Skip to main content
Top
Published in: Acta Neuropathologica 5/2010

01-11-2010 | Original Paper

Aquaporin-4 astrocytopathy in Baló’s disease

Authors: Takeshi Matsuoka, Satoshi O. Suzuki, Toru Iwaki, Takeshi Tabira, Artemio T. Ordinario, Jun-ichi Kira

Published in: Acta Neuropathologica | Issue 5/2010

Login to get access

Abstract

Baló’s concentric sclerosis (BCS) is considered to be a rare variant of multiple sclerosis and characterized by alternating rings of demyelinated and preserved myelin layers. The mechanism underlying BCS remains to be elucidated. Recently, occurrence of concentric rings of Baló was described in the brainstem of a patient with neuromyelitis optica (NMO). Because selective loss of aquaporin-4 (AQP4) and vasculocentric deposition of complement and immunoglobulins are characteristic in NMO, we aimed to assess AQP4 expression in the concentric demyelinating lesions of BCS patients. We evaluated AQP4 expression relative to expression of another astrocytic marker (glial fibrillary acidic protein), the extent of demyelination, lesion staging and perivascular deposition of complement and immunoglobulin in four cases with BCS, and 30 individuals with other neurological diseases. All cases with BCS demonstrated extensive AQP4 loss in both demyelinated and myelinated layers of all actively demyelinating lesions, with perivascular lymphocytic cuffing of T cells, but no deposition of immunoglobulins or complement around vessels. These findings suggest that AQP4 loss occurs in heterogeneous demyelinating conditions, namely NMO and BCS. Furthermore, acute BCS lesions are characterized by extensive AQP4 loss without vasculocentric deposition of complement or immunoglobulin.
Literature
1.
go back to reference Aoki K, Uchihara T, Tsuchiya K, Nakamura A, Ikeda K, Wakayama Y (2003) Enhanced expression of aquaporin 4 in human brain with infarction. Acta Neuropathol 106:121–124CrossRefPubMed Aoki K, Uchihara T, Tsuchiya K, Nakamura A, Ikeda K, Wakayama Y (2003) Enhanced expression of aquaporin 4 in human brain with infarction. Acta Neuropathol 106:121–124CrossRefPubMed
2.
go back to reference Baló J (1928) Encephalitis periaxialis concentrica. Arch Neurol 19:242–263 Baló J (1928) Encephalitis periaxialis concentrica. Arch Neurol 19:242–263
3.
go back to reference Bennett JL, Lam C, Kalluri SR et al (2009) Intrathecal pathogenic anti-aquaporin-4 antibodies in early neuromyelitis optica. Ann Neurol 66:617–629CrossRefPubMed Bennett JL, Lam C, Kalluri SR et al (2009) Intrathecal pathogenic anti-aquaporin-4 antibodies in early neuromyelitis optica. Ann Neurol 66:617–629CrossRefPubMed
4.
go back to reference Bradl M, Misu T, Takahashi T et al (2009) Neuromyelitis optica: pathogenicity of patient immunoglobulin in vivo. Ann Neurol 66:630–643CrossRefPubMed Bradl M, Misu T, Takahashi T et al (2009) Neuromyelitis optica: pathogenicity of patient immunoglobulin in vivo. Ann Neurol 66:630–643CrossRefPubMed
5.
go back to reference Carmosino M, Procino G, Tamma G, Mannucci R, Svelto M, Valenti G (2007) Trafficking and phosphorylation dynamics of AQP4 in histamine-treated human gastric cells. Biol Cell 99:25–36CrossRefPubMed Carmosino M, Procino G, Tamma G, Mannucci R, Svelto M, Valenti G (2007) Trafficking and phosphorylation dynamics of AQP4 in histamine-treated human gastric cells. Biol Cell 99:25–36CrossRefPubMed
6.
go back to reference Chen CJ, Chu NS, Lu CS, Sung CY (1999) Serial magnetic resonance imaging in patients with Baló’s concentric sclerosis: natural history of lesion development. Ann Neurol 46:651–656CrossRefPubMed Chen CJ, Chu NS, Lu CS, Sung CY (1999) Serial magnetic resonance imaging in patients with Baló’s concentric sclerosis: natural history of lesion development. Ann Neurol 46:651–656CrossRefPubMed
