Connection between JAK/STAT and PPARγ Signaling During the Progression of Multiple Sclerosis: Insights into the Modulation of T-Cells and Immune Responses in the Brain

JAK-STAT信号通路 斯达 促炎细胞因子 实验性自身免疫性脑脊髓炎 信号转导 生物 神经保护 多发性硬化 免疫系统 细胞因子 细胞因子信号抑制因子1 免疫学 炎症 细胞生物学 神经科学 车站3 受体酪氨酸激酶 遗传学 癌症 抑制器
作者
Nitish Kumar,Nidhi Sharma,Sidharth Mehan
出处
期刊:Current Molecular Pharmacology [Bentham Science]
卷期号:14 (5): 823-837 被引量:18
标识
DOI:10.2174/1874467214666210301121432
摘要

Multiple Sclerosis (MS) is a severe brain and spinal cord condition with a diverse autoimmune response and a wide variety of demyelination symptoms that primarily affect young adults. The primary reason for this disease is inflammation of white and grey matter caused by increased production of proinflammatory cytokines, which further damages the progenitor oligodendrocytes and appears to induce hypertrophy of the astrocytes and gliosis. Overexpression of the JAK/STAT signaling pathway contributes directly to physiological and pathological results in motor neuron diseases. Cytokines such as IL-17, IL-6, IL-12, TNF-α, and INF-ϒ use JAK/STAT signaling to trigger self-reactive CD4+ T-cells and differentiate them into Th1 phenotypes that overactivate immune reactions in the brain. Similarly, PPARγ plays a critical role in regulating the immune response by providing an anti-inflammatory effect by inhibiting macrophage and cytokine production activation. PPARγ also mediates the intrinsic molecular process of the T-cell, which selectively regulates the differentiation of Th17. Various studies indicate the neuroprotective function of PPARγ agonists by attenuating the JAK/STAT mediated activation of glial cells, inhibiting interleukin, and the differentiation of Th1 cells. Therefore, to maintain the brain's immune system, both PPARγ and JAK/STAT oppositely regulate each other. Dysregulation in JAK/STAT and PPARγ signaling contributes to several physiological changes leading to neurological disorders, including MS. Based on the above view, we have summarized the combined role of JAK/STAT-PPARγ signaling in MS and explored potential therapeutic strategies for disease improvement by the use of pathway modulators.
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