Darwiche Rima, Chong Mark M W, Santamaria Pere, Thomas Helen E, Kay Thomas W H
St. Vincent's Institute of Medical Research, Fitzroy, Australia, Walter and Eliza Hall Institute of Medical Research, Parkville, Australia.
J Immunol. 2003 Jun 15;170(12):6292-7. doi: 10.4049/jimmunol.170.12.6292.
Fas (CD95) is a potential mechanism of pancreatic beta cell death in type 1 diabetes. beta cells do not constitutively express Fas but it is induced by cytokines. The hypothesis of this study is that Fas expression should be measurable on beta cells for them to be killed by this mechanism. We have previously reported that up to 5% of beta cells isolated from nonobese diabetic (NOD) mice are positive for Fas expression by flow cytometry using autofluorescence to identify beta cells. We have now found that these are not beta cells but contaminating dendritic cells, macrophages, and B lymphocytes. In contrast beta cells isolated from NODscid mice that are recipients of T lymphocytes from diabetic NOD mice express Fas 18-25 days after adoptive transfer but before development of diabetes. Fas expression on beta cells was also observed in BDC2.5, 8.3, and 4.1 TCR-transgenic models of diabetes in which diabetes occurs more rapidly than in unmodified NOD mice. In conclusion, Fas is observed on beta cells in models of diabetes in which rapid beta cell destruction occurs. Its expression is likely to reflect differences in the intraislet cytokine environment compared with the spontaneous model and may indicate a role for this pathway in beta cell destruction in rapidly progressive models.
Fas(CD95)是1型糖尿病中胰腺β细胞死亡的一种潜在机制。β细胞并非组成性表达Fas,但可被细胞因子诱导表达。本研究的假设是,若β细胞要通过该机制被杀死,其Fas表达应可被检测到。我们之前报道过,使用自发荧光来识别β细胞,通过流式细胞术检测发现,从非肥胖糖尿病(NOD)小鼠分离的β细胞中,高达5%的细胞Fas表达呈阳性。我们现在发现,这些并非β细胞,而是污染的树突状细胞、巨噬细胞和B淋巴细胞。相比之下,从接受糖尿病NOD小鼠T淋巴细胞的NODscid小鼠分离的β细胞,在过继转移后18 - 25天且在糖尿病发生之前表达Fas。在BDC2.5、8.3和4.1 TCR转基因糖尿病模型中也观察到β细胞上的Fas表达,在这些模型中糖尿病的发生比未修饰的NOD小鼠更快。总之,在快速发生β细胞破坏的糖尿病模型中,可观察到β细胞上的Fas表达。与自发模型相比,其表达可能反映了胰岛内细胞因子环境的差异,并且可能表明该途径在快速进展模型的β细胞破坏中起作用。