7.
go back to reference Courville CB (1970) Concentric sclerosis. In: Vinken PJ, Bruyn GW (eds) Multiple sclerosis and other demyelinating diseases. North-Holland, Amsterdam, pp 437–451 Courville CB (1970) Concentric sclerosis. In: Vinken PJ, Bruyn GW (eds) Multiple sclerosis and other demyelinating diseases. North-Holland, Amsterdam, pp 437–451
8.
go back to reference Fenton RA, Moeller HB, Zelenina M, Snaebjornsson MT, Holen T, MacAulay N (2010) Differential water permeability and regulation of three aquaporin 4 isoforms. Cell Mol Life Sci 67:829–840CrossRefPubMed Fenton RA, Moeller HB, Zelenina M, Snaebjornsson MT, Holen T, MacAulay N (2010) Differential water permeability and regulation of three aquaporin 4 isoforms. Cell Mol Life Sci 67:829–840CrossRefPubMed
9.
go back to reference Frydenlund DS, Bhardwaj A, Otsuka T et al (2006) Temporary loss of perivascular aquaporin-4 in neocortex after transient middle cerebral artery occlusion in mice. Proc Natl Acad Sci USA 103:13532–13536CrossRefPubMed Frydenlund DS, Bhardwaj A, Otsuka T et al (2006) Temporary loss of perivascular aquaporin-4 in neocortex after transient middle cerebral artery occlusion in mice. Proc Natl Acad Sci USA 103:13532–13536CrossRefPubMed
10.
go back to reference Fujita Y, Yamamoto N, Sobue K et al (2003) Effect of mild hypothermia on the expression of aquaporin family in cultured rat astrocytes under hypoxic condition. Neurosci Res 47:437–444CrossRefPubMed Fujita Y, Yamamoto N, Sobue K et al (2003) Effect of mild hypothermia on the expression of aquaporin family in cultured rat astrocytes under hypoxic condition. Neurosci Res 47:437–444CrossRefPubMed
11.
go back to reference Graber JJ, Kister I, Geyer H, Khaund M, Herbert J (2010) Neuromyelitis optica and concentric rings of Baló in the brainstem. Arch Neurol 66:274–275CrossRef Graber JJ, Kister I, Geyer H, Khaund M, Herbert J (2010) Neuromyelitis optica and concentric rings of Baló in the brainstem. Arch Neurol 66:274–275CrossRef
12.
go back to reference Jung JS, Bhat RV, Preston GM, Guggino WB, Baraban JM, Agre P (1994) Molecular characterization of an aquaporin cDNA from brain: candidate osmoreceptor and regulator of water balance. Proc Natl Acad Sci USA 91:13052–13056CrossRefPubMed Jung JS, Bhat RV, Preston GM, Guggino WB, Baraban JM, Agre P (1994) Molecular characterization of an aquaporin cDNA from brain: candidate osmoreceptor and regulator of water balance. Proc Natl Acad Sci USA 91:13052–13056CrossRefPubMed
13.
go back to reference Kinoshita M, Nakatsuji Y, Kimura T et al (2009) Neuromyelitis optica: passive transfer to rats by human immunoglobulin. Biochem Biophys Res Commun 386:623–627CrossRefPubMed Kinoshita M, Nakatsuji Y, Kimura T et al (2009) Neuromyelitis optica: passive transfer to rats by human immunoglobulin. Biochem Biophys Res Commun 386:623–627CrossRefPubMed
14.
go back to reference Kinoshita M, Nakatsuji Y, Moriya M et al (2009) Astrocytic necrosis is induced by anti-aquaporin-4 antibody-positive serum. Neuroreport 20:508–512CrossRefPubMed Kinoshita M, Nakatsuji Y, Moriya M et al (2009) Astrocytic necrosis is induced by anti-aquaporin-4 antibody-positive serum. Neuroreport 20:508–512CrossRefPubMed
15.
go back to reference Kuroiwa Y (1985) Neuromyelitis optica (Devic’s disease, Devic’s syndrome). In: Koetsier JC (ed) Handbook of clinical neurology. Demyelinating disease, vol 47. Elsevier, Amsterdam, pp 397–408 Kuroiwa Y (1985) Neuromyelitis optica (Devic’s disease, Devic’s syndrome). In: Koetsier JC (ed) Handbook of clinical neurology. Demyelinating disease, vol 47. Elsevier, Amsterdam, pp 397–408
