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.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Gut Microbiota Modulation through Akkermansia spp. Supplementation Increases CAR T-cell Potency.
Gut Microbiota Modulation through Akkermansia spp. Supplementation Increases CAR T-cell Potency.
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本研究在患者和临床前同基因肿瘤模型中,从分类学和代谢层面探讨肠道微生物组在抗CD19嵌合抗原受体(CAR)T细胞治疗中的临床相关性。接受CD19 CAR-T 治疗的B细胞淋巴瘤患者出现严重肠道菌群失调,且输注CAR-T 细胞后进一步加重。菌群失调表现为细菌丰富度低、可溶性MAdCAM-1水平低及Akkermansia属菌种丢失,并与治疗耐药相关。从机制上看,口服补充Akkermansia massiliensis可增加CAR-T 细胞向骨髓浸润,逆转CD4/CD8 CAR-T 细胞比例,促进Tc1型CD8⁺ T细胞极化,并促使色氨酸来源吲哚代谢物释放,从而改善肿瘤控制。若CAR-T 细胞基因缺失吲哚受体芳香烃受体(AhR),补充Akkermansia属菌种的临床获益便消失。单独使用AhR激动性吲哚不能重现该细菌的抗癌作用。这些发现提示,对于肠道Akkermansia缺乏的患者,补充Akkermansia有望增强CAR-T 细胞效能。意义:接受CAR-T 治疗的B细胞淋巴瘤患者存在显著肠道菌群及相关代谢紊乱,限制CAR-T 疗效。口服补充A. massiliensis可重塑肠道微生态,促进CAR-T 细胞在骨髓定植和Tc1分化,并以AhR依赖方式改善肿瘤控制。
UNLABELLED: This study investigates the clinical relevance of the gut microbiome at taxonomic and metabolic levels in anti-CD19 chimeric antigen receptor (CAR) T-cell therapy, both in patients and in a preclinical syngeneic tumor model. Patients with B-cell lymphoma treated with CD19 CAR T cells exhibited profound intestinal dysbiosis, exacerbated after CAR T-cell infusion. This dysbiosis was characterized by low bacterial richness, low soluble MAdCAM-1, and loss of Akkermansia species, associated with resistance to therapy.
Mechanistically, oral Akkermansia massiliensis supplementation increased CAR T-cell infiltration into the bone marrow, inverted the CD4/CD8 CAR T-cell ratio, favored Tc1 CD8+ T-cell polarization, and promoted the release of tryptophan-derived indole metabolites, leading to better tumor control. The clinical benefit of Akkermansia spp. supplementation was abolished when CAR T cells were genetically deficient in the indole receptor, aryl hydrocarbon receptor (AhR). AhR-agonistic indoles alone failed to replicate the bacterium's anticancer effects.
These findings suggest that Akkermansia supplementation could improve CAR T-cell potency in patients with intestinal Akkermansia deficiency. SIGNIFICANCE: B-cell lymphoma patients treated with CAR T cells harbor major gut microbiota perturbations and related metabolism that restrain CAR T-cell therapy. Reprogramming the gut microbiota ecosystem by oral A. massiliensis supplementation induces CAR T-cell niching and Tc1 differentiation in the bone marrow, promoting tumor control in an AhR-dependent manner.
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