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牛磺酸通过刺激α细胞转分化来挽救胰岛β细胞应激。

Taurine rescues pancreatic β-cell stress by stimulating α-cell transdifferentiation.

机构信息

School of Biomedical Sciences, Ulster University, Coleraine, UK.

Oxford Centre for Diabetes, Endocrinology and Metabolism, University of Oxford, Churchill Hospital, Oxford, UK.

出版信息

Biofactors. 2023 May-Jun;49(3):646-662. doi: 10.1002/biof.1938. Epub 2023 Jan 30.

Abstract

The semi-essential ubiquitous amino acid taurine has been shown to alleviate obesity and hyperglycemia in humans; however, the pathways underlying the antidiabetic actions have not been characterized. We explored the effect of chronic taurine exposure on cell biology of pancreatic islets, in degenerative type 1-like diabetes. The latter was modeled by small dose of streptozotocin (STZ) injection for 5 days in mice, followed by a 10-day administration of taurine (2% w/v, orally) in the drinking water. Taurine treatment opposed the detrimental changes in islet morphology and β-/α-cell ratio, induced by STZ diabetes, coincidentally with a significant 3.9 ± 0.7-fold enhancement of proliferation and 40 ± 5% reduction of apoptosis in β-cells. In line with these findings, the treatment counteracted an upregulation of antioxidant (Sod1, Sod2, Cat, Gpx1) and downregulation of islet expansion (Ngn3, Itgb1) genes induced by STZ, in a pancreatic β-cell line. At the same time, taurine enhanced the transdifferentiation of α-cells into β-cells by 2.3 ± 0.8-fold, echoed in strong non-metabolic elevation of cytosolic Ca levels in pancreatic α-cells. Our data suggest a bimodal effect of dietary taurine on islet β-cell biology, which combines the augmentation of α-/β-cell transdifferentiation with downregulation of apoptosis. The dualism of action, stemming presumably from the intra- and extracellular modality of the signal, is likely to explain the antidiabetic potential of taurine supplementation.

摘要

已证实半必需的普遍存在的氨基酸牛磺酸可减轻人类肥胖和高血糖;然而,其抗糖尿病作用的途径尚未确定。我们研究了牛磺酸暴露对退行性 1 型样糖尿病胰岛细胞生物学的影响。后者通过在小鼠中连续 5 天小剂量链脲佐菌素(STZ)注射建模,随后在饮用水中给予牛磺酸(2%w/v,口服)10 天。牛磺酸治疗与 STZ 糖尿病诱导的胰岛形态和β-/α-细胞比例的有害变化相反,巧合的是β-细胞增殖显著增强 3.9±0.7 倍,凋亡减少 40±5%。与这些发现一致,该治疗可逆转 STZ 在胰岛β细胞系中诱导的抗氧化(Sod1、Sod2、Cat、Gpx1)和胰岛扩张(Ngn3、Itgb1)基因的上调,同时增强α-细胞向β-细胞的转分化2.3±0.8 倍,反映在胰腺α-细胞中胞质 Ca 水平的非代谢性升高。我们的数据表明,膳食牛磺酸对胰岛β细胞生物学具有双重作用,它结合了α-/β-细胞转分化的增强和凋亡的下调。这种作用的二元性,可能源自信号的细胞内和细胞外模式,很可能解释了牛磺酸补充的抗糖尿病潜力。

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