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Published in: Journal of Neural Transmission 5/2020

Open Access 01-05-2020 | Amyotrophic Lateral Sclerosis | Neurology and Preclinical Neurological Studies - Review Article

Why do anti-inflammatory signals of bone marrow-derived stromal cells improve neurodegenerative conditions where anti-inflammatory drugs fail?

Authors: J. P. J. M. de Munter, J. Mey, T. Strekalova, B. W. Kramer, E. Ch. Wolters

Published in: Journal of Neural Transmission | Issue 5/2020

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Abstract

Neurodegenerative disorders share the final degenerative pathway, the inflammation-induced apoptosis and/or necrosis, irrespective of their etiology, be it of acute and chronic traumatic, vascular and idiopathic origin. Although disease-modifying strategies are an unmet need in these disorders, lately, (pre)clinical studies suggested favorable effects after an intervention with bone marrow-derived stromal cells (bm-SC). Recent interventions with intrathecal transplantation of these cells in preclinical rodent models improved the functional outcome and reduced the inflammation, but not anti-inflammatory drugs. The benefit of bm-SCs was demonstrated in rats with an acute (traumatic spinal cord injury, tSCI) and in mice with a chronic [amyotrophic lateral sclerosis (ALS)-like FUS 1-358 or SOD1-G93-A mutation] neurodegenerative process. Bm-SCs, were found to modify underlying disease processes, to reduce final clinical SCI-related outcome, and to slow down ALS-like clinical progression. After double-blind interventions with bm-SC transplantations, Vehicle (placebo), and (non)steroidal anti-inflammatory drugs (Methylprednisolone, Riluzole, Celecoxib), clinical, histological and histochemical findings, serum/spinal cytokines, markers for spinal microglial activation inclusive, evidenced the cell-to-cell action of bm-SCs in both otherwise healthy and immune-deficient tSCI-rats, as well as wild-type and FUS/SOD1-transgenic ALS-like mice. The multi-pathway hypothesis of the cell-to-cell action of bmSCs, presumably using extracellular vesicles (EVs) as carriers of messages in the form of RNAs, DNA, proteins, and lipids rather than influencing a single inflammatory pathway, could be justified by the reported differences of cytokines and other chemokines in the serum and spinal tissue. The mode of action of bm-SCs is hypothesized to be associated with its dedicated adjustment of the pro-apoptotic glycogen synthase kinase-3β level towards an anti-apoptotic level whereas their multi-pathway hypothesis seems to be confirmed by the decreased levels of the pro-inflammatory interleukin (IL)-1β and tumor necrosis factor (TNF) as well as the level of the marker of activated microglia, ionized calcium binding adapter (Iba)-1 level.
Literature
go back to reference Abels ER, Breakefield XO (2016) Introduction to extracellular vesicles: biogenesis, RNA cargo selection, content, release, and uptake. Cell Mol Neurobiol 36(3):301–312PubMedPubMedCentral Abels ER, Breakefield XO (2016) Introduction to extracellular vesicles: biogenesis, RNA cargo selection, content, release, and uptake. Cell Mol Neurobiol 36(3):301–312PubMedPubMedCentral
go back to reference Abramowski P, Krasemann S, Ernst T, Lange C, Ittrich H, Schweizer M, Zander AR, Martin R, Fehse B (2016) Mesenchymal stromal/stem cells do not ameliorate experimental autoimmune encephalomyelitis and are not detectable in the central nervous system of transplanted mice. Stem Cells Dev 25(15):1134–1148PubMed Abramowski P, Krasemann S, Ernst T, Lange C, Ittrich H, Schweizer M, Zander AR, Martin R, Fehse B (2016) Mesenchymal stromal/stem cells do not ameliorate experimental autoimmune encephalomyelitis and are not detectable in the central nervous system of transplanted mice. Stem Cells Dev 25(15):1134–1148PubMed
go back to reference Al-Chalabi A, Hardiman O, Kiernan MC, Chio A, Rix-Brooks B, van den Berg LH (2016) Amyotrophic lateral sclerosis: moving towards a new classification system. Lancet Neurol 15(11):1182–1194PubMed Al-Chalabi A, Hardiman O, Kiernan MC, Chio A, Rix-Brooks B, van den Berg LH (2016) Amyotrophic lateral sclerosis: moving towards a new classification system. Lancet Neurol 15(11):1182–1194PubMed
go back to reference Babenko VA, Silachev DN, Zorova LD, Pevzner IB, Khutornenko AA, Plotnikov EY, Sukhikh GT, Zorov DB (2015) Improving the post-stroke therapeutic potency of mesenchymal multipotent stromal cells by cocultivation with cortical neurons: the role of crosstalk between cells. Stem Cells Transl Med 4(9):1011–1020PubMedPubMedCentral Babenko VA, Silachev DN, Zorova LD, Pevzner IB, Khutornenko AA, Plotnikov EY, Sukhikh GT, Zorov DB (2015) Improving the post-stroke therapeutic potency of mesenchymal multipotent stromal cells by cocultivation with cortical neurons: the role of crosstalk between cells. Stem Cells Transl Med 4(9):1011–1020PubMedPubMedCentral
go back to reference Basso DM, Beattie MS, Bresnahan JC (1995) A sensitive and reliable locomotor rating scale for open field testing in rats. J Neurotrauma 12(1):1–21PubMed Basso DM, Beattie MS, Bresnahan JC (1995) A sensitive and reliable locomotor rating scale for open field testing in rats. J Neurotrauma 12(1):1–21PubMed
go back to reference Beers DR, Appel SH (2019) Immune dysregulation in amyotrophic lateral sclerosis: mechanisms and emerging therapies. Lancet Neurol 18(2):211–220PubMed Beers DR, Appel SH (2019) Immune dysregulation in amyotrophic lateral sclerosis: mechanisms and emerging therapies. Lancet Neurol 18(2):211–220PubMed
go back to reference Beurel E, Kaidanovich-Beilin O, Yeh WI, Song L, Palomo V, Michalek SM, Woodgett JR, Harrington LE, Eldar-Finkelman H, Martinez A, Jope RS (2013) Regulation of Th1 cells and experimental autoimmune encephalomyelitis by glycogen synthase kinase-3. J Immunol 190(10):5000–5011PubMed Beurel E, Kaidanovich-Beilin O, Yeh WI, Song L, Palomo V, Michalek SM, Woodgett JR, Harrington LE, Eldar-Finkelman H, Martinez A, Jope RS (2013) Regulation of Th1 cells and experimental autoimmune encephalomyelitis by glycogen synthase kinase-3. J Immunol 190(10):5000–5011PubMed
