developmental analysis of genes expressed by dopaminergic neurons of the substantia nigra pars compacta. Mol Cell Neurosci 25:394–405PubMed
go back to reference Tolosa E, Pont-Sunyer C (2011) Progress in defining the premotor phase of Parkinson’s disease. J Neurol Sci 310:4–8PubMed Tolosa E, Pont-Sunyer C (2011) Progress in defining the premotor phase of Parkinson’s disease. J Neurol Sci 310:4–8PubMed
go back to reference Tolosa E, Wenning G, Poewe W (2006) The diagnosis of Parkinson’s disease. Lancet Neurol 5:75–86PubMed Tolosa E, Wenning G, Poewe W (2006) The diagnosis of Parkinson’s disease. Lancet Neurol 5:75–86PubMed
go back to reference Tolosa E, Gaig C, Santamaria J, Compta Y (2009) Diagnosis and the premotor phase of Parkinson disease. Neurology 72:S12–S20PubMed Tolosa E, Gaig C, Santamaria J, Compta Y (2009) Diagnosis and the premotor phase of Parkinson disease. Neurology 72:S12–S20PubMed
go back to reference Toulouse A, Sullivan AM (2008) Progress in Parkinson’s disease-where do we stand? Prog Neurobiol 85:376–392PubMed Toulouse A, Sullivan AM (2008) Progress in Parkinson’s disease-where do we stand? Prog Neurobiol 85:376–392PubMed
go back to reference Ubeda-Banon I, Novejarque A, Mohedano-Moriano A, Pro-Sistiaga P, de la Rosa-Prieto C, Insausti R, Martinez-Garcia F, Lanuza E, Martinez-Marcos A (2007) Projections from the posterolateral olfactory amygdala to the ventral striatum: neural basis for reinforcing properties of chemical stimuli. BMC Neurosci 8:103PubMedCentralPubMed Ubeda-Banon I, Novejarque A, Mohedano-Moriano A, Pro-Sistiaga P, de la Rosa-Prieto C, Insausti R, Martinez-Garcia F, Lanuza E, Martinez-Marcos A (2007) Projections from the posterolateral olfactory amygdala to the ventral striatum: neural basis for reinforcing properties of chemical stimuli. BMC Neurosci 8:103PubMedCentralPubMed
go back to reference Ubeda-Banon I, Saiz-Sanchez D, de la Rosa-Prieto C, Argandona-Palacios L, Garcia-Munozguren S, Martinez-Marcos A (2010a) alpha-Synucleinopathy in the human olfactory system in Parkinson’s disease: involvement of calcium-binding protein- and substance P-positive cells. Acta Neuropathol 119:723–735PubMed Ubeda-Banon I, Saiz-Sanchez D, de la Rosa-Prieto C, Argandona-Palacios L, Garcia-Munozguren S, Martinez-Marcos A (2010a) alpha-Synucleinopathy in the human olfactory system in Parkinson’s disease: involvement of calcium-binding protein- and substance P-positive cells. Acta Neuropathol 119:723–735PubMed
go back to reference Ubeda-Banon I, Saiz-Sanchez D, de la Rosa-Prieto C, Mohedano-Moriano A, Fradejas N, Calvo S, Argandona-Palacios L, Garcia-Munozguren S, Martinez-Marcos A (2010b) Staging of alpha-synuclein in the olfactory bulb in a model of Parkinson’s disease: cell types involved. Mov Disord 25:1701–1707PubMed Ubeda-Banon I, Saiz-Sanchez D, de la Rosa-Prieto C, Mohedano-Moriano A, Fradejas N, Calvo S, Argandona-Palacios L, Garcia-Munozguren S, Martinez-Marcos A (2010b) Staging of alpha-synuclein in the olfactory bulb in a model of Parkinson’s disease: cell types involved. Mov Disord 25:1701–1707PubMed
