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γ干扰素在体外可诱导小胶质细胞凋亡并增强其Fas和Fas配体的表达。

Interferon-gamma induces apoptosis and augments the expression of Fas and Fas ligand by microglia in vitro.

作者信息

Badie B, Schartner J, Vorpahl J, Preston K

机构信息

Neuro-oncology Laboratory, School of Medicine, Madison, Wisconsin 53792, USA.

出版信息

Exp Neurol. 2000 Apr;162(2):290-6. doi: 10.1006/exnr.1999.7345.

Abstract

Activation of microglia by interferon-gamma (IFN-gamma) has been implicated in a number of central nervous system (CNS) inflammatory disease processes. Because IFN-gamma has also been shown to play a role in programmed cell death, we investigated its cytotoxicity and its effect on the Fas apoptotic pathway in microglia. Flow cytometry was used to quantify the IFN-gamma-mediated apoptotic response and Fas and Fas ligand (FasL) expression in two well-characterized murine microglia cell lines (BV-2 and N9). Nuclear fragmentation, suggestive of apoptosis, was noted within 24 h of incubation of microglia with IFN-gamma (10 U/ml). After a 72-h incubation, almost every BV-2 and N9 microglia, but not GL261 glioma cells, underwent cell death and detached from the culture plates. This cytotoxicity occurred even at low IFN-gamma concentrations (1 U/ml) and was inhibited by BAF, a pan-caspase inhibitor. Incubation of BV-2 and N9 microglia, but not GL261 glioma cells, with IFN-gamma also potentiated the expression of Fas and FasL in a similar dose-response and time-course manner, as seen for the apoptotic response. Whereas Fas expression increased by 100% in both microglia cells, FasL upregulation was more pronounced and increased by as much as 200% in the N9 cells. These findings suggest that in addition to its role as a microglia activator, IFN-gamma may also induce apoptosis of microglia, possibly through simultaneous upregulation of Fas and FasL. Interferon-gamma modulation of the Fas pathway and apoptosis in microglia may be important in the pathogenesis of inflammatory CNS disease processes.

摘要

γ干扰素(IFN-γ)激活小胶质细胞与多种中枢神经系统(CNS)炎症性疾病进程有关。由于IFN-γ也已被证明在程序性细胞死亡中起作用,我们研究了其细胞毒性及其对小胶质细胞中Fas凋亡途径的影响。采用流式细胞术对两种特征明确的小鼠小胶质细胞系(BV-2和N9)中IFN-γ介导的凋亡反应以及Fas和Fas配体(FasL)的表达进行定量。在小胶质细胞与IFN-γ(10 U/ml)孵育24小时内,观察到提示凋亡的核碎裂。孵育72小时后,几乎每个BV-2和N9小胶质细胞,但不包括GL261胶质瘤细胞,都发生细胞死亡并从培养板上脱落。这种细胞毒性即使在低IFN-γ浓度(1 U/ml)下也会发生,并被泛半胱天冬酶抑制剂BAF抑制。用IFN-γ孵育BV-2和N9小胶质细胞,但不包括GL261胶质瘤细胞,也以类似的剂量反应和时间进程方式增强了Fas和FasL的表达,这与凋亡反应情况相同。虽然两种小胶质细胞中Fas表达均增加了100%,但FasL上调更为明显,在N9细胞中增加了多达200%。这些发现表明,IFN-γ除了作为小胶质细胞激活剂外,还可能通过同时上调Fas和FasL诱导小胶质细胞凋亡。IFN-γ对小胶质细胞中Fas途径和凋亡的调节在炎症性CNS疾病进程的发病机制中可能很重要。

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