go back to reference Beurel E, Grieco SF, Jope RS (2015) Glycogen synthase kinase-3 (GSK3): regulation, actions, and diseases. Pharmacol Ther 148:114–131PubMed Beurel E, Grieco SF, Jope RS (2015) Glycogen synthase kinase-3 (GSK3): regulation, actions, and diseases. Pharmacol Ther 148:114–131PubMed
go back to reference Blaser H, Dostert C, Mak TW, Brenner D (2016) TNF and ROS crosstalk in inflammation. Trends Cell Biol 26(4):249–261PubMed Blaser H, Dostert C, Mak TW, Brenner D (2016) TNF and ROS crosstalk in inflammation. Trends Cell Biol 26(4):249–261PubMed
go back to reference Boido M, Piras A, Valsecchi V, Spigolon G, Mareschi K, Ferrero I, Vizzini A, Temi S, Mazzini L, Fagioli F, Vercelli A (2014) Human mesenchymal stromal cell transplantation modulates neuroinflammatory milieu in a mouse model of amyotrophic lateral sclerosis. Cytotherapy 16(8):1059–1072PubMed Boido M, Piras A, Valsecchi V, Spigolon G, Mareschi K, Ferrero I, Vizzini A, Temi S, Mazzini L, Fagioli F, Vercelli A (2014) Human mesenchymal stromal cell transplantation modulates neuroinflammatory milieu in a mouse model of amyotrophic lateral sclerosis. Cytotherapy 16(8):1059–1072PubMed
go back to reference Bracken MB (2012) Steroids for acute spinal cord injury. Cochrane Database Syst Rev 1:CD001046PubMed Bracken MB (2012) Steroids for acute spinal cord injury. Cochrane Database Syst Rev 1:CD001046PubMed
go back to reference Cerri S, Greco R, Levandis G, Ghezzi C, Mangione AS, Fuzzati-Armentero MT, Bonizzi A, Avanzini MA, Maccario R, Blandini F (2015) Intracarotid infusion of mesenchymal stem cells in an animal model of parkinson’s disease, focusing on cell distribution and neuroprotective and behavioral effects. Stem Cells Transl Med 4(9):1073–1085PubMedPubMedCentral Cerri S, Greco R, Levandis G, Ghezzi C, Mangione AS, Fuzzati-Armentero MT, Bonizzi A, Avanzini MA, Maccario R, Blandini F (2015) Intracarotid infusion of mesenchymal stem cells in an animal model of parkinson’s disease, focusing on cell distribution and neuroprotective and behavioral effects. Stem Cells Transl Med 4(9):1073–1085PubMedPubMedCentral
go back to reference Ciervo Y, Ning K, Jun X, Shaw PJ, Mead RJ (2017) Advances, challenges and future directions for stem cell therapy in amyotrophic lateral sclerosis. Mol Neurodegener 12(1):85PubMedPubMedCentral Ciervo Y, Ning K, Jun X, Shaw PJ, Mead RJ (2017) Advances, challenges and future directions for stem cell therapy in amyotrophic lateral sclerosis. Mol Neurodegener 12(1):85PubMedPubMedCentral
go back to reference Cizkova D, Cubinkova V, Smolek T, Murgoci AN, Danko J, Vdoviakova K, Humenik F, Cizek M, Quanico J, Fournier I, Salzet M (2018) Localized intrathecal delivery of mesenchymal stromal cells conditioned medium improves functional recovery in a rat model of spinal cord injury. Int J Mol Sci 19(3):870PubMedCentral Cizkova D, Cubinkova V, Smolek T, Murgoci AN, Danko J, Vdoviakova K, Humenik F, Cizek M, Quanico J, Fournier I, Salzet M (2018) Localized intrathecal delivery of mesenchymal stromal cells conditioned medium improves functional recovery in a rat model of spinal cord injury. Int J Mol Sci 19(3):870PubMedCentral
go back to reference Cofano F, Boido M, Monticelli M, Zenga F, Ducati A, Vercelli A, Garbossa D (2019) Mesenchymal stem cells for spinal cord injury: current options, limitations, and future of cell therapy. Int J Mol Sci 20(11):2698PubMedCentral Cofano F, Boido M, Monticelli M, Zenga F, Ducati A, Vercelli A, Garbossa D (2019) Mesenchymal stem cells for spinal cord injury: current options, limitations, and future of cell therapy. Int J Mol Sci 20(11):2698PubMedCentral
go back to reference Collins M, Bowser R (2017) Molecular and cellular therapies for motor neuron diseases. Academic Press, Amsterdam, pp 61–99 Collins M, Bowser R (2017) Molecular and cellular therapies for motor neuron diseases. Academic Press, Amsterdam, pp 61–99
go back to reference Crisafulli SG, Brajkovic S, Cipolat Mis MS, Parente V, Corti S (2018) Therapeutic strategies under development targeting inflammatory mechanisms in amyotrophic lateral sclerosis. Mol Neurobiol 55(4):2789–2813PubMed Crisafulli SG, Brajkovic S, Cipolat Mis MS, Parente V, Corti S (2018) Therapeutic strategies under development targeting inflammatory mechanisms in amyotrophic lateral sclerosis. Mol Neurobiol 55(4):2789–2813PubMed
go back to reference de Munter JP, Beugels J, Munter S, Jansen L, Cillero-Pastor B, Moskvin O, Brook G, Pavlov D, Strekalova T, Kramer BW, Wolters EC (2019a) Standardized human bone marrow-derived stem cells infusion improves survival and recovery in a rat model of spinal cord injury. J Neurol Sci 402:16–29PubMed de Munter JP, Beugels J, Munter S, Jansen L, Cillero-Pastor B, Moskvin O, Brook G, Pavlov D, Strekalova T, Kramer BW, Wolters EC (2019a) Standardized human bone marrow-derived stem cells infusion improves survival and recovery in a rat model of spinal cord injury. J Neurol Sci 402:16–29PubMed
go back to reference de Munter J, Shafarevich I, Liundup A, Pavlov D, Wolters EC, Gorlova A, Veniaminova E, Umriukhin A, Kalueff A, Svistunov A, Kramer BW, Lesch KP, Strekalova T (2019) Neuro-cells therapy improves motor outcomes and suppresses inflammation during experimental syndrome of amyotrophic lateral sclerosis in mice. CNS Neurosci Ther. https://doi.org/10.1111/CNS.13280 CrossRefPubMedPubMedCentral de Munter J, Shafarevich I, Liundup A, Pavlov D, Wolters EC, Gorlova A, Veniaminova E, Umriukhin A, Kalueff A, Svistunov A, Kramer BW, Lesch KP, Strekalova T (2019) Neuro-cells therapy improves motor outcomes and suppresses inflammation during experimental syndrome of amyotrophic lateral sclerosis in mice. CNS Neurosci Ther. https://​doi.​org/​10.​1111/​CNS.​13280 CrossRefPubMedPubMedCentral