go back to reference Ubeda-Banon I, Saiz-Sanchez D, de la Rosa-Prieto C, Martinez-Marcos A (2012) alpha-Synuclein in the olfactory system of a mouse model of Parkinson’s disease: correlation with olfactory projections. Brain Struct Funct 217:447–458PubMed Ubeda-Banon I, Saiz-Sanchez D, de la Rosa-Prieto C, Martinez-Marcos A (2012) alpha-Synuclein in the olfactory system of a mouse model of Parkinson’s disease: correlation with olfactory projections. Brain Struct Funct 217:447–458PubMed
go back to reference van Hartevelt TJ, Kringelbach MI (2011) The olfactory system. In: Mai JK, Paxinos G (eds) The human nervous system. Academic Press, London, pp 1219–1238 van Hartevelt TJ, Kringelbach MI (2011) The olfactory system. In: Mai JK, Paxinos G (eds) The human nervous system. Academic Press, London, pp 1219–1238
go back to reference Volz HP, Rehbein G, Triepel J, Knuepfer MM, Stumpf H, Stock G (1990) Afferent connections of the nucleus centralis amygdalae. A horseradish peroxidase study and literature survey. Anat Embryol (Berl) 181:177–194 Volz HP, Rehbein G, Triepel J, Knuepfer MM, Stumpf H, Stock G (1990) Afferent connections of the nucleus centralis amygdalae. A horseradish peroxidase study and literature survey. Anat Embryol (Berl) 181:177–194
go back to reference Wolters E, Braak H (2006) Parkinson’s disease: premotor clinico-pathological correlations. J Neural Transm Suppl:309–319 Wolters E, Braak H (2006) Parkinson’s disease: premotor clinico-pathological correlations. J Neural Transm Suppl:309–319
go back to reference Yamada T (1996) Viral etiology of Parkinson’s disease: focus on influenza A virus. Parkinsonism Relat Disord 2:113–121PubMed Yamada T (1996) Viral etiology of Parkinson’s disease: focus on influenza A virus. Parkinsonism Relat Disord 2:113–121PubMed
go back to reference Yamakawa K, Izumi Y, Takeuchi H, Yamamoto N, Kume T, Akaike A, Takahashi R, Shimohama S, Sawada H (2010) Dopamine facilitates alpha-synuclein oligomerization in human neuroblastoma SH-SY5Y cells. Biochem Biophys Res Commun 391:129–134PubMed Yamakawa K, Izumi Y, Takeuchi H, Yamamoto N, Kume T, Akaike A, Takahashi R, Shimohama S, Sawada H (2010) Dopamine facilitates alpha-synuclein oligomerization in human neuroblastoma SH-SY5Y cells. Biochem Biophys Res Commun 391:129–134PubMed
go back to reference Zarranz JJ, Alegre J, Gomez-Esteban JC, Lezcano E, Ros R, Ampuero I, Vidal L, Hoenicka J, Rodriguez O, Atares B, Llorens V, Gomez Tortosa E, del Ser T, Munoz DG, de Yebenes JG (2004) The new mutation, E46K, of alpha-synuclein causes Parkinson and Lewy body dementia. Ann Neurol 55:164–173PubMed Zarranz JJ, Alegre J, Gomez-Esteban JC, Lezcano E, Ros R, Ampuero I, Vidal L, Hoenicka J, Rodriguez O, Atares B, Llorens V, Gomez Tortosa E, del Ser T, Munoz DG, de Yebenes JG (2004) The new mutation, E46K, of alpha-synuclein causes Parkinson and Lewy body dementia. Ann Neurol 55:164–173PubMed
Metadata
Title
α-Synuclein in the olfactory system in Parkinson’s disease: role of neural connections on spreading pathology
Authors
Isabel Ubeda-Bañon
Daniel Saiz-Sanchez
Carlos de la Rosa-Prieto
Alino Martinez-Marcos
Publication date
01-09-2014
Publisher
Springer Berlin Heidelberg
Published in
Brain Structure and Function / Issue 5/2014
Print ISSN: 1863-2653
Electronic ISSN: 1863-2661
DOI
https://doi.org/10.1007/s00429-013-0651-2

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