γδ T 细胞调节小细胞肺癌中的抗肿瘤免疫
γδ T cells modulate anti-tumor immunity in small cell lung cancer.
我们的发现表明,活化的γδ T细胞可能是SCLC治疗的有价值靶点。
英文原题:Improved MAIT cell functions following fecal microbiota transplantation for metastatic renal cell carcinoma.
FMT 改善了 MAIT 细胞功能,这应有助于患者在癌症引起的免疫抑制情况下,更好地应对后续的微生物挑战。
利用粪菌移植(FMT)改变癌症患者肠道微生物组的策略作为治疗干预已获得发展势头。然而,FMT如何影响先天样、抗菌T淋巴细胞尚不清楚。在本研究中,我们评估了转移性肾细胞癌(mRCC)患者在接受FMT作为临床试验一部分之前和之后七天外周血(PB)黏膜相关恒定T(MAIT)细胞的频率和功能。我们发现健康对照和mRCC患者的MAIT细胞频率相当。相比之下,γδ T细胞在mRCC中表现出数量下降,而FMT部分逆转了这一现象。我们还发现,无论是否接受FMT,mRCC患者PB CD4+ MAIT细胞区室均显著增加。配对样本分析显示,FMT后MAIT细胞上CD69上调,同时PD-1水平降低。这些变化是MAIT细胞所特有的,因为非MAIT T淋巴细胞要么没有趋势,要么呈现相反方向的趋势。重要的是,FMT并未使MAIT细胞耗竭,这也可从其TIM-3、LAG-3、BTLA、CTLA-4、TIGIT和VISTA的稳定表达判断。这些发现在对MAIT细胞用MR1配体或IL-12和IL-18组合刺激以产生炎性细胞因子和颗粒酶B的功能测定中得到了证实。事实上,当用IL-12和IL-18进行离体刺激时,MAIT细胞在FMT后产生了更强烈的TNF-α反应。总之,FMT改善了MAIT细胞功能,这应有助于患者在面对癌症引起的免疫抑制时应对后续的微生物挑战。试验注册:https://clinicaltrials.gov/ 标识符:NCT04163289(注册日期:2019年11月14日)。
Strategies to modify the gut microbiome in cancer patients using fecal microbiota transplantation (FMT) have gained momentum as a therapeutic intervention. However, how FMT impacts innate-like, antimicrobial T lymphocytes is unclear. In this study, we assessed peripheral blood (PB) mucosa-associated invariant T (MAIT) cell frequencies and functions in patients with metastatic renal cell carcinoma (mRCC) before and seven days after they received FMT as part of a clinical trial. We found comparable MAIT cell frequencies in healthy controls and mRCC patients. In contrast, γδ T cells exhibited a numerical decline in mRCC, which was partially reversed by FMT. We also found a significant increase in the PB CD4 + MAIT cell compartment of mRCC patients with or without FMT. Paired sample analyses revealed CD69 upregulation on MAIT cells accompanied by decreased PD-1 levels post-FMT. These changes were unique to MAIT cells as non-MAIT T lymphocytes showed either no trend or a trend in the opposite direction. Importantly, FMT did not render MAIT cells exhausted as also judged by their stable expression of TIM-3, LAG-3, BTLA, CTLA-4, TIGIT and VISTA. These findings were corroborated in functional assays in which MAIT cells were stimulated with MR1 ligands or with a combination of IL-12 and IL-18 to produce inflammatory cytokines and granzyme B. Indeed, when stimulated ex vivo with IL-12 and IL-18, MAIT cells mounted a more rigorous TNF-α response post-FMT. In conclusion, FMT improves MAIT cell functions, which should serve patients well in subsequent microbial challenges in the face of cancer-elicited immunosuppression. Trial Registration: https://clinicaltrials.gov/ Identifier: NCT04163289 (registration date: November 14, 2019).
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