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迈向肿瘤免疫治疗中微生物组调控的双轴模型:致病共生菌清除与功能性生态恢复

英文原题:Toward a Dual-Axis Model of Microbiome Modulation in Cancer Immunotherapy: Pathobiont Elimination and Functional Ecosystem Restoration.

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Toward a Dual-Axis Model of Microbiome Modulation in Cancer Immunotherapy: Pathobiont Elimination and Functional Ecosystem Restoration.

PubMed 2026/07/08(内容时间) Cell Mol Bioeng Q2 · IF 3.5(JCR 2025)

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研究概要

病原体消除与功能性微生物恢复的双机制模型可能有助于解释微生物组介导的癌症免疫治疗增强作用,突出平衡的免疫允许性肠道生态系统是治疗成功的关键决定因素。

研究思路结论见上方概要

肠道微生物组日益被认为是癌症免疫治疗疗效的调节因素,包括对免疫检查点抑制剂(ICIs)和CAR-T 细胞治疗的反应。近期针对微生物组的干预措施,如粪菌移植(FMT)和活体生物治疗产品(LBPs)的临床试验表明,其具有增强抗肿瘤免疫和改善临床结局的潜力。然而,反应仍具有异质性,且不能仅用供体菌群定植来完全解释。

我们整合了来自干预性试验、观察性队列研究的证据以及肠道微生物生态学的原理,构建了一个关于微生物组靶向治疗如何影响免疫治疗应答的模型假设,有望为未来的试验设计、分析和解读提供参考。

基于现有证据,我们提出,对肠道微生物组的治疗性扰动可能通过两条平行轴线增强免疫治疗疗效:(1)消除抑制CD8+ T细胞活化并促进髓系介导免疫抑制的免疫抑制性致病共生菌;(2)通过植入能够提供有效抗肿瘤免疫所需代谢物、结构线索和免疫调节信号的分类群,实现肠道生态系统的功能恢复。这两条轴线的成功似乎都取决于由捕食者-猎物动态所支配的生态过程,包括定植抵抗、常驻微生物群的恢复力,以及所施用生物体置换根深蒂固的菌群失调群落的能力。这一生态学视角可能有助于解释试验设计、供体类型和干预方式之间的差异,并提示完全的供体植入既非临床获益的必要条件,也非充分条件。

展开英文摘要原文

The gut microbiome is increasingly recognized as a modulator of cancer immunotherapy efficacy, including responses to immune checkpoint inhibitors (ICIs) and chimeric antigen receptor T-cell (CAR-T) therapy. Recent clinical trials of microbiome-targeted interventions such as fecal microbiome transplantation (FMT) and live biotherapeutic products (LBPs) suggest the potential to enhance antitumor immunity and improve clinical outcomes. Yet responses remain heterogeneous and are not fully explained by engraftment of donor taxa alone.

We integrate evidence from interventional trials, observational cohort studies, and principles from gut microbial ecology to develop a model hypothesis on how microbiome-targeted therapies may shape response to immunotherapy, with potential to inform future trial design, analyses, and interpretation.

Drawing on the available evidence, we propose that therapeutic perturbation of the gut microbiome may augment immunotherapy efficacy through two parallel axes: (1) elimination of immunosuppressive pathobionts that restrain CD8+ T-cell activation and promote myeloid-mediated immunosuppression, and (2) functional restoration of the gut ecosystem through engraftment of taxa that provide metabolites, structural cues, and immunoregulatory signals required for effective antitumor immunity. The success of both axes appears to depend on ecological processes governed by predator-prey dynamics, including colonization resistance, resilience of the resident microbiota, and the ability of administered organisms to displace entrenched dysbiotic communities. This ecological lens may help to explain discrepancies across trial designs, donor types, and intervention modalities, and suggests that complete donor engraftment is neither necessary nor sufficient for clinical benefit.

A dual-mechanism model of pathobiont elimination and functional microbial restoration may help explain microbiome-mediated enhancement of cancer immunotherapy, highlighting a balanced immune permissive gut ecosystem as a key determinant of therapeutic success.

论文信息

作者
Davar D、Zarour HM、Trinchieri G
第一作者单位
Department of Medicine, University of Pittsburgh, Pittsburgh, PA, UNITED STATES.United States
通讯作者单位
Laboratory of Integrative Cancer Immunology, Center for Cancer Research, National Cancer Institute, Bethesda, MD., UNITED STATES.United States
期刊
Cellular and molecular bioengineering2026 Jul 8
原文标识
PubMed 42427432 · DOI 10.1007/s12195-026-00916-y