首页> 外文期刊>Journal of investigative surgery: The official journal of the Academy of Surgical Research >Triptolide-conditioned dendritic cells induce allospecific t-cell regulation and prolong renal graft survival
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Triptolide-conditioned dendritic cells induce allospecific t-cell regulation and prolong renal graft survival

机译:雷公藤内酯醇调节的树突状细胞诱导同种异体t细胞调节并延长肾移植物存活

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Background: Previous studies show that triptolide (TPT), a diterpenoid isolated from the Chinese herb Tripterygium wilfordii Hook.f, inhibits dendritic cell (DCs) maturation. Whether TPT-conditioned DCs (TPT-DCs) may regulate allospecific immune responses remains unclear. In this study, we investigated the effects of TPT on allostimulatory function and phenotype of rat bone marrow-derived DCs (BMDCs). Methods: Brown Norway rats BMDCs were cultured with or without TPT and then stimulated with lipopolysaccharide (LPS). IL-10 in supernatants was quantitatively measured, and the cells were analyzed by flow cytometry and used as stimulators in mixed leukocyte reaction in which naive Lewis rat T lymphocytes were used as responders. The tolerogenic potential of TPT-BMDCs was evaluated in vivo in a rat model of MHC fully mismatched kidney transplantation. Results: After treatment with TPT, BMDCs remained immature with low expression of CD80 and CD86 in the presence of LPS. At low concentrations of TPT (1 and 2.5 nM), BMDCs produced higher levels of IL-10 than the untreated cells (431 and 205.4 pg/ml, respectively, vs. 122.9 pg/ml, p < .05). T cells cocultured with TPT-BMDCs were hyporesponsive in allogeneic mixed lymphocyte reaction. The CD25+foxp3+Treg cell populations increased from 19.9% to 29.7% in the coculture system. Without immunosuppressive therapy, infusion of TPT-BMDCs in recipients before transplantation prolonged rat kidney allograft survival (18.8 ± 1.30 days). Conclusions: Our findings demonstrate that TPT inhibits the maturation and allogenicity of BMDCs and promotes the expansion of CD25+foxp3+ regulatory T cells. It suggests that TPT-DCs are potentially useful for preventing kidney transplant rejection.
机译:背景:先前的研究表明,雷公藤甲素(TPT)是一种从中草药雷公藤(Tutterygium wilfordii Hook.f)中分离出的二萜类化合物,可抑制树突状细胞(DC)的成熟。 TPT条件的DC(TPT-DC)是否可以调节同种异体免疫反应尚不清楚。在这项研究中,我们调查了TPT对大鼠骨髓来源的DC(BMDC)的同种刺激功能和表型的影响。方法:在有或没有TPT的条件下培养棕色挪威大鼠BMDC,然后用脂多糖(LPS)刺激。定量测量上清液中的IL-10,并通过流式细胞术分析细胞,并在其中混合的白血球反应中使用刺激性的刺激剂中,其中混合的白血球反应使用幼稚的Lewis大鼠T淋巴细胞。在MHC完全不匹配肾脏移植的大鼠模型中,体内评估了TPT-BMDC的致耐受力。结果:TPT治疗后,LPS存在时,BMDC仍不成熟,CD80和CD86的表达低。在低浓度的TPT(1和2.5 nM)下,BMDC产生的IL-10水平高于未处理的细胞(分别为431和205.4 pg / ml,而122.9 pg / ml,p <.05)。与TPT-BMDCs共培养的T细胞在同种异体混合淋巴细胞反应中反应低下。在共培养系统中,CD25 + foxp3 + Treg细胞数量从19.9%增加到29.7%。如果没有免疫抑制疗法,则在移植前向接受者体内注入TPT-BMDC可以延长大鼠肾脏同种异体移植的存活时间(18.8±1.30天)。结论:我们的发现表明TPT抑制BMDC的成熟和同种异体,并促进CD25 + foxp3 +调节性T细胞的扩增。这表明TPT-DCs可能对预防肾移植排斥反应有用。

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