一种用于克服非小细胞肺癌治疗中抗原异质性的多靶向 CAR-T 细胞平台
A Multi-Targeting Chimeric Antigen Receptor-T Cell Platform to Overcome Antigen Heterogeneity in the Treatment of Non-Small Cell Lung Cancer.
这些发现支持采用多靶点CAR-T 策略来应对NSCLC及可能其他实体瘤中的抗原异质性。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Enhancing immunotherapy efficacy in NSCLC through the combined use of phenelzine and Akkermansia muciniphila to regulate gut microbial metabolite 5-HIAA.
Enhancing immunotherapy efficacy in NSCLC through the combined use of phenelzine and Akkermansia muciniphila to regulate gut microbial metabolite 5-HIAA.
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我们的研究揭示,肠道微生物组成的改变导致 5-HIAA 合成增加,会对 CD8+ T 细胞功能和免疫治疗的成功产生负面影响。补充 Phe 和 AKK 的组合具有优化免疫治疗疗效的潜力。
提高抗程序性死亡1(PD-1)单克隆抗体(mAb)治疗在非小细胞肺癌(NSCLC)中的疗效仍是癌症免疫治疗的一大挑战。肠道微生物代谢产物可影响免疫治疗疗效。
采用ELISA比较NSCLC患者血清5-羟基吲哚乙酸(5-HIAA)水平。构建人源化小鼠以观察5-HIAA对免疫治疗的影响。采用RNA-seq和流式细胞术分析5-HIAA对TIL(肿瘤浸润淋巴细胞)的影响。分析苯乙肼(Phe)和Akkermansia muciniphila(AKK)对5-HIAA合成、抗肿瘤免疫及免疫治疗疗效的影响。最后,观察Phe联合AKK对抗PD-1 mAb的协同作用。
我们发现,受肠道微生物群调控的5-HIAA在免疫治疗无应答者血清中浓度升高。补充5-HIAA抑制了抗PD-1 mAb的疗效和CD8+ T细胞的肿瘤浸润。使用单胺氧化酶抑制剂(MAO-I)Phe抑制了5-HIAA的合成,进而提高了抗PD-1 mAb的疗效。此外,补充AKK也可降低血清中的5-HIAA。最后,Phe与AKK联合使用最大程度地抑制了5-HIAA合成并提高了免疫治疗疗效。
Improving the efficacy of anti-programmed death 1 (PD-1) monoclonal antibody (mAb) therapy remains a major challenge for cancer immunotherapy in non-small cell lung cancer (NSCLC). Gut microbial metabolites can influence immunotherapy efficacy.
ELISA was used to compare the serum 5-hydroxyindoleacetic acid (5-HIAA) level in patients with NSCLC. Humanized mice were constructed to observe the effect of 5-HIAA on immunotherapy. RNA-seq and flow cytometry were used to analyze the effect of 5-HIAA on tumor-infiltrating lymphocytes. The effects of phenelzine (Phe) and Akkermansia muciniphila ( AKK ) on 5-HIAA synthesis, antitumor immunity and immunotherapy efficacy were analyzed. Finally, the synergistic effect of Phe combined with AKK on anti-PD-1 mAb was observed.
Here we found that 5-HIAA, which is regulated by gut microbiota, has increased concentrations in the serum of non-responders to immunotherapy. Supplementation of 5-HIAA inhibited the efficacy of anti-PD-1 mAb and tumor infiltration of CD8 + T cells. The use of monoamine oxidase inhibitor (MAO-I) Phe inhibited the synthesis of 5-HIAA, then improved the efficacy of anti-PD-1 mAb. In addition, supplementation of AKK can also decrease 5-HIAA in serum. Finally, the combination of Phe and AKK maximally inhibited 5-HIAA synthesis and improved immunotherapy efficacy.
Our investigations reveal that alterations in gut microbial composition leading to increased 5-HIAA synthesis can negatively impact CD8 + T cell functionality and the success of immunotherapy. The combination of Phe and AKK supplementation holds potential for optimizing immunotherapy efficacy.
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