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首页> 外文期刊>Cytokine >Involvement of soluble Fas Ligand in germ cell apoptosis in testis of rats undergoing autoimmune orchitis
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Involvement of soluble Fas Ligand in germ cell apoptosis in testis of rats undergoing autoimmune orchitis

机译:可溶性Fas配体参与自身免疫性睾丸炎大鼠睾丸生殖细胞凋亡的作用

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摘要

Experimental autoimmune orchitis (EAO) is a model of chronic inflammation and infertility useful for studying immune and germ cell (GC) interactions. EAO is characterized by severe damage of seminiferous tubules (STs) with GCs that undergo apoptosis and sloughing. Based on previous results showing that Fas-Fas Ligand (L) system is one of the main mediators of apoptosis in EAO, in the present work we studied the involvement of Fas and the soluble form of FasL (sFasL) in GC death induction. EAO was induced in rats by immunization with testis homogenate and adjuvants; control (C) rats were injected with adjuvants; a group of non-immunized normal (N) rats was also studied. Activation of Fas employing an anti-Fas antibody decreased viability (trypan blue exclusion test) and induced apoptosis (TUNEL) of GCs from STs of N and EAO rats, an effect more pronounced on GCs from EAO STs. By Western blot we detected an increase in sFasL content in the testicular fluid of rats with severe EAO compared to N and C rats. By intratesticular injection of FasL conjugated to Strep- Tag molecule (FasL- Strep, BioTAGnology) and its immunofluorescent localization, we demonstrated that sFasL is able to enter the adluminal compartment of the STs. Moreover, FasL- Strep induced GC apoptosis in testicular fragments of N rats. By flow cytometry, we detected an increase in the number of membrane FasL-expressing CD4+ and CD8+ T cells in testis during EAO development but no expression of FasL by macrophages. Our results demonstrate that sFasL is locally produced in the chronically inflamed testis and that this molecule is able to enter the adluminal compartment of STs and induce apoptosis of Fas-bearing GCs.
机译:实验性自身免疫性睾丸炎(EAO)是慢性炎症和不育症的模型,可用于研究免疫和生殖细胞(GC)的相互作用。 EAO的特征是生精小管(STs)受到发生凋亡和脱落的GC的严重破坏。根据先前的结果显示Fas-Fas配体(L)系统是EAO凋亡的主要介质之一,在本工作中,我们研究了Fas和FasL的可溶性形式(sFasL)参与GC死亡诱导。用睾丸匀浆和佐剂免疫诱导大鼠产生EAO。对照(C)大鼠注射佐剂;还研究了一组未免疫的正常(N)大鼠。使用抗Fas抗体激活Fas会降低活力(锥虫蓝排除试验)并诱导N和EAO大鼠ST的GC凋亡(TUNEL),对EAO ST的GC的作用更为明显。通过蛋白质印迹,我们发现与N和C大鼠相比,患有严重EAO的大鼠睾丸液中sFasL含量增加。通过睾丸内注射偶联至Strep-Tag分子的FasL(FasL-Strep,BioTAGnology)及其免疫荧光定位,我们证明了sFasL能够进入STs的腔室。此外,FasL-链球菌诱导了N只大鼠睾丸片段的GC凋亡。通过流式细胞仪,我们检测到在EAO发育过程中睾丸中表达FasL的CD4 +和CD8 + T细胞膜数量增加,但巨噬细胞未表达FasL。我们的结果表明,sFasL在慢性发炎的睾丸中局部产生,并且该分子能够进入ST的腔室并诱导带有Fas的GC的凋亡。

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