go back to reference Deda H, Inci MC, Kurekci AE, Kayihan K, Ozgun E, Ustunsoy GE, Kocabay S (2008) Treatment of chronic spinal cord injured patients with autologous bone marrow-derived hematopoietic stem cell transplantation: 1-year follow-up. Cytotherapy 10(6):565–574PubMed Deda H, Inci MC, Kurekci AE, Kayihan K, Ozgun E, Ustunsoy GE, Kocabay S (2008) Treatment of chronic spinal cord injured patients with autologous bone marrow-derived hematopoietic stem cell transplantation: 1-year follow-up. Cytotherapy 10(6):565–574PubMed
go back to reference Dostert G, Mesure B, Menu P, Velot E (2017) How do mesenchymal stem cells influence or are influenced by microenvironment through extracellular vesicles communication? Front Cell Dev Biol 5:6PubMedPubMedCentral Dostert G, Mesure B, Menu P, Velot E (2017) How do mesenchymal stem cells influence or are influenced by microenvironment through extracellular vesicles communication? Front Cell Dev Biol 5:6PubMedPubMedCentral
go back to reference Engelhardt B, Sorokin L (2009) The blood–brain and the blood-cerebrospinal fluid barriers: function and dysfunction. Semin Immunopathol 31(4):497–511PubMed Engelhardt B, Sorokin L (2009) The blood–brain and the blood-cerebrospinal fluid barriers: function and dysfunction. Semin Immunopathol 31(4):497–511PubMed
go back to reference Fischbach MA, Bluestone JA, Lim WA (2013) Cell-based therapeutics: the next pillar of medicine. Sci Transl Med 5(179):179ps177 Fischbach MA, Bluestone JA, Lim WA (2013) Cell-based therapeutics: the next pillar of medicine. Sci Transl Med 5(179):179ps177
go back to reference Fischer UM, Harting MT, Jimenez F, Monzon-Posadas WO, Xue H, Savitz SI, Laine GA, Cox CS Jr (2009) Pulmonary passage is a major obstacle for intravenous stem cell delivery: the pulmonary first-pass effect. Stem Cells Dev 18(5):683–692PubMed Fischer UM, Harting MT, Jimenez F, Monzon-Posadas WO, Xue H, Savitz SI, Laine GA, Cox CS Jr (2009) Pulmonary passage is a major obstacle for intravenous stem cell delivery: the pulmonary first-pass effect. Stem Cells Dev 18(5):683–692PubMed
go back to reference Fondell E, O’Reilly EJ, Fitzgerald KC, Falcone GJ, McCullough ML, Thun MJ, Park Y, Kolonel LN, Ascherio A (2012) Non-steroidal anti-inflammatory drugs and amyotrophic lateral sclerosis: results from five prospective cohort studies. Amyotroph Lateral Scler 13(6):573–579PubMedPubMedCentral Fondell E, O’Reilly EJ, Fitzgerald KC, Falcone GJ, McCullough ML, Thun MJ, Park Y, Kolonel LN, Ascherio A (2012) Non-steroidal anti-inflammatory drugs and amyotrophic lateral sclerosis: results from five prospective cohort studies. Amyotroph Lateral Scler 13(6):573–579PubMedPubMedCentral
go back to reference Freischmidt A, Muller K, Zondler L, Weydt P, Mayer B, von Arnim CA, Hubers A, Dorst J, Otto M, Holzmann K, Ludolph AC, Danzer KM, Weishaupt JH (2015) Serum microRNAs in sporadic amyotrophic lateral sclerosis. Neurobiol Aging 36(9):2660.e2615–2620 Freischmidt A, Muller K, Zondler L, Weydt P, Mayer B, von Arnim CA, Hubers A, Dorst J, Otto M, Holzmann K, Ludolph AC, Danzer KM, Weishaupt JH (2015) Serum microRNAs in sporadic amyotrophic lateral sclerosis. Neurobiol Aging 36(9):2660.e2615–2620
go back to reference Galbiati M, Onesto E, Zito A, Crippa V, Rusmini P, Mariotti R, Bentivoglio M, Bendotti C, Poletti A (2012) The anabolic/androgenic steroid nandrolone exacerbates gene expression modifications induced by mutant SOD1 in muscles of mice models of amyotrophic lateral sclerosis. Pharmacol Res 65(2):221–230PubMedPubMedCentral Galbiati M, Onesto E, Zito A, Crippa V, Rusmini P, Mariotti R, Bentivoglio M, Bendotti C, Poletti A (2012) The anabolic/androgenic steroid nandrolone exacerbates gene expression modifications induced by mutant SOD1 in muscles of mice models of amyotrophic lateral sclerosis. Pharmacol Res 65(2):221–230PubMedPubMedCentral
go back to reference Ganguly G, Chakrabarti S, Chatterjee U, Saso L (2017) Proteinopathy, oxidative stress and mitochondrial dysfunction: cross talk in Alzheimer’s disease and Parkinson’s disease. Drug Des Devel Ther 11:797–810PubMedPubMedCentral Ganguly G, Chakrabarti S, Chatterjee U, Saso L (2017) Proteinopathy, oxidative stress and mitochondrial dysfunction: cross talk in Alzheimer’s disease and Parkinson’s disease. Drug Des Devel Ther 11:797–810PubMedPubMedCentral
go back to reference Garbers C, Hermanns HM, Schaper F, Muller-Newen G, Grotzinger J, Rose-John S, Scheller J (2012) Plasticity and cross-talk of interleukin 6-type cytokines. Cytokine Growth Factor Rev 23(3):85–97PubMed Garbers C, Hermanns HM, Schaper F, Muller-Newen G, Grotzinger J, Rose-John S, Scheller J (2012) Plasticity and cross-talk of interleukin 6-type cytokines. Cytokine Growth Factor Rev 23(3):85–97PubMed
go back to reference Garbuzova-Davis S, Haller E, Navarro S, Besong TE, Boccio KJ, Hailu S, Khatib M, Sanberg PR, Appel SH, Borlongan CV (2018) Transplantation of human bone marrow stem cells into symptomatic ALS mice enhances structural and functional blood-spinal cord barrier repair. Exp Neurol 310:33–47PubMedPubMedCentral Garbuzova-Davis S, Haller E, Navarro S, Besong TE, Boccio KJ, Hailu S, Khatib M, Sanberg PR, Appel SH, Borlongan CV (2018) Transplantation of human bone marrow stem cells into symptomatic ALS mice enhances structural and functional blood-spinal cord barrier repair. Exp Neurol 310:33–47PubMedPubMedCentral
go back to reference Gashmardi N, Hosseini SE, Mehrabani D, Edalatmanesh MA, Khodabandeh Z (2017) Impacts of bone marrow stem cells on caspase-3 levels after spinal cord injury in mice. Iran J Med Sci 42(6):593–598PubMedPubMedCentral Gashmardi N, Hosseini SE, Mehrabani D, Edalatmanesh MA, Khodabandeh Z (2017) Impacts of bone marrow stem cells on caspase-3 levels after spinal cord injury in mice. Iran J Med Sci 42(6):593–598PubMedPubMedCentral
