CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Exploring the landscape of drug resistance in gastrointestinal cancer immunotherapy: A review.
Exploring the landscape of drug resistance in gastrointestinal cancer immunotherapy: A review.
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胃肠道(GI)癌症由于高患病率和高死亡率而构成重大挑战。尽管在检测和常规治疗方面取得了进展,但预后往往仍然较差,尤其是对于晚期癌症。免疫治疗已成为一种变革性方法,利用机体免疫系统对抗癌症,包括免疫检查点抑制剂(ICIs)、癌症疫苗和过继细胞转移。这些治疗方式已显示出前景,在一些患者中实现了持久缓解和生存改善。
然而,它们在GI癌症中的疗效不太显著,受到固有或随时间获得的耐药机制的阻碍。本综述探讨了GI癌症中免疫治疗的最新认识,重点关注ICIs、癌症疫苗和过继细胞转移,以及其相关结局和局限性。它深入探讨了耐药背后的机制,包括免疫检查点改变、免疫抑制性肿瘤微环境以及遗传/表观遗传变化。肠道微生物组的作用也被视为耐药中的一个新兴因素。为对抗耐药,探索了增强免疫反应、靶向肿瘤微环境和调节耐药机制等策略。本综述强调了铁死亡诱导作为一种新方法的潜力。展望未来,它强调了个性化免疫治疗的必要性、理解肠道微生物组的影响,以及进一步探索铁死亡在克服耐药中的作用。尽管挑战依然存在,但GI癌症免疫治疗研究的持续演进有望带来创新性治疗,从而显著改善患者结局。
Gastrointestinal (GI) cancers pose a significant challenge due to high prevalence and mortality. While advancements in detection and conventional treatments have been made, prognosis often remains poor, particularly for advanced-stage cancers. Immunotherapy has emerged as a transformative approach, leveraging the body immune system against cancer, including immune checkpoint inhibitors (ICIs), cancer vaccines, and adoptive cell transfer. These modalities have shown promise, achieving sustained responses and improved survival in some patients.
However, their efficacy in GI cancers is less pronounced, hindered by drug resistance mechanisms that are either intrinsic or acquired over time. This review examines the latest understanding of immunotherapy in GI cancers, focusing on ICIs, cancer vaccines, and adoptive cell transfer, along with their associated outcomes and limitations. It delves into the mechanisms behind drug resistance, including alterations in immune checkpoints, the immunosuppressive tumor microenvironment, and genetic/epigenetic changes. The role of the gut microbiome is also considered as an emerging factor in resistance.
To combat drug resistance, strategies such as enhancing immune response, targeting the tumor microenvironment, and modulating resistance mechanisms are explored. The review underscores the potential of ferroptosis induction as a novel approach.
Looking forward, it highlights the need for personalized immunotherapies, understanding the influence of the gut microbiome, and further exploration of ferroptosis in overcoming resistance. While challenges persist, the continuous evolution in GI cancer immunotherapy research promises innovative treatments that could significantly improve patient outcomes.
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