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烟酰胺腺嘌呤二核苷酸磷酸氧化酶依赖性活性氧通过小鼠胰腺内分泌祖细胞的分化刺激β细胞再生。

NADPH Oxidase-Dependent Reactive Oxygen Species Stimulate β-Cell Regeneration Through Differentiation of Endocrine Progenitors in Murine Pancreas.

作者信息

Liang Juan, Wu Shang Ying, Zhang Dan, Wang Lin, Leung Kwan Keung, Leung Po Sing

机构信息

School of Biomedical Sciences, Faculty of Medicine, The Chinese University of Hong Kong , Hong Kong, China .

出版信息

Antioxid Redox Signal. 2016 Mar 10;24(8):419-33. doi: 10.1089/ars.2014.6135. Epub 2015 Dec 18.

Abstract

AIMS

Reactive oxygen species (ROS) act as second messengers for redox modification of transcription factors essential for differentiation. The nicotinamide adenine dinucleotide phosphate (NADPH) oxidase, a major source of ROS, has been shown to regulate differentiation of various progenitor cells, while its role in pancreatic endocrine cell differentiation is unclear. This study was aimed at this knowledge gap.

RESULTS

Our results showed that ROS levels were dynamically changed during pancreas development concomitant with endocrine cell differentiation induced by modest exogenous ROS in rudiment cultures. NOX4, but not NOX2, the member of NADPH oxidase, was expressed persistently in endocrine lineage and showed high activity in critical pancreas development phase. Inhibition of NADPH oxidase activity impeded the differentiation of endocrine progenitors in vitro, and exogenous ROS reversed this effect. Studies performed in streptozotocin (STZ)-injected neonatal rats showed that diphenyleneiodonium (DPI) obstructed β-cell regeneration through the suppression of neurogenin 3 (NGN3) expression, but not Ki67-labeling β-cells, indicating that ROS stimulation promoted differentiation beyond proliferation of β-cells. Inhibition of NADPH oxidase also reduced expression of SRY (sex-determining region Y)-box 9 (SOX9), a transcriptional regulator of Ngn3, in endocrine precursor cells, both in vivo and in vitro. Overexpression of SOX9 attenuated the reduction of NGN3 induced by suppression of NADPH oxidase.

INNOVATION AND CONCLUSION

This is the first study to demonstrate NADPH oxidase, especially NOX4-dependent ROS that promotes pancreatic progenitor cell differentiation into endocrine cells both in vitro and in vivo, probably through the regulation of SOX9. We provide evidence that NADPH oxidase-dependent ROS-mediated signaling is necessary for endocrine cell differentiation, which provides a potential strategy for efficient generation of insulin-producing cells in clinical application.

摘要

目的

活性氧(ROS)作为转录因子氧化还原修饰的第二信使,对细胞分化至关重要。烟酰胺腺嘌呤二核苷酸磷酸(NADPH)氧化酶是ROS的主要来源,已被证明可调节各种祖细胞的分化,但其在胰腺内分泌细胞分化中的作用尚不清楚。本研究旨在填补这一知识空白。

结果

我们的结果表明,在胰腺发育过程中,ROS水平随基础培养中外源ROS诱导的内分泌细胞分化而动态变化。NADPH氧化酶成员NOX4而非NOX2在内分泌谱系中持续表达,并在胰腺发育关键阶段表现出高活性。抑制NADPH氧化酶活性会阻碍体外内分泌祖细胞的分化,而外源性ROS可逆转这种作用。在注射链脲佐菌素(STZ)的新生大鼠中进行的研究表明,二苯碘鎓(DPI)通过抑制神经生成素3(NGN3)的表达阻碍β细胞再生,但不影响Ki67标记的β细胞,这表明ROS刺激促进了β细胞的分化而非增殖。抑制NADPH氧化酶还会降低体内和体外内分泌前体细胞中SRY(性别决定区Y)-盒9(SOX9)的表达,SOX9是Ngn3的转录调节因子。SOX9的过表达减弱了NADPH氧化酶抑制诱导的NGN3减少。

创新与结论

这是第一项证明NADPH氧化酶,特别是依赖NOX4的ROS在体外和体内促进胰腺祖细胞分化为内分泌细胞的研究,可能是通过调节SOX9实现的。我们提供的证据表明,NADPH氧化酶依赖性ROS介导的信号传导是内分泌细胞分化所必需的,这为临床应用中高效生成胰岛素产生细胞提供了一种潜在策略。

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