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Antibodies in sera from multiple sclerosis patients recognize Trichinella spiralis muscle larvae excretory-secretory antigens

机译:来自多发性硬化症患者的血清中的抗体识别Trichinella spiralis肌肉幼虫排泄 - 分泌抗原

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摘要

Helminths, as complex pathogens, possess a large number of different epitopes, some of which may be similar to the epitopes of the host. Besides being the cause for the activation of self-reactive immune cells, molecular mimicry may also be the cause for the expansion of regulatory T cells, crucial for the host tolerance of self-antigens. Amelioration of experimental autoimmune encephalomyelitis (EAE), animal model of multiple sclerosis (MS), caused by Trichinella spiralis infection or application of its muscle larvae excretory-secretory products (ES L1), was achieved through activation of Th2 and regulatory responses. The present study aimed to reveal whether the cause of observed immunomodulation could be the existence of shared epitopes between ES L1 antigens and auto-antigens. Serum samples from 92 MS patients were tested in Western blot for the reactivity toward components of ES L1. Immunoglobulins from the sera of MS patients recognized several ES L1 components, but 45, 49 and 58 kDa proteins dominated others by the frequency of interaction. According to the logistic regression analysis, these interactions were statistically significantly associated with MS, regardless of the disease phenotype or severity. Selected molecules might share homology with self-antigens and as such are worthy of further investigation in terms of potential immunomodulatory capacity and involvement in the parasite's provoked amelioration of EAE.
机译:作为复杂病原体的蠕虫,具有大量不同的表位,其中一些可能与宿主的表位类似。除了作为激活自活性免疫细胞的原因外,分子模拟也可以是调节性T细胞扩增的原因,对自我抗原的宿主耐受性至关重要。通过激活Th2和调节反应,通过激活和调节反应来实现实验性自身免疫脑脊髓炎(EAE),多发性硬化症(MS)的动物模型,由Trichinella Spiralis感染或应用其肌肉幼虫排泄分泌产物(ES L1)。本研究旨在揭示观察到的免疫调节的原因是ES L1抗原和自动抗原之间的共用表位的存在。从92例患者的血清样品在蛋白质印迹中进行测试,用于对ES L1的组分的反应性。来自MS患者的血清的免疫球蛋白认识到几种ES L1组分,但是通过相互作用的频率使其占据了他人的45,49和58 kda蛋白。根据逻辑回归分析,无论疾病表型或严重程度如何,这些相互作用与MS有统计学显着相关。选定的分子可能与自我抗原分享同源性,因为就潜在的免疫调节能力和参与寄生虫的挑衅性改善而有价值。

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