go back to reference Gilgun-Sherki Y, Melamed E, Offen D (2006) Anti-inflammatory drugs in the treatment of neurodegenerative diseases: current state. Curr Pharm Des 12(27):3509–3519PubMed Gilgun-Sherki Y, Melamed E, Offen D (2006) Anti-inflammatory drugs in the treatment of neurodegenerative diseases: current state. Curr Pharm Des 12(27):3509–3519PubMed
go back to reference Gugliandolo A, Bramanti P, Mazzon E (2019) Mesenchymal stem cells: a potential therapeutic approach for amyotrophic lateral sclerosis? Stem Cells Int 2019:3675627PubMedPubMedCentral Gugliandolo A, Bramanti P, Mazzon E (2019) Mesenchymal stem cells: a potential therapeutic approach for amyotrophic lateral sclerosis? Stem Cells Int 2019:3675627PubMedPubMedCentral
go back to reference Hammond TR, Dufort C, Dissing-Olesen L, Giera S, Young A, Wysoker A, Walker AJ, Gergits F, Segel M, Nemesh J, Marsh SE, Saunders A, Macosko E, Ginhoux F, Chen J, Franklin RJM, Piao X, McCarroll SA, Stevens B (2019) Single-cell RNA sequencing of microglia throughout the mouse lifespan and in the injured brain reveals complex cell-state changes. Immunity 50(1):253–271.e256PubMed Hammond TR, Dufort C, Dissing-Olesen L, Giera S, Young A, Wysoker A, Walker AJ, Gergits F, Segel M, Nemesh J, Marsh SE, Saunders A, Macosko E, Ginhoux F, Chen J, Franklin RJM, Piao X, McCarroll SA, Stevens B (2019) Single-cell RNA sequencing of microglia throughout the mouse lifespan and in the injured brain reveals complex cell-state changes. Immunity 50(1):253–271.e256PubMed
go back to reference Harting MT, Srivastava AK, Zhaorigetu S, Bair H, Prabhakara KS, Toledano Furman NE, Vykoukal JV, Ruppert KA, Cox CS Jr, Olson SD (2018) Inflammation-stimulated mesenchymal stromal cell-derived extracellular vesicles attenuate inflammation. Stem Cells 36(1):79–90PubMed Harting MT, Srivastava AK, Zhaorigetu S, Bair H, Prabhakara KS, Toledano Furman NE, Vykoukal JV, Ruppert KA, Cox CS Jr, Olson SD (2018) Inflammation-stimulated mesenchymal stromal cell-derived extracellular vesicles attenuate inflammation. Stem Cells 36(1):79–90PubMed
go back to reference Hernan MA, Logroscino G, Garcia Rodriguez LA (2006) Nonsteroidal anti-inflammatory drugs and the incidence of Parkinson disease. Neurology 66(7):1097–1099PubMed Hernan MA, Logroscino G, Garcia Rodriguez LA (2006) Nonsteroidal anti-inflammatory drugs and the incidence of Parkinson disease. Neurology 66(7):1097–1099PubMed
go back to reference Hooten KG, Beers DR, Zhao W, Appel SH (2015) Protective and toxic neuroinflammation in amyotrophic lateral sclerosis. Neurotherapeutics 12(2):364–375PubMedPubMedCentral Hooten KG, Beers DR, Zhao W, Appel SH (2015) Protective and toxic neuroinflammation in amyotrophic lateral sclerosis. Neurotherapeutics 12(2):364–375PubMedPubMedCentral
go back to reference Hu Y, Cao C, Qin XY, Yu Y, Yuan J, Zhao Y, Cheng Y (2017) Increased peripheral blood inflammatory cytokine levels in amyotrophic lateral sclerosis: a meta-analysis study. Sci Rep 7(1):9094PubMedPubMedCentral Hu Y, Cao C, Qin XY, Yu Y, Yuan J, Zhao Y, Cheng Y (2017) Increased peripheral blood inflammatory cytokine levels in amyotrophic lateral sclerosis: a meta-analysis study. Sci Rep 7(1):9094PubMedPubMedCentral
go back to reference Hurlbert RJ (2000) Methylprednisolone for acute spinal cord injury: an inappropriate standard of care. J Neurosurg 93(1 Suppl):1–7PubMed Hurlbert RJ (2000) Methylprednisolone for acute spinal cord injury: an inappropriate standard of care. J Neurosurg 93(1 Suppl):1–7PubMed
go back to reference Imai Y, Kohsaka S (2002) Intracellular signaling in M-CSF-induced microglia activation: role of Iba1. Glia 40(2):164–174PubMed Imai Y, Kohsaka S (2002) Intracellular signaling in M-CSF-induced microglia activation: role of Iba1. Glia 40(2):164–174PubMed
go back to reference Ito D, Imai Y, Ohsawa K, Nakajima K, Fukuuchi Y, Kohsaka S (1998) Microglia-specific localisation of a novel calcium binding protein, Iba1. Brain Res Mol Brain Res 57(1):1–9PubMed Ito D, Imai Y, Ohsawa K, Nakajima K, Fukuuchi Y, Kohsaka S (1998) Microglia-specific localisation of a novel calcium binding protein, Iba1. Brain Res Mol Brain Res 57(1):1–9PubMed
go back to reference Jin MC, Medress ZA, Azad TD, Doulames VM, Veeravagu A (2019) Stem cell therapies for acute spinal cord injury in humans: a review. Neurosurg Focus 46(3):E10PubMed Jin MC, Medress ZA, Azad TD, Doulames VM, Veeravagu A (2019) Stem cell therapies for acute spinal cord injury in humans: a review. Neurosurg Focus 46(3):E10PubMed
go back to reference Keren-Shaul H, Spinrad A, Weiner A, Matcovitch-Natan O, Dvir-Szternfeld R, Ulland TK, David E, Baruch K, Lara-Astaiso D, Toth B, Itzkovitz S, Colonna M, Schwartz M, Amit I (2017) A unique microglia type associated with restricting development of Alzheimer’s disease. Cell 169(7):1276–1290.e1217PubMed Keren-Shaul H, Spinrad A, Weiner A, Matcovitch-Natan O, Dvir-Szternfeld R, Ulland TK, David E, Baruch K, Lara-Astaiso D, Toth B, Itzkovitz S, Colonna M, Schwartz M, Amit I (2017) A unique microglia type associated with restricting development of Alzheimer’s disease. Cell 169(7):1276–1290.e1217PubMed
go back to reference Khalid SI, Ampie L, Kelly R, Ladha SS, Dardis C (2017) Immune modulation in the treatment of amyotrophic lateral sclerosis: a review of clinical trials. Front Neurol 8:486PubMedPubMedCentral Khalid SI, Ampie L, Kelly R, Ladha SS, Dardis C (2017) Immune modulation in the treatment of amyotrophic lateral sclerosis: a review of clinical trials. Front Neurol 8:486PubMedPubMedCentral
go back to reference Kim SH, Oh KW, Jin HK, Bae JS (2018) Immune inflammatory modulation as a potential therapeutic strategy of stem cell therapy for ALS and neurodegenerative diseases. BMB Rep 51(11):545–546PubMedPubMedCentral Kim SH, Oh KW, Jin HK, Bae JS (2018) Immune inflammatory modulation as a potential therapeutic strategy of stem cell therapy for ALS and neurodegenerative diseases. BMB Rep 51(11):545–546PubMedPubMedCentral