16.
go back to reference Lassmann H, Raine CS, Antel J, Prineas JW (1998) Immunopathology of multiple sclerosis: report on an international meeting held at the institute of neurology of the University of Vienna. J Neuroimmunol 86:213–217CrossRefPubMed Lassmann H, Raine CS, Antel J, Prineas JW (1998) Immunopathology of multiple sclerosis: report on an international meeting held at the institute of neurology of the University of Vienna. J Neuroimmunol 86:213–217CrossRefPubMed
17.
go back to reference Lee M, Lee SJ, Choi HJ et al (2008) Regulation of AQP4 protein expression in rat brain astrocytes: role of P2X7 receptor activation. Brain Res 1195:1–11CrossRefPubMed Lee M, Lee SJ, Choi HJ et al (2008) Regulation of AQP4 protein expression in rat brain astrocytes: role of P2X7 receptor activation. Brain Res 1195:1–11CrossRefPubMed
18.
go back to reference Lee TS, Eid T, Mane S et al (2004) Aquaporin-4 is increased in the sclerotic hippocampus in human temporal lobe epilepsy. Acta Neuropathol 108:493–502CrossRefPubMed Lee TS, Eid T, Mane S et al (2004) Aquaporin-4 is increased in the sclerotic hippocampus in human temporal lobe epilepsy. Acta Neuropathol 108:493–502CrossRefPubMed
19.
go back to reference Lennon VA, Kryzer TJ, Pittock SJ, Verkman AS, Hinson SR (2005) IgG marker of optic-spinal multiple sclerosis binds to the aquaporin-4 water channel. J Exp Med 202:473–477CrossRefPubMed Lennon VA, Kryzer TJ, Pittock SJ, Verkman AS, Hinson SR (2005) IgG marker of optic-spinal multiple sclerosis binds to the aquaporin-4 water channel. J Exp Med 202:473–477CrossRefPubMed
20.
go back to reference Lennon VA, Wingerchuk DM, Kryzer TJ et al (2004) A serum autoantibody marker of neuromyelitis optica: distinction from multiple sclerosis. Lancet 364:2106–2112CrossRefPubMed Lennon VA, Wingerchuk DM, Kryzer TJ et al (2004) A serum autoantibody marker of neuromyelitis optica: distinction from multiple sclerosis. Lancet 364:2106–2112CrossRefPubMed
21.
go back to reference Li L, Zhang H, Verkman AS (2009) Greatly attenuated experimental autoimmune encephalomyelitis in aquaporin-4 knockout mice. BMC Neurosci 10:94CrossRefPubMed Li L, Zhang H, Verkman AS (2009) Greatly attenuated experimental autoimmune encephalomyelitis in aquaporin-4 knockout mice. BMC Neurosci 10:94CrossRefPubMed
22.
go back to reference Lucchinetti C, Brück W, Parisi J, Scheithauer B, Rodriguez M, Lassmann H (2000) Heterogeneity of multiple sclerosis lesions: implications for the pathogenesis of demyelination. Ann Neurol 47:707–717CrossRefPubMed Lucchinetti C, Brück W, Parisi J, Scheithauer B, Rodriguez M, Lassmann H (2000) Heterogeneity of multiple sclerosis lesions: implications for the pathogenesis of demyelination. Ann Neurol 47:707–717CrossRefPubMed
23.
go back to reference Lucchinetti CF, Mandler RN, McGavern D et al (2002) A role for humoral mechanisms in the pathogenesis of Devic’s neuromyelitis optica. Brain 125:1450–1461CrossRefPubMed Lucchinetti CF, Mandler RN, McGavern D et al (2002) A role for humoral mechanisms in the pathogenesis of Devic’s neuromyelitis optica. Brain 125:1450–1461CrossRefPubMed
24.
go back to reference Mahad D, Ziabreva I, Lassmann H, Turnbull D (2008) Mitochondrial defects in acute multiple sclerosis lesions. Brain 131:1722–1735CrossRefPubMed Mahad D, Ziabreva I, Lassmann H, Turnbull D (2008) Mitochondrial defects in acute multiple sclerosis lesions. Brain 131:1722–1735CrossRefPubMed
