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Pro-inflammatory cytokines induce cell death, inflammatory responses, and endoplasmic reticulum stress in human iPSC-derived beta cells

机译:促炎细胞因子诱导人IPSC衍生的β细胞中的细胞死亡,炎症反应和内质子ressulum应激

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BACKGROUND:Adult human pancreatic beta cells are the "gold standard" for studies on diabetes pathogenesis, but their use is limited by insufficient availability and variable quality. An important effort has recently taken place to differentiate beta cells from human induced pluripotent stem cells (iPSCs) and validate their use for diabetes research. We presently used a 7-stage protocol to generate beta cells from human iPSC and evaluated whether these cells are responsive to the pro-inflammatory cytokines (IFNγ, IL-1β, or IFNα) that play a role in type 1 diabetes.METHODS:The iPSC-derived islet-like cell clusters contained 40-50% beta and 10-15% alpha cells and expressed the receptors for IFNγ, IL-1β, or IFNα. Cells were exposed to either IFNγ (1000?U/mL)?+?IL-1β (50?U/mL) or IFNα alone (2000?U/mL) for 24/48?h. Apoptosis was quantified using Hoechst/propidium iodide staining or the RealTime Glo Apoptosis Kit (Promega). After treatment, CXCL10 secretion was quantified by ELISA. The expression of multiples genes (Ins, Gcg, Nkx2.2, Nkx6.1, Pdx1, Mafa, BiP, Chop, Atf3, CXCL10, CXCL9, CCL5, and HLA-ABC) was quantified by RT-qPCR. Phosphorylation state and total expression of STAT1/STAT2, as well as expression of PDL1 and of the ER chaperone BiP, were quantified by Western blotting. The co-localization of HLA-ABC or cleaved caspase-3 and Ins/Gcg expression was assessed by immunohistochemistry. The presence of HLA-ABC at the plasma membrane was measured by flow cytometry.RESULTS:IFNγ + IL-1β and IFNα induced apoptosis of the cells after 48?h of exposure. Cleaved caspase-3 co-localized mostly but not exclusively with Ins+ cells. Exposure to IFNγ + IL-1β induced a pro-inflammatory phenotype, including increased CXCL10, CXCL9, and CCL5 expression; CXCL10 secretion; and HLA-ABC expression. HLA overexpression was confirmed at the protein level by Western blotting and flow cytometry. Exposure to IFNγ + IL-1β (but not IFNα) also induced beta cell dedifferentiation and endoplasmic reticulum stress (increase in BiP, Chop, and Atf3 mRNA expression). Phosphorylation of STAT1 was stimulated already after 1?h by IFNγ + IL-1β and IFNα, while phosphorylation of STAT2 was only activated by IFNα at 1-4 h. PDL1 expression was increased by both IFNγ + IL-1β and IFNα.CONCLUSIONS:Our data show that human iPSC-derived beta cells respond to pro-inflammatory cytokines IL-1β + IFNγ and IFNα, by activating the same pathogenic processes as adult human primary beta cells. These cells thus represent a valuable tool for future research on the pathogenesis of type 1 diabetes.
机译:背景:成人人类胰腺β细胞是关于糖尿病发病机制的研究的“金标准”,但它们的使用受到可用性和可变质量不足的限制。最近发生了对来自人诱导的多能干细胞(IPSC)的β细胞进行分化的重要努力,并验证其用于糖尿病研究的用途。我们目前使用了7-阶段方案来生成来自人IPSC的β细胞,并评估这些细胞是否响应于在1型糖尿病中发挥作用的促炎细胞因子(IFNγ,IL-1β或IFNα)。方法: IPSC衍生的胰岛样细胞簇含有40-50%的β和10-15%α细胞,并表达IFNγ,IL-1β或IFNα的受体。将细胞暴露于IFNγ(1000→U / mL)+ +→IL-1β(50×U / mL)或IFNα(2000〜U / ml),持续24/48Ω。使用Hoechst /碘化钛染色或实时Glo凋亡试剂盒(Promega)量化细胞凋亡。治疗后,通过ELISA量化CXCL10分泌。通过RT-QPCR量化倍数基因(INS,GCG,NKX2.2,NKX6.1,PDX1,MAFA,BIP,CHOP,ATF3,CCL5和HLA-ABC)。通过蛋白质印迹量化磷酸化状态和STAT1 / Stat2的总表达以及PDL1和ER伴侣BIP的表达。通过免疫组织化学评估HLA-ABC或Celeaved Caspase-3和INS / GCG表达的共定位。通过流式细胞术测量血浆膜的HLA-ABC的存在。结果:IFNγ+ IL-1β和IFNα诱导细胞的凋亡后48°暴露后细胞凋亡。切割的caspase-3主要是单独的,而不是用INS +细胞分立。暴露于IFNγ+ IL-1β诱导促炎表型,包括增加CXCL10,CXCL9和CCL5表达; CXCL10分泌;和hla-abc表达。通过Western印迹和流式细胞术在蛋白质水平确认HLA过表达。暴露于IFNγ+ IL-1β(但不是IFNα)也诱导β细胞分化和内质网胁迫(弯曲,CHOP和ATF3 mRNA表达的增加)。通过IFNγ+ IL-1β和IFNα在1〜H之后已经刺激了STAT1的磷酸化,而DET2的磷酸化仅在1-4小时的IFNα上被激活。 IFNγ+ IL-1β和IFNα均增加PDL1表达:结论:我们的数据显示人IPSC衍生的β细胞通过激活与成人人原代的致病方法相同的致病方法响应促炎细胞因子IL-1β+IFNγ和IFNα β细胞。因此,这些细胞代表了未来对1型糖尿病发病机制的研究的有价值的工具。

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