go back to reference Koshizuka S, Okada S, Okawa A, Koda M, Murasawa M, Hashimoto M, Kamada T, Yoshinaga K, Murakami M, Moriya H, Yamazaki M (2004) Transplanted hematopoietic stem cells from bone marrow differentiate into neural lineage cells and promote functional recovery after spinal cord injury in mice. J Neuropathol Exp Neurol 63(1):64–72PubMed Koshizuka S, Okada S, Okawa A, Koda M, Murasawa M, Hashimoto M, Kamada T, Yoshinaga K, Murakami M, Moriya H, Yamazaki M (2004) Transplanted hematopoietic stem cells from bone marrow differentiate into neural lineage cells and promote functional recovery after spinal cord injury in mice. J Neuropathol Exp Neurol 63(1):64–72PubMed
go back to reference Kucia M, Reca R, Jala VR, Dawn B, Ratajczak J, Ratajczak MZ (2005) Bone marrow as a home of heterogenous populations of nonhematopoietic stem cells. Leukemia 19(7):1118–1127PubMed Kucia M, Reca R, Jala VR, Dawn B, Ratajczak J, Ratajczak MZ (2005) Bone marrow as a home of heterogenous populations of nonhematopoietic stem cells. Leukemia 19(7):1118–1127PubMed
go back to reference Le Blanc K, Ringden O (2005) Use of mesenchymal stem cells for the prevention of immune complications of hematopoietic stem cell transplantation. Haematologica 90(4):438PubMed Le Blanc K, Ringden O (2005) Use of mesenchymal stem cells for the prevention of immune complications of hematopoietic stem cell transplantation. Haematologica 90(4):438PubMed
go back to reference Lewis CA, Manning J, Rossi F, Krieger C (2012) The Neuroinflammatory response in ALS: the roles of microglia and t cells. Neurol Res Int 2012:803701PubMedPubMedCentral Lewis CA, Manning J, Rossi F, Krieger C (2012) The Neuroinflammatory response in ALS: the roles of microglia and t cells. Neurol Res Int 2012:803701PubMedPubMedCentral
go back to reference Lim JH, Byeon YE, Ryu HH, Jeong YH, Lee YW, Kim WH, Kang KS, Kweon OK (2007) Transplantation of canine umbilical cord blood-derived mesenchymal stem cells in experimentally induced spinal cord injured dogs. J Vet Sci 8(3):275–282PubMedPubMedCentral Lim JH, Byeon YE, Ryu HH, Jeong YH, Lee YW, Kim WH, Kang KS, Kweon OK (2007) Transplantation of canine umbilical cord blood-derived mesenchymal stem cells in experimentally induced spinal cord injured dogs. J Vet Sci 8(3):275–282PubMedPubMedCentral
go back to reference Ling QL, Murdoch E, Ruan KH (2016) How can we address the controversies surrounding the use of NSAIDS in neurodegeneration? Future Med Chem 8(11):1153–1155PubMed Ling QL, Murdoch E, Ruan KH (2016) How can we address the controversies surrounding the use of NSAIDS in neurodegeneration? Future Med Chem 8(11):1153–1155PubMed
go back to reference London A, Cohen M, Schwartz M (2013) Microglia and monocyte-derived macrophages: functionally distinct populations that act in concert in CNS plasticity and repair. Front Cell Neurosci 7:34PubMedPubMedCentral London A, Cohen M, Schwartz M (2013) Microglia and monocyte-derived macrophages: functionally distinct populations that act in concert in CNS plasticity and repair. Front Cell Neurosci 7:34PubMedPubMedCentral
go back to reference Lutz C (2018) Mouse models of ALS: past, present and future. Brain Res 1693(Pt A):1–10PubMed Lutz C (2018) Mouse models of ALS: past, present and future. Brain Res 1693(Pt A):1–10PubMed
go back to reference Mancuso R, Navarro X (2015) Amyotrophic lateral sclerosis: current perspectives from basic research to the clinic. Prog Neurobiol 133:1–26PubMed Mancuso R, Navarro X (2015) Amyotrophic lateral sclerosis: current perspectives from basic research to the clinic. Prog Neurobiol 133:1–26PubMed
go back to reference Martinez A, Palomo Ruiz MD, Perez DI, Gil C (2017) Drugs in clinical development for the treatment of amyotrophic lateral sclerosis. Expert Opin Investig Drugs 26(4):403–414PubMed Martinez A, Palomo Ruiz MD, Perez DI, Gil C (2017) Drugs in clinical development for the treatment of amyotrophic lateral sclerosis. Expert Opin Investig Drugs 26(4):403–414PubMed
go back to reference Mazzardo-Martins L, Martins DF, Stramosk J, Cidral-Filho FJ, Santos AR (2012) Glycogen synthase kinase 3-specific inhibitor AR-A014418 decreases neuropathic pain in mice: evidence for the mechanisms of action. Neuroscience 226:411–420PubMed Mazzardo-Martins L, Martins DF, Stramosk J, Cidral-Filho FJ, Santos AR (2012) Glycogen synthase kinase 3-specific inhibitor AR-A014418 decreases neuropathic pain in mice: evidence for the mechanisms of action. Neuroscience 226:411–420PubMed
go back to reference Mazzini L, Vescovi A, Cantello R, Gelati M, Vercelli A (2016) Stem cells therapy for ALS. Expert Opin Biol Ther 16(2):187–199PubMed Mazzini L, Vescovi A, Cantello R, Gelati M, Vercelli A (2016) Stem cells therapy for ALS. Expert Opin Biol Ther 16(2):187–199PubMed
go back to reference McCauley ME, Baloh RH (2019) Inflammation in ALS/FTD pathogenesis. Acta Neuropathol 137(5):715–730PubMed McCauley ME, Baloh RH (2019) Inflammation in ALS/FTD pathogenesis. Acta Neuropathol 137(5):715–730PubMed
go back to reference McGeer PL, McGeer EG (2007) NSAIDs and Alzheimer disease: epidemiological, animal model and clinical studies. Neurobiol Aging 28(5):639–647PubMed McGeer PL, McGeer EG (2007) NSAIDs and Alzheimer disease: epidemiological, animal model and clinical studies. Neurobiol Aging 28(5):639–647PubMed
go back to reference Miller RG, Mitchell JD, Moore DH (2012) Riluzole for amyotrophic lateral sclerosis (ALS)/motor neuron disease (MND). Cochrane Database Syst Rev 3:CD001447 Miller RG, Mitchell JD, Moore DH (2012) Riluzole for amyotrophic lateral sclerosis (ALS)/motor neuron disease (MND). Cochrane Database Syst Rev 3:CD001447
go back to reference Morales-Garcia JA, Susin C, Alonso-Gil S, Perez DI, Palomo V, Perez C, Conde S, Santos A, Gil C, Martinez A, Perez-Castillo A (2013) Glycogen synthase kinase-3 inhibitors as potent therapeutic agents for the treatment of Parkinson disease. ACS Chem Neurosci 4(2):350–360PubMed Morales-Garcia JA, Susin C, Alonso-Gil S, Perez DI, Palomo V, Perez C, Conde S, Santos A, Gil C, Martinez A, Perez-Castillo A (2013) Glycogen synthase kinase-3 inhibitors as potent therapeutic agents for the treatment of Parkinson disease. ACS Chem Neurosci 4(2):350–360PubMed
