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:Battlegrounds of treatment resistance: decoding the tumor microenvironment.
Battlegrounds of treatment resistance: decoding the tumor microenvironment.
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肿瘤微环境(TME)是癌症治疗中的强大影响因素,可妨碍多种治疗方式的疗效,包括化疗、放疗、免疫治疗、靶向治疗和激素治疗。这个复杂生态系统由多种细胞成分、信号分子和细胞外基质构成,彼此动态相互作用,深刻影响肿瘤行为和治疗结局。本综述探讨 TME 驱动标准治疗耐药的机制,重点关注缺氧、免疫逃逸和代谢重编程等关键因素。文章还介绍旨在重塑这一不利环境的创新策略,包括治疗性疫苗、CAR-T 细胞疗法和旨在增强抗肿瘤应答的联合免疫疗法。本文倡导采用多维度方法拆除 TME 对有效治疗形成的屏障,推动癌症治疗范式转变。通过衔接 TME 的复杂性与靶向治疗策略,研究者有望开发靶向干预方法,改善临床结局和患者预后,助力持续对抗癌症。
The tumor microenvironment (TME) emerges as a formidable actor in the cancer treatment landscape, wielding the power to thwart therapeutic efficacy across various modalities, including chemotherapy, radiotherapy, immunotherapy, targeted therapy, and hormonal therapy.
This intricate ecosystem comprising diverse cellular constituents, signaling molecules, and the extracellular matrix fosters a dynamic interplay that profoundly influences tumor behavior and treatment outcomes. This review explores the mechanisms through which the TME drives resistance to standard therapies, emphasizing key factors such as hypoxia, immune evasion, and metabolic reprogramming.
Furthermore, we illuminate innovative strategies aimed at reprogramming this hostile environment, including the application of therapeutic vaccines, CAR T cell therapy, and combination immunotherapies designed to enhance anti-tumor responses. By advocating for multidimensional approaches that dismantle the TME's barriers to effective treatment, this review calls for a transformative shift in cancer treatment paradigms.
By bridging the gap between the TME's complexities and targeted therapeutic strategies, we pave the way for targeted interventions that promise to enhance clinical outcomes and improve patient prognosis in the relentless battle against cancer.
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