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首页> 外文期刊>Journal of Neuroimmunology: Official Bulletin of the Research Committee on Neuroimmunology of the World Federation of Neurology >Matrix metalloproteinase expression during experimental autoimmune encephalomyelitis and effects of a combined matrix metalloproteinase and tumour necrosis factor-alpha inhibitor.
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Matrix metalloproteinase expression during experimental autoimmune encephalomyelitis and effects of a combined matrix metalloproteinase and tumour necrosis factor-alpha inhibitor.

机译:实验性自身免疫性脑脊髓炎期间基质金属蛋白酶的表达以及基质金属蛋白酶和肿瘤坏死因子-α抑制剂联合作用的影响。

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摘要

Matrix metalloproteinases (MMPs) are a large family of Zn2+ endopeptidases that are expressed in inflammatory conditions and are capable of degrading connective tissue macromolecules. MMP-like enzymes are also involved in the processing of a variety of cell surface molecules including the pro-inflammatory cytokine TNF-alpha. MMPs and TNF-alpha have both been implicated in the pathology associated with neuro-inflammatory diseases (NIDs), particularly multiple sclerosis (MS) and its animal model experimental autoimmune encephalomyelitis (EAE). We have shown that BB-1101, a broad spectrum hydroxamic acid-based combined inhibitor of MMP activity and TNF processing, reduces the clinical signs and weight loss in an acute EAE model in Lewis rats. However, little is known about which MMPs are involved in the neuroinflammatory process. In order to determine the optimum inhibitory profile for an MMP inhibitor in the treatment of NID, we investigated the profile of MMP expression and activity during EAE. The development of disease symptoms was associated with a 3-fold increase in MMP activity in the cerebrospinal fluid (CSF), which could be inhibited by treatment with BB-1101, and an increase in 92 kDa gelatinase activity detected by gelatin substrate zymography. Quantitative PCR analysis of normal and EAE spinal cord revealed the expression of at least seven MMPs. Of these, matrilysin showed the most significant change, being elevated over 500 fold with onset of clinical symptoms and peaking at maximum disease severity. Of the other six MMPs detected, 92 kDa gelatinase showed a modest 5 fold increase which peaked at the onset of clinical signs and then declined during the most severe phase of the disease. Matrilysin was localised by immunohistochemistry to the invading macrophages within the inflammatory lesions of the spinal cord. Matrilysin's potent broad spectrum proteolytic activity and its localisation to inflammatory lesions in the CNS suggest this enzyme could be particularly involved in the pathological processes associated with neuro-inflammatory disease.
机译:基质金属蛋白酶(MMP)是Zn2 +内肽酶的一个大家族,在炎症条件下表达,能够降解结缔组织大分子。 MMP样酶也参与多种细胞表面分子的加工,包括促炎性细胞因子TNF-α。 MMP和TNF-α均与神经炎性疾病(NIDs),尤其是多发性硬化症(MS)及其动物模型实验性自身免疫性脑脊髓炎(EAE)相关的病理学有关。我们已经表明,BB-1101是一种广谱的基于异羟肟酸的MMP活性和TNF合成抑制剂,可减少Lewis大鼠急性EAE模型的临床体征和体重减轻。然而,对于哪些MMP参与神经炎症过程知之甚少。为了确定NMP治疗中MMP抑制剂的最佳抑制特性,我们研究了EAE期间MMP表达和活性的特性。疾病症状的发展与脑脊液(CSF)中MMP活性的3倍增加有关,这可以通过用BB-1101治疗来抑制,以及通过明胶底物酶谱法检测到的92 kDa明胶酶活性的增加。正常和EAE脊髓的定量PCR分析显示至少7个MMP的表达。其中,基质溶菌素显示出最显着的变化,随着临床症状的发作而升高500倍以上,并在最大疾病严重度时达到峰值。在检测到的其他六个MMP中,92 kDa明胶酶显示适度的5倍增加,在临床症状发作时达到峰值,然后在疾病的最严重阶段下降。基质溶素通过免疫组织化学定位在脊髓炎性病变内的侵入巨噬细胞上。基质溶素的强大的广谱蛋白水解活性及其在中枢神经系统炎性病变中的定位表明该酶可能特别参与与神经炎性疾病相关的病理过程。

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