go back to reference Morello G, Spampinato AG, Cavallaro S (2017) Neuroinflammation and ALS: transcriptomic insights into molecular disease mechanisms and therapeutic targets. Mediat Inflamm 2017:7070469 Morello G, Spampinato AG, Cavallaro S (2017) Neuroinflammation and ALS: transcriptomic insights into molecular disease mechanisms and therapeutic targets. Mediat Inflamm 2017:7070469
go back to reference Moreno-Martinez L, Calvo AC, Munoz MJ, Osta R (2019a) Are circulating cytokines reliable biomarkers for amyotrophic lateral sclerosis? Int J Mol Sci 20(11):2759PubMedCentral Moreno-Martinez L, Calvo AC, Munoz MJ, Osta R (2019a) Are circulating cytokines reliable biomarkers for amyotrophic lateral sclerosis? Int J Mol Sci 20(11):2759PubMedCentral
go back to reference Moreno-Martinez L, de la Torre M, Toivonen JM, Zaragoza P, Garcia-Redondo A, Calvo AC, Osta R (2019b) Circulating cytokines could not be good prognostic biomarkers in a mouse model of amyotrophic lateral sclerosis. Front Immunol 10:801PubMedPubMedCentral Moreno-Martinez L, de la Torre M, Toivonen JM, Zaragoza P, Garcia-Redondo A, Calvo AC, Osta R (2019b) Circulating cytokines could not be good prognostic biomarkers in a mouse model of amyotrophic lateral sclerosis. Front Immunol 10:801PubMedPubMedCentral
go back to reference Oh KW, Noh MY, Kwon MS, Kim HY, Oh SI, Park J, Kim HJ, Ki CS, Kim SH (2018) Repeated intrathecal mesenchymal stem cells for amyotrophic lateral sclerosis. Ann Neurol 84(3):361–373PubMedPubMedCentral Oh KW, Noh MY, Kwon MS, Kim HY, Oh SI, Park J, Kim HJ, Ki CS, Kim SH (2018) Repeated intrathecal mesenchymal stem cells for amyotrophic lateral sclerosis. Ann Neurol 84(3):361–373PubMedPubMedCentral
go back to reference Orsini M, Oliveira AB, Nascimento OJ, Reis CH, Leite MA, de Souza JA, Pupe C, de Souza OG, Bastos VH, de Freitas MR, Teixeira S, Bruno C, Davidovich E, Smidt B (2015) Amyotrophic lateral sclerosis: new perspectives and update. Neurol Int 7(2):5885PubMedPubMedCentral Orsini M, Oliveira AB, Nascimento OJ, Reis CH, Leite MA, de Souza JA, Pupe C, de Souza OG, Bastos VH, de Freitas MR, Teixeira S, Bruno C, Davidovich E, Smidt B (2015) Amyotrophic lateral sclerosis: new perspectives and update. Neurol Int 7(2):5885PubMedPubMedCentral
go back to reference Pan K, Deng L, Chen P, Peng Q, Pan J, Wu Y, Wang Y (2019) Safety and feasibility of repeated intrathecal allogeneic bone marrow-derived mesenchymal stromal cells in patients with neurological diseases. Stem Cells Int 2019:8421281PubMedPubMedCentral Pan K, Deng L, Chen P, Peng Q, Pan J, Wu Y, Wang Y (2019) Safety and feasibility of repeated intrathecal allogeneic bone marrow-derived mesenchymal stromal cells in patients with neurological diseases. Stem Cells Int 2019:8421281PubMedPubMedCentral
go back to reference Ramirez JJ, Poulton WE, Knelson E, Barton C, King MA, Klein RL (2011) Focal expression of mutated tau in entorhinal cortex neurons of rats impairs spatial working memory. Behav Brain Res 216(1):332–340PubMed Ramirez JJ, Poulton WE, Knelson E, Barton C, King MA, Klein RL (2011) Focal expression of mutated tau in entorhinal cortex neurons of rats impairs spatial working memory. Behav Brain Res 216(1):332–340PubMed
go back to reference Redzic Z (2011) Molecular biology of the blood–brain and the blood–cerebrospinal fluid barriers: similarities and differences. Fluids Barriers CNS 8(1):3PubMedPubMedCentral Redzic Z (2011) Molecular biology of the blood–brain and the blood–cerebrospinal fluid barriers: similarities and differences. Fluids Barriers CNS 8(1):3PubMedPubMedCentral
go back to reference Romero-Ramirez L, Wu S, de Munter J, Wolters EC, Kramer BW, Mey J (2020) Treatment of rats with spinal cord injury using human bone marrow-derived stromal cells prepared by negative selection. J Biomed Sci 27(1):35PubMedPubMedCentral Romero-Ramirez L, Wu S, de Munter J, Wolters EC, Kramer BW, Mey J (2020) Treatment of rats with spinal cord injury using human bone marrow-derived stromal cells prepared by negative selection. J Biomed Sci 27(1):35PubMedPubMedCentral
go back to reference Rose-John S (2012) IL-6 trans-signaling via the soluble IL-6 receptor: importance for the pro-inflammatory activities of IL-6. Int J Biol Sci 8(9):1237–1247PubMedPubMedCentral Rose-John S (2012) IL-6 trans-signaling via the soluble IL-6 receptor: importance for the pro-inflammatory activities of IL-6. Int J Biol Sci 8(9):1237–1247PubMedPubMedCentral
go back to reference Roszer T (2015) Understanding the mysterious M2 Macrophage through activation markers and effector mechanisms. Mediat Inflamm 2015:816460 Roszer T (2015) Understanding the mysterious M2 Macrophage through activation markers and effector mechanisms. Mediat Inflamm 2015:816460
go back to reference Ruppert KA, Nguyen TT, Prabhakara KS, Toledano Furman NE, Srivastava AK, Harting MT, Cox CS Jr, Olson SD (2018) Human mesenchymal stromal cell-derived extracellular vesicles modify microglial response and improve clinical outcomes in experimental spinal cord injury. Sci Rep 8(1):480PubMedPubMedCentral Ruppert KA, Nguyen TT, Prabhakara KS, Toledano Furman NE, Srivastava AK, Harting MT, Cox CS Jr, Olson SD (2018) Human mesenchymal stromal cell-derived extracellular vesicles modify microglial response and improve clinical outcomes in experimental spinal cord injury. Sci Rep 8(1):480PubMedPubMedCentral
go back to reference Sala-Frigerio C, Wolfs L, Fattorelli N, Thrupp N, Voytyuk I, Schmidt I, Mancuso R, Chen WT, Woodbury ME, Srivastava G, Moller T, Hudry E, Das S, Saido T, Karran E, Hyman B, Perry VH, Fiers M, De Strooper B (2019) The major risk factors for Alzheimer’s disease: age, sex, and genes modulate the microglia response to abeta plaques. Cell Rep 27(4):1293–1306.e1296PubMed Sala-Frigerio C, Wolfs L, Fattorelli N, Thrupp N, Voytyuk I, Schmidt I, Mancuso R, Chen WT, Woodbury ME, Srivastava G, Moller T, Hudry E, Das S, Saido T, Karran E, Hyman B, Perry VH, Fiers M, De Strooper B (2019) The major risk factors for Alzheimer’s disease: age, sex, and genes modulate the microglia response to abeta plaques. Cell Rep 27(4):1293–1306.e1296PubMed
