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Emerging Understanding of the Mechanism of Action for Dimethyl Fumarate in the Treatment of Multiple Sclerosis

机译:对富马酸二甲酯在多发性硬化症治疗中作用机理的新认识

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摘要

Dimethyl fumarate (DMF) is an effective treatment option for relapsing–remitting multiple sclerosis (MS), but its therapeutic mechanism of action has not been fully elucidated. A better understanding of its mechanism will allow for the development of assays to monitor its clinical efficacy and safety in patients, as well as guide the development of the next generation of therapies for MS. In order to build the foundation for determining its mechanism, we reviewed the manner in which DMF alters lymphocyte subsets in MS patients, its impact on clinical efficacy and safety, as well as its molecular effects in cellular and animal models. DMF decreases absolute lymphocyte counts, but does not affect all subsets uniformly. CD8+ T-cells are the most profoundly affected, but reduction also occurs in the CD4+ population, particularly within the pro-inflammatory T-helper Th1 and Th17 subsets, creating a bias toward more anti-inflammatory Th2 and regulatory subsets. Similarly, B-lymphocyte, myeloid, and natural killer populations are also shifted toward a more anti-inflammatory state. In vitro and animal models demonstrate a role for DMF within the central nervous system (CNS) in promoting neuronal survival in an Nrf2 pathway-dependent manner. However, the impact of DMF directly within the CNS of MS patients remains largely unknown.
机译:富马酸二甲酯(DMF)是复发缓解型多发性硬化症(MS)的有效治疗选择,但其作用机理尚未完全阐明。对其机制的更好理解将有助于检测方法的开发,以监测其在患者中的临床疗效和安全性,并指导下一代MS治疗方法的开发。为了建立确定其机制的基础,我们回顾了DMF改变MS患者淋巴细胞亚群的方式,其对临床疗效和安全性的影响以及其在细胞和动物模型中的分子作用。 DMF会减少绝对淋巴细胞计数,但不会统一影响所有子集。 CD8 + T细胞受到的影响最深,但减少也会在CD4 + 人群中发生,尤其是在促炎性T辅助Th1和Th17亚型中,倾向于更多的抗炎Th2和调节子集。同样,B淋巴细胞,髓样和自然杀手群体也朝着更抗发炎的状态转变。体外和动物模型证明DMF在中枢神经系统(CNS)中以Nrf2途径依赖性方式促进神经元存活。然而,DMF直接在MS患者中枢神经系统内的影响仍然未知。

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