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多发性硬化症患者及对照组骨髓和血液中产生免疫球蛋白的细胞。

Immunoglobulin producing cells in bone marrow and blood of patients with multiple sclerosis and controls.

作者信息

Fredrikson S, Baig S, Link H

机构信息

Department of Neurology, Karolinska Institute, Huddinge University Hospital, Stockholm, Sweden.

出版信息

J Neurol Neurosurg Psychiatry. 1991 May;54(5):412-4. doi: 10.1136/jnnp.54.5.412.

Abstract

Multiple sclerosis (MS) is characterised by intrathecal synthesis of IgG, less frequently of IgA and IgM. Local production of antibodies to myelin basic protein (MBP) and other myelin components has also been reported, and autoimmune pathogenesis has been postulated. Whether MS is accompanied by a systemic B cell response is less clear. To elucidate this question, we examined bone marrow and peripheral blood from patients with MS and controls for cells secreting IgG, IgA and IgM, as well as anti-MBP antibodies of these three isotypes. Patients with MS without any signs of concurrent infections had higher numbers of IgG + IgA + IgM secreting cells both in bone marrow and peripheral blood compared with healthy controls. The same abnormalities were observed in patients with other inflammatory neurological diseases (OIND). When analysing individual isotypes, patients with MS and OIND had higher numbers of IgA secreting cells both in bone marrow and blood compared with healthy controls. Only one of 13 MS patients examined had anti-MBP antibody secreting cells in bone marrow and blood. The systemic B cell response registered in MS is also present in other inflammatory neurological diseases and its specificity and possible role in the pathogenesis of MS remains unknown.

摘要

多发性硬化症(MS)的特征是鞘内合成IgG,较少见的是合成IgA和IgM。也有报道称存在针对髓鞘碱性蛋白(MBP)和其他髓鞘成分的抗体局部产生,并且推测了自身免疫发病机制。MS是否伴有全身性B细胞反应尚不清楚。为了阐明这个问题,我们检测了MS患者和对照者的骨髓和外周血中分泌IgG、IgA和IgM的细胞,以及这三种同种型的抗MBP抗体。与健康对照相比,没有任何并发感染迹象的MS患者骨髓和外周血中分泌IgG + IgA + IgM的细胞数量更多。在患有其他炎性神经疾病(OIND)的患者中也观察到了同样的异常情况。在分析单个同种型时,与健康对照相比,MS患者和OIND患者骨髓和血液中分泌IgA的细胞数量更多。在检测的13例MS患者中,只有1例在骨髓和血液中有分泌抗MBP抗体的细胞。在MS中检测到的全身性B细胞反应在其他炎性神经疾病中也存在,其特异性以及在MS发病机制中的可能作用仍不清楚。

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