go back to reference Schaper F, Rose-John S (2015) Interleukin-6: biology, signaling and strategies of blockade. Cytokine Growth Factor Rev 26(5):475–487PubMed Schaper F, Rose-John S (2015) Interleukin-6: biology, signaling and strategies of blockade. Cytokine Growth Factor Rev 26(5):475–487PubMed
go back to reference Schwartz M, Shechter R (2010) Systemic inflammatory cells fight off neurodegenerative disease. Nat Rev Neurol 6(7):405–410PubMed Schwartz M, Shechter R (2010) Systemic inflammatory cells fight off neurodegenerative disease. Nat Rev Neurol 6(7):405–410PubMed
go back to reference Schwartz M, Ziv Y (2008) Immunity to self and self-maintenance: what can tumor immunology teach us about ALS and Alzheimer’s disease? Trends Pharmacol Sci 29(6):287–293PubMed Schwartz M, Ziv Y (2008) Immunity to self and self-maintenance: what can tumor immunology teach us about ALS and Alzheimer’s disease? Trends Pharmacol Sci 29(6):287–293PubMed
go back to reference Shelkovnikova TA, Peters OM, Deykin AV, Connor-Robson N, Robinson H, Ustyugov AA, Bachurin SO, Ermolkevich TG, Goldman IL, Sadchikova ER, Kovrazhkina EA, Skvortsova VI, Ling SC, Da Cruz S, Parone PA, Buchman VL, Ninkina NN (2013) Fused in sarcoma (FUS) protein lacking nuclear localization signal (NLS) and major RNA binding motifs triggers proteinopathy and severe motor phenotype in transgenic mice. J Biol Chem 288(35):25266–25274PubMedPubMedCentral Shelkovnikova TA, Peters OM, Deykin AV, Connor-Robson N, Robinson H, Ustyugov AA, Bachurin SO, Ermolkevich TG, Goldman IL, Sadchikova ER, Kovrazhkina EA, Skvortsova VI, Ling SC, Da Cruz S, Parone PA, Buchman VL, Ninkina NN (2013) Fused in sarcoma (FUS) protein lacking nuclear localization signal (NLS) and major RNA binding motifs triggers proteinopathy and severe motor phenotype in transgenic mice. J Biol Chem 288(35):25266–25274PubMedPubMedCentral
go back to reference Shruthi S, Sumitha R, Varghese AM, Ashok S, Chandrasekhar Sagar BK, Sathyaprabha TN, Nalini A, Kramer BW, Raju TR, Vijayalakshmi K, Alladi PA (2017) Brain-derived neurotrophic factor facilitates functional recovery from ALS-cerebral spinal fluid-induced neurodegenerative changes in the NSC-34 motor neuron cell line. Neurodegener Dis 17(1):44–58PubMed Shruthi S, Sumitha R, Varghese AM, Ashok S, Chandrasekhar Sagar BK, Sathyaprabha TN, Nalini A, Kramer BW, Raju TR, Vijayalakshmi K, Alladi PA (2017) Brain-derived neurotrophic factor facilitates functional recovery from ALS-cerebral spinal fluid-induced neurodegenerative changes in the NSC-34 motor neuron cell line. Neurodegener Dis 17(1):44–58PubMed
go back to reference Sigurjonsson OE, Perreault MC, Egeland T, Glover JC (2005) Adult human hematopoietic stem cells produce neurons efficiently in the regenerating chicken embryo spinal cord. Proc Natl Acad Sci U S A 102(14):5227–5232PubMedPubMedCentral Sigurjonsson OE, Perreault MC, Egeland T, Glover JC (2005) Adult human hematopoietic stem cells produce neurons efficiently in the regenerating chicken embryo spinal cord. Proc Natl Acad Sci U S A 102(14):5227–5232PubMedPubMedCentral
go back to reference Spinello A, Vecile E, Abbate A, Dobrina A, Magistrato A (2019) How can interleukin-1 receptor antagonist modulate distinct cell death pathways? J Chem Inf Model 59(1):351–359PubMedPubMedCentral Spinello A, Vecile E, Abbate A, Dobrina A, Magistrato A (2019) How can interleukin-1 receptor antagonist modulate distinct cell death pathways? J Chem Inf Model 59(1):351–359PubMedPubMedCentral
go back to reference Subramaniam SR, Federoff HJ (2017) Targeting microglial activation states as a therapeutic avenue in Parkinson’s disease. Front Aging Neurosci 9:176PubMedPubMedCentral Subramaniam SR, Federoff HJ (2017) Targeting microglial activation states as a therapeutic avenue in Parkinson’s disease. Front Aging Neurosci 9:176PubMedPubMedCentral
go back to reference Sykova E, Rychmach P, Drahoradova I, Konradova S, Ruzickova K, Vorisek I, Forostyak S, Homola A, Bojar M (2017) Transplantation of mesenchymal stromal cells in patients with amyotrophic lateral sclerosis: results of phase I/IIa clinical trial. Cell Transplant 26(4):647–658PubMedPubMedCentral Sykova E, Rychmach P, Drahoradova I, Konradova S, Ruzickova K, Vorisek I, Forostyak S, Homola A, Bojar M (2017) Transplantation of mesenchymal stromal cells in patients with amyotrophic lateral sclerosis: results of phase I/IIa clinical trial. Cell Transplant 26(4):647–658PubMedPubMedCentral
go back to reference Tang BL (2017) Amyotrophic lateral sclerosis disease modifying therapeutics: a cell biological perspective. Neural Regen Res 12(3):407–408PubMedPubMedCentral Tang BL (2017) Amyotrophic lateral sclerosis disease modifying therapeutics: a cell biological perspective. Neural Regen Res 12(3):407–408PubMedPubMedCentral
go back to reference Tang W, Han N, Liu Y, Li Z, Wei Y (2015) GSK3beta expression and phosphorylation during neuronal maturation in the rat dorsal root ganglion. Int J Clin Exp Med 8(4):5897–5903PubMedPubMedCentral Tang W, Han N, Liu Y, Li Z, Wei Y (2015) GSK3beta expression and phosphorylation during neuronal maturation in the rat dorsal root ganglion. Int J Clin Exp Med 8(4):5897–5903PubMedPubMedCentral
go back to reference Tsai MJ, Liou DY, Lin YR, Weng CF, Huang MC, Huang WC, Tseng FW, Cheng H (2018) Attenuating spinal cord injury by conditioned medium from bone marrow mesenchymal stem cells. J Clin Med 8(1):23PubMedCentral Tsai MJ, Liou DY, Lin YR, Weng CF, Huang MC, Huang WC, Tseng FW, Cheng H (2018) Attenuating spinal cord injury by conditioned medium from bone marrow mesenchymal stem cells. J Clin Med 8(1):23PubMedCentral