25.
go back to reference Manley GT, Fujimura M, Ma T, Noshita N, Filiz F, Bollen AW et al (2000) Aquaporin-4 deletion in mice reduces brain edema after acute water intoxication and ischemic stroke. Nat Med 6:159–163CrossRefPubMed Manley GT, Fujimura M, Ma T, Noshita N, Filiz F, Bollen AW et al (2000) Aquaporin-4 deletion in mice reduces brain edema after acute water intoxication and ischemic stroke. Nat Med 6:159–163CrossRefPubMed
26.
go back to reference Meng S, Qiao M, Lin L, Del Bigio MR, Tomanek B, Tuor UI (2004) Correspondence of AQP4 expression and hypoxic-ischaemic brain edema monitored by magnetic resonance imaging in the immature and juvenile rat. Eur J Neurosci 19:2261–2269CrossRefPubMed Meng S, Qiao M, Lin L, Del Bigio MR, Tomanek B, Tuor UI (2004) Correspondence of AQP4 expression and hypoxic-ischaemic brain edema monitored by magnetic resonance imaging in the immature and juvenile rat. Eur J Neurosci 19:2261–2269CrossRefPubMed
27.
go back to reference Misu T, Fujihara K, Kakita A et al (2007) Loss of aquaporin 4 in lesions of neuromyelitis optica: distinction from multiple sclerosis. Brain 130:1224–1234CrossRefPubMed Misu T, Fujihara K, Kakita A et al (2007) Loss of aquaporin 4 in lesions of neuromyelitis optica: distinction from multiple sclerosis. Brain 130:1224–1234CrossRefPubMed
28.
go back to reference Moeller HB, Fenton RA, Zeuthen T, Macaulay N (2009) Vasopressin-dependent short-term regulation of aquaporin 4 expressed in Xenopus oocytes. Neuroscience 164:1674–1684CrossRefPubMed Moeller HB, Fenton RA, Zeuthen T, Macaulay N (2009) Vasopressin-dependent short-term regulation of aquaporin 4 expressed in Xenopus oocytes. Neuroscience 164:1674–1684CrossRefPubMed
29.
go back to reference Nag S, Manias JL, Stewart DJ (2009) Pathology and new players in the pathogenesis of brain edema. Acta Neuropathol 118:197–217CrossRefPubMed Nag S, Manias JL, Stewart DJ (2009) Pathology and new players in the pathogenesis of brain edema. Acta Neuropathol 118:197–217CrossRefPubMed
30.
go back to reference Roemer SF, Parisi JE, Lennon VA et al (2007) Pattern-specific loss of aquaporin-4 immunoreactivity distinguishes neuromyelitis optica from multiple sclerosis. Brain 130:1194–1205CrossRefPubMed Roemer SF, Parisi JE, Lennon VA et al (2007) Pattern-specific loss of aquaporin-4 immunoreactivity distinguishes neuromyelitis optica from multiple sclerosis. Brain 130:1194–1205CrossRefPubMed
31.
go back to reference Saadoun S, Waters P, Bell BA, Vincent A, Verkman AS, Papadopoulos MC (2010) Intra-cerebral injection of neuromyelitis optica immunoglobulin G and human complement produces neuromyelitis optica lesions in mice. Brain 133:349–361CrossRefPubMed Saadoun S, Waters P, Bell BA, Vincent A, Verkman AS, Papadopoulos MC (2010) Intra-cerebral injection of neuromyelitis optica immunoglobulin G and human complement produces neuromyelitis optica lesions in mice. Brain 133:349–361CrossRefPubMed
32.
go back to reference Sabater L, Giralt A, Boronat A et al (2009) Cytotoxic effect of neuromyelitis optica antibody (NMO-IgG) to astrocytes: an in vitro study. J Neuroimmunol 215:31–35CrossRefPubMed Sabater L, Giralt A, Boronat A et al (2009) Cytotoxic effect of neuromyelitis optica antibody (NMO-IgG) to astrocytes: an in vitro study. J Neuroimmunol 215:31–35CrossRefPubMed
33.
go back to reference Sharma R, Fischer MT, Bauer J et al (2010) Inflammation induced by innate immunity in the central nervous system leads to primary astrocyte dysfunction followed by demyelination. Acta Neuropathol 120:223–236CrossRefPubMed Sharma R, Fischer MT, Bauer J et al (2010) Inflammation induced by innate immunity in the central nervous system leads to primary astrocyte dysfunction followed by demyelination. Acta Neuropathol 120:223–236CrossRefPubMed
