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错配修复 proficient 肿瘤足迹在免疫荒漠的沙中:机械约束和精确平台。

Mismatch repair-proficient tumor footprints in the sands of immune desert: mechanistic constraints and precision platforms.

机构信息

Bugworks Research India Pvt. Ltd., CCAMP, NCBS, Bangalore, India.

出版信息

Front Immunol. 2024 Jul 19;15:1414376. doi: 10.3389/fimmu.2024.1414376. eCollection 2024.

Abstract

Mismatch repair proficient (MMRp) tumors of colorectal origin are one of the prevalent yet unpredictable clinical challenges. Despite earnest efforts, optimal treatment modalities have yet to emerge for this class. The poor prognosis and limited actionability of MMRp are ascribed to a low neoantigen burden and a desert-like microenvironment. This review focuses on the critical roadblocks orchestrated by an immune evasive mechanistic milieu in the context of MMRp. The low density of effector immune cells, their weak spatiotemporal underpinnings, and the high-handedness of the IL-17-TGF-β signaling are intertwined and present formidable challenges for the existing therapies. Microbiome niche decorated by alters the metabolic program to maintain an immunosuppressive state. We also highlight the evolving strategies to repolarize and reinvigorate this microenvironment. Reconstruction of anti-tumor chemokine signaling, rational drug combinations eliciting T cell activation, and reprograming the maladapted microbiome are exciting developments in this direction. Alternative vulnerability of other DNA damage repair pathways is gaining momentum. Integration of liquid biopsy and ex vivo functional platforms provide precision oncology insights. We illustrated the perspectives and changing landscape of MMRp-CRC. The emerging opportunities discussed in this review can turn the tide in favor of fighting the treatment dilemma for this elusive cancer.

摘要

结直肠来源的错配修复 proficient (MMRp) 肿瘤是一种普遍但不可预测的临床挑战。尽管做出了认真的努力,但此类肿瘤仍缺乏最佳的治疗方法。MMRp 预后不良且治疗效果有限,这归因于其较低的新生抗原负担和类似沙漠的微环境。本篇综述重点关注 MMRp 中免疫逃避机制环境中协调的关键障碍。效应免疫细胞密度低、时空基础薄弱以及 IL-17-TGF-β 信号通路的强硬手段相互交织,对现有治疗方法构成了巨大挑战。受 修饰的微生物组生态位改变了代谢程序以维持免疫抑制状态。我们还强调了不断发展的策略,以重新极化和恢复这种微环境。重建抗肿瘤趋化因子信号、引发 T 细胞激活的合理药物组合以及重新编程适应性不良的微生物组是这一方向上令人兴奋的发展。其他 DNA 损伤修复途径的替代脆弱性也在不断增加。液体活检和体外功能平台的整合提供了精准肿瘤学的见解。我们阐述了 MMRp-CRC 的观点和不断变化的格局。本文讨论的新兴机会可以扭转局面,有利于对抗这种难以捉摸的癌症的治疗困境。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c577/11294168/86feeca41912/fimmu-15-1414376-g001.jpg

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