go back to reference Uccelli A, Milanese M, Principato MC, Morando S, Bonifacino T, Vergani L, Giunti D, Voci A, Carminati E, Giribaldi F, Caponnetto C, Bonanno G (2012) Intravenous mesenchymal stem cells improve survival and motor function in experimental amyotrophic lateral sclerosis. Mol Med 18:794–804PubMedPubMedCentral Uccelli A, Milanese M, Principato MC, Morando S, Bonifacino T, Vergani L, Giunti D, Voci A, Carminati E, Giribaldi F, Caponnetto C, Bonanno G (2012) Intravenous mesenchymal stem cells improve survival and motor function in experimental amyotrophic lateral sclerosis. Mol Med 18:794–804PubMedPubMedCentral
go back to reference Voet S, Srinivasan S, Lamkanfi M, van Loo G (2019) Inflammasomes in neuroinflammatory and neurodegenerative diseases. EMBO Mol Med 11(6):e10248PubMedPubMedCentral Voet S, Srinivasan S, Lamkanfi M, van Loo G (2019) Inflammasomes in neuroinflammatory and neurodegenerative diseases. EMBO Mol Med 11(6):e10248PubMedPubMedCentral
go back to reference Wang H, Brown J, Martin M (2011) Glycogen synthase kinase 3: a point of convergence for the host inflammatory response. Cytokine 53(2):130–140PubMed Wang H, Brown J, Martin M (2011) Glycogen synthase kinase 3: a point of convergence for the host inflammatory response. Cytokine 53(2):130–140PubMed
go back to reference Wang L, Pei S, Han L, Guo B, Li Y, Duan R, Yao Y, Xue B, Chen X, Jia Y (2018) Mesenchymal stem cell-derived exosomes reduce A1 astrocytes via downregulation of phosphorylated NF-kappaB P65 subunit in spinal cord injury. Cell Physiol Biochem 50(4):1535–1559PubMed Wang L, Pei S, Han L, Guo B, Li Y, Duan R, Yao Y, Xue B, Chen X, Jia Y (2018) Mesenchymal stem cell-derived exosomes reduce A1 astrocytes via downregulation of phosphorylated NF-kappaB P65 subunit in spinal cord injury. Cell Physiol Biochem 50(4):1535–1559PubMed
go back to reference Wrzodek C, Buchel F, Ruff M, Drager A, Zell A (2013) Precise generation of systems biology models from KEGG pathways. BMC Syst Biol 7:15PubMedPubMedCentral Wrzodek C, Buchel F, Ruff M, Drager A, Zell A (2013) Precise generation of systems biology models from KEGG pathways. BMC Syst Biol 7:15PubMedPubMedCentral
go back to reference Yanez-Mo M, Siljander PR, Andreu Z, Zavec AB, Borras FE, Buzas EI, Buzas K, Casal E, Cappello F, Carvalho J, Colas E, Cordeiro-da Silva A, Fais S, Falcon-Perez JM, Ghobrial IM, Giebel B, Gimona M, Graner M, Gursel I, Gursel M, Heegaard NH, Hendrix A, Kierulf P, Kokubun K, Kosanovic M, Kralj-Iglic V, Kramer-Albers EM, Laitinen S, Lasser C, Lener T, Ligeti E, Line A, Lipps G, Llorente A, Lotvall J, Mancek-Keber M, Marcilla A, Mittelbrunn M, Nazarenko I, Nolte-’t Hoen EN, Nyman TA, O’Driscoll L, Olivan M, Oliveira C, Pallinger E, Del Portillo HA, Reventos J, Rigau M, Rohde E, Sammar M, Sanchez-Madrid F, Santarem N, Schallmoser K, Ostenfeld MS, Stoorvogel W, Stukelj R, Van der Grein SG, Vasconcelos MH, Wauben MH, De Wever O (2015) Biological properties of extracellular vesicles and their physiological functions. J Extracell Vesicles 4:27066PubMed Yanez-Mo M, Siljander PR, Andreu Z, Zavec AB, Borras FE, Buzas EI, Buzas K, Casal E, Cappello F, Carvalho J, Colas E, Cordeiro-da Silva A, Fais S, Falcon-Perez JM, Ghobrial IM, Giebel B, Gimona M, Graner M, Gursel I, Gursel M, Heegaard NH, Hendrix A, Kierulf P, Kokubun K, Kosanovic M, Kralj-Iglic V, Kramer-Albers EM, Laitinen S, Lasser C, Lener T, Ligeti E, Line A, Lipps G, Llorente A, Lotvall J, Mancek-Keber M, Marcilla A, Mittelbrunn M, Nazarenko I, Nolte-’t Hoen EN, Nyman TA, O’Driscoll L, Olivan M, Oliveira C, Pallinger E, Del Portillo HA, Reventos J, Rigau M, Rohde E, Sammar M, Sanchez-Madrid F, Santarem N, Schallmoser K, Ostenfeld MS, Stoorvogel W, Stukelj R, Van der Grein SG, Vasconcelos MH, Wauben MH, De Wever O (2015) Biological properties of extracellular vesicles and their physiological functions. J Extracell Vesicles 4:27066PubMed
go back to reference Ye Y, Zeng YM, Wan MR, Lu XF (2011) Induction of human bone marrow mesenchymal stem cells differentiation into neural-like cells using cerebrospinal fluid. Cell Biochem Biophys 59(3):179–184PubMed Ye Y, Zeng YM, Wan MR, Lu XF (2011) Induction of human bone marrow mesenchymal stem cells differentiation into neural-like cells using cerebrospinal fluid. Cell Biochem Biophys 59(3):179–184PubMed
go back to reference Yoshino H, Kimura A (2006) Investigation of the therapeutic effects of edaravone, a free radical scavenger, on amyotrophic lateral sclerosis (Phase II study). Amyotroph Lateral Scler 7(4):241–245PubMed Yoshino H, Kimura A (2006) Investigation of the therapeutic effects of edaravone, a free radical scavenger, on amyotrophic lateral sclerosis (Phase II study). Amyotroph Lateral Scler 7(4):241–245PubMed
go back to reference Zhang B, Yeo RW, Tan KH, Lim SK (2016) Focus on extracellular vesicles: therapeutic potential of stem cell-derived extracellular vesicles. Int J Mol Sci 17(2):174PubMedPubMedCentral Zhang B, Yeo RW, Tan KH, Lim SK (2016) Focus on extracellular vesicles: therapeutic potential of stem cell-derived extracellular vesicles. Int J Mol Sci 17(2):174PubMedPubMedCentral
go back to reference Zou LH, Shi YJ, He H, Jiang SM, Huo FF, Wang XM, Wu F, Ma L (2019) Effects of FGF2/FGFR1 pathway on expression of A1 astrocytes after infrasound exposure. Front Neurosci 13:429PubMedPubMedCentral Zou LH, Shi YJ, He H, Jiang SM, Huo FF, Wang XM, Wu F, Ma L (2019) Effects of FGF2/FGFR1 pathway on expression of A1 astrocytes after infrasound exposure. Front Neurosci 13:429PubMedPubMedCentral
Metadata
Title
Why do anti-inflammatory signals of bone marrow-derived stromal cells improve neurodegenerative conditions where anti-inflammatory drugs fail?
Authors
J. P. J. M. de Munter
J. Mey
T. Strekalova
B. W. Kramer
E. Ch. Wolters
Publication date
01-05-2020
Publisher
Springer Vienna
Published in
Journal of Neural Transmission / Issue 5/2020
Print ISSN: 0300-9564
Electronic ISSN: 1435-1463
DOI
https://doi.org/10.1007/s00702-020-02173-3

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