CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:PHGDH-mediated endothelial metabolism drives glioblastoma resistance to chimeric antigen receptor T cell immunotherapy.
PHGDH-mediated endothelial metabolism drives glioblastoma resistance to chimeric antigen receptor T cell immunotherapy.
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免疫疗法的疗效受限于通过异常肿瘤血管输送并浸润肿瘤的T细胞数量不足。本文报告,磷酸甘油酸脱氢酶(PHGDH)介导的内皮细胞(EC)代谢可促成缺氧且免疫不利的血管微环境,进而驱动胶质母细胞瘤(GBM)对嵌合抗原受体(CAR)T细胞免疫疗法耐药。对人和小鼠GBM肿瘤的代谢组和转录组分析发现,肿瘤EC中的PHGDH表达和丝氨酸代谢优先发生改变。肿瘤微环境信号诱导EC中ATF4介导的PHGDH表达,触发氧化还原依赖机制调节内皮糖酵解并导致EC过度生长。遗传性敲除EC中的PHGDH可修剪过度萌芽的血管、消除肿瘤内缺氧并改善T细胞肿瘤浸润。抑制PHGDH可激活抗肿瘤T细胞免疫并使GBM对CAR-T 疗法敏感。因此,靶向PHGDH以重编程内皮代谢,可能为改善T细胞免疫疗法提供独特机会。
The efficacy of immunotherapy is limited by the paucity of T cells delivered and infiltrated into the tumors through aberrant tumor vasculature.
Here, we report that phosphoglycerate dehydrogenase (PHGDH)-mediated endothelial cell (EC) metabolism fuels the formation of a hypoxic and immune-hostile vascular microenvironment, driving glioblastoma (GBM) resistance to chimeric antigen receptor (CAR)-T cell immunotherapy.
Our metabolome and transcriptome analyses of human and mouse GBM tumors identify that PHGDH expression and serine metabolism are preferentially altered in tumor ECs. Tumor microenvironmental cues induce ATF4-mediated PHGDH expression in ECs, triggering a redox-dependent mechanism that regulates endothelial glycolysis and leads to EC overgrowth.
Genetic PHGDH ablation in ECs prunes over-sprouting vasculature, abrogates intratumoral hypoxia, and improves T cell infiltration into the tumors. PHGDH inhibition activates anti-tumor T cell immunity and sensitizes GBM to CAR T therapy.
Thus, reprogramming endothelial metabolism by targeting PHGDH may offer a unique opportunity to improve T cell-based immunotherapy.
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