RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:A responder-informed gut microbial consortium enhances anti-PD-1 efficacy in a mouse cancer model.
A responder-informed gut microbial consortium enhances anti-PD-1 efficacy in a mouse cancer model.
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免疫检查点抑制剂(ICIs),特别是抗程序性细胞死亡蛋白1(PD-1)疗法,改善了癌症治疗结局,但仅在一部分患者中实现持久获益。越来越多的证据表明肠道微生物组是ICI反应性的调节因素,但明确且经实验验证的微生物策略仍然有限。本研究旨在鉴定与应答者相关的肠道微生物,并评估一种明确细菌联合体增强PD-1阻断疗效的作用。
重新分析来自接受抗PD-1治疗的癌症患者的公开鸟枪法宏基因组数据集,以比较应答者与非应答者之间的肠道微生物组谱。根据分析标准间的一致性和可培养性,选择在应答者中可重复富集的细菌分类群,并组装为四株联合体(UJ-04)。在B16-F10黑色素瘤小鼠模型中评估UJ-04单独或联合抗PD-1疗法的免疫佐剂潜力,并通过流式细胞术评估肿瘤生长和免疫反应。
宏基因组再分析鉴定出四个在应答者患者中持续富集的共生细菌分类群,形成明确的UJ-04联合体。虽然UJ-04单独显示出极小的抗肿瘤活性,但与抗PD-1联合治疗相比抗PD-1单药治疗显著增强了肿瘤生长抑制。这一效应伴随瘤内CD8 + T细胞和NK 细胞增加,并在外周区室中呈现一致的免疫趋势。
一种基于应答者信息的明确微生物联合体在功能上将临床微生物组关联转化为体内验证,并通过调节宿主抗肿瘤免疫增强PD-1阻断疗效。这些发现支持明确细菌联合体作为基于微生物组的免疫治疗免疫调节辅助手段。
Aim: Immune checkpoint inhibitors (ICIs), particularly anti-programmed cell death protein 1 (PD-1) therapy, have improved cancer treatment outcomes, yet durable benefit is achieved in only a subset of patients. Growing evidence implicates the gut microbiome as a modulator of ICI responsiveness, but defined and experimentally validated microbial strategies remain limited.
This study aimed to identify responder-associated gut microbes and to evaluate a defined bacterial consortium for enhancing PD-1 blockade efficacy. Methods: Publicly available shotgun metagenomic datasets from anti-PD-1-treated cancer patients were re-analyzed to compare gut microbiome profiles between responders and non-responders. Bacterial taxa reproducibly enriched in responders were selected based on consistency across analytical criteria and cultivability and assembled into a four-strain consortium (UJ-04). The immune-adjuvant potential of UJ-04, alone or combined with anti-PD-1 therapy, was evaluated in a B16-F10 melanoma mouse model, with tumor growth and immune responses assessed by flow cytometry.
Results: Metagenomic re-analysis identified four commensal bacterial taxa consistently enriched in responder patients, forming the defined UJ-04 consortium. While UJ-04 alone showed minimal antitumor activity, combination treatment with anti-PD-1 significantly enhanced tumor growth inhibition compared with anti-PD-1 monotherapy.
This effect was accompanied by increased intratumoral CD8 + T cells and natural killer cells, with concordant immune trends in peripheral compartments. Conclusion: A responder-informed, defined microbial consortium functionally translates clinical microbiome associations into in vivo validation and enhances PD-1 blockade efficacy by modulating host antitumor immunity.
These findings support defined bacterial consortia as microbiome-based immunomodulatory adjuncts for immunotherapy.
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