34.
go back to reference Stadelmann C, Ludwin S, Tabira T et al (2005) Tissue preconditioning may explain concentric lesions in Baló’s type of multiple sclerosis. Brain 128:979–987CrossRefPubMed Stadelmann C, Ludwin S, Tabira T et al (2005) Tissue preconditioning may explain concentric lesions in Baló’s type of multiple sclerosis. Brain 128:979–987CrossRefPubMed
35.
go back to reference Verkman AS, Binder DK, Bloch O, Auguste K, Papadopoulos MC (2006) Three distinct roles of aquaporin-4 in brain function revealed by knockout mice. Biochim Biophys Acta 1758:1085–1093CrossRefPubMed Verkman AS, Binder DK, Bloch O, Auguste K, Papadopoulos MC (2006) Three distinct roles of aquaporin-4 in brain function revealed by knockout mice. Biochim Biophys Acta 1758:1085–1093CrossRefPubMed
36.
go back to reference Vincent T, Saikali P, Cayrol R et al (2008) Functional consequences of neuromyelitis optica–IgG astrocyte interactions on blood–brain barrier permeability and granulocyte recruitment. J Immunol 181:5730–5737PubMed Vincent T, Saikali P, Cayrol R et al (2008) Functional consequences of neuromyelitis optica–IgG astrocyte interactions on blood–brain barrier permeability and granulocyte recruitment. J Immunol 181:5730–5737PubMed
37.
go back to reference Voskuhl RR, Peterson RS, Song B et al (2009) Reactive astrocytes form scar-like perivascular barriers to leukocytes during adaptive immune inflammation of the CNS. J Neurosci 29:11511–11522CrossRefPubMed Voskuhl RR, Peterson RS, Song B et al (2009) Reactive astrocytes form scar-like perivascular barriers to leukocytes during adaptive immune inflammation of the CNS. J Neurosci 29:11511–11522CrossRefPubMed
38.
go back to reference Wang C, Zhang KN, Wu XM et al (2008) Baló’s disease showing benign clinical course and co-existence with multiple sclerosis-like lesions in Chinese. Mult Scler 14:418–424CrossRef Wang C, Zhang KN, Wu XM et al (2008) Baló’s disease showing benign clinical course and co-existence with multiple sclerosis-like lesions in Chinese. Mult Scler 14:418–424CrossRef
39.
go back to reference Wiendl H, Weissert T, Herrlinger U, Krapf H, Küker W (2005) Diffusion abnormality in Baló’s concentric sclerosis: clues for the pathogenesis. Eur Neurol 53:42–44CrossRefPubMed Wiendl H, Weissert T, Herrlinger U, Krapf H, Küker W (2005) Diffusion abnormality in Baló’s concentric sclerosis: clues for the pathogenesis. Eur Neurol 53:42–44CrossRefPubMed
40.
go back to reference Wolburg-Buchholz K, Mack AF, Steiner E, Pfeiffer F, Engelhardt B, Wolburg H (2009) Loss of astrocyte polarity marks blood–brain barrier impairment during experimental autoimmune encephalomyelitis. Acta Neuropathol 118:219–233CrossRefPubMed Wolburg-Buchholz K, Mack AF, Steiner E, Pfeiffer F, Engelhardt B, Wolburg H (2009) Loss of astrocyte polarity marks blood–brain barrier impairment during experimental autoimmune encephalomyelitis. Acta Neuropathol 118:219–233CrossRefPubMed
Metadata
Title
Aquaporin-4 astrocytopathy in Baló’s disease
Authors
Takeshi Matsuoka
Satoshi O. Suzuki
Toru Iwaki
Takeshi Tabira
Artemio T. Ordinario
Jun-ichi Kira
Publication date
01-11-2010
Publisher
Springer-Verlag
Published in
Acta Neuropathologica / Issue 5/2010
Print ISSN: 0001-6322
Electronic ISSN: 1432-0533
DOI
https://doi.org/10.1007/s00401-010-0733-7

Other articles of this Issue 5/2010

Acta Neuropathologica 5/2010 Go to the issue