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抑制宿主 Ogr1 通过调节酸性微环境增强效应 CD8(+) T 细胞功能

英文原题:Inhibition of host Ogr1 enhances effector CD8(+) T-cell function by modulating acidic microenvironment.

查看英文原题

Inhibition of host Ogr1 enhances effector CD8(+) T-cell function by modulating acidic microenvironment.

PubMed 2021/06/22(内容时间) Cancer Gene Ther Q1 · IF 6.4(JCR 2025)

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中文摘要

癌症免疫疗法,如免疫检查点阻断或过继性T细胞转移,可以带来持久的临床反应。但由于许多肿瘤已经进化出复杂的策略来逃避免疫监视,治疗缓解率仍然很低。实体瘤的特点是高度酸性的微环境,这可能会削弱抗肿瘤免疫的有效性。在这里,我们探索了一种通过pH调控来避免免疫逃逸的有前景的治疗开发策略。黑色素瘤的高度酸化微环境诱导T细胞中G蛋白偶联受体(Ogr1)的表达,从而削弱其有效功能并促进肿瘤生长。抑制Ogr1可重新激活CD8+ T细胞,并通过降低高糖酵解活性发挥细胞毒性作用,导致肿瘤微环境酸化程度相对降低,从而抑制肿瘤。此外,过继转移Ogr1-/-CD8+ T细胞增强了抗肿瘤反应,具有立即临床转化的潜力。

展开英文摘要原文

Immunotherapies for cancer, such as immune checkpoint blockade or adoptive T-cell transfer, can lead to a long-lasting clinical response.

But the therapeutic response rate remains low on account of many tumors that have evolved sophisticated strategies to evade immune surveillance. Solid tumors are characterized by the highly acidic microenvironment, which may weaken the effectiveness of antitumor immunity.

Here, we explored a promising therapeutic development deployed by pH manipulation for avoiding immunoevasion. The highly acidified microenvironment of melanoma induces the expression of G-protein-coupled receptor (Ogr1) in T cells, which weakened their effective function and promote tumor growth. Ogr1 inhibition reactivate CD8 + T cells and have a cytotoxic role by reducing the activity of high glycolysis, resulting in comparatively low acidification of the tumor microenvironment, and leads to tumor suppression.

In addition, the adoptive transfer of Ogr1 -/- -CD8 + T cells enhanced the antitumor responses, with the potential for immediate clinical transformation.

论文信息

作者
Cao L、Li W、Yang X、Zhang W、Li M、Zhang H、Qin C、Chen X
第一作者单位
Department of Otolaryngology-Head and Neck Surgery, Beijing Tongren Hospital, Capital Medical University, Beijing, China.China
通讯作者单位
NHC Key Laboratory of Human Disease Comparative Medicine, Beijing Engineering Research Center for Experimental Animal Models of Human Critical Diseases, Institute of Laboratory Animal Sciences, Chinese Academy of Medical Sciences (CAMS) and Comparative Medicine Center, Peking Union Medical College (PUMC), Beijing, China. gaoran@cnilas.org.China
文献类型
非美国政府资助研究
期刊
Cancer gene therapy2021 Nov
原文标识
PubMed 34158625 · DOI 10.1038/s41417-021-00354-0