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From immunobiology to beta-cell biology The changing perspective on type 1 diabetes

机译:从免疫生物学到β细胞生物学1型糖尿病的变化视角

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摘要

Type 1 Diabetes (T1D) is characterized by the immune mediated destruction of beta cells. Clinical studies have focused on drug therapies to modulate autoimmunity, yet none of these interventions has resulted in durable preservation of beta-cell function. These findings raise the possibility that initiating or propagating events outside of the immune system should be considered in future efforts to prevent or reverse T1D. An emerging concept suggests that defects inherent to the beta cell may trigger autoimmunity. A study by Engin et al. in type 1 diabetic NOD mice suggests that excessive beta-cell endoplasmic reticulum stress arising from environmental insults results in abnormal protein synthesis, folding, and/or processing. Administration of the chemical protein folding chaperone TUDCA resulted in recovery of beta-cell endoplasmic reticulum function and a diminished incidence of diabetes in NOD mice. We propose here that these data and others support a model whereby an inadequate or defective beta-cell endoplasmic reticulum response results in the release of beta-cell antigens and neoantigens that initiate autoimmunity. Pharmacologic therapies that either mitigate these early beta-cell stressors or enhance the ability of beta cells to cope with such stressors may prove to be effective in the prevention or treatment of T1D.
机译:1型糖尿病(T1D)的特征是免疫介导的β细胞破坏。临床研究集中于调节自身免疫的药物疗法,但是这些干预措施均未导致持久保存β细胞功能。这些发现增加了在预防或逆转T1D的未来努力中应考虑免疫系统之外的引发或传播事件的可能性。一个新兴的概念表明,β细胞固有的缺陷可能触发自身免疫。 Engin等人的研究。 1型糖尿病NOD小鼠的研究表明,环境侵害引起的过度β细胞内质网应激会导致蛋白质合成,折叠和/或加工异常。化学蛋白质折叠伴侣TUDCA的使用导致了NOD小鼠中β细胞内质网功能的恢复和糖尿病的发病率降低。我们在这里建议这些数据和其他数据支持一种模型,其中不充分或有缺陷的β细胞内质网反应会导致释放β细胞抗原和新抗原,从而引发自身免疫。减轻这些早期β细胞应激源或增强β细胞应对此类应激源的药理疗法可能已证明可有效预防或治疗T1D。

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