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:Chemical and Biomolecular Strategies for STING Pathway Activation in Cancer Immunotherapy.
Chemical and Biomolecular Strategies for STING Pathway Activation in Cancer Immunotherapy.
分数与星级只用于站内排序 —— 不代表疗效、安全性或个人适用性。
干扰素基因刺激因子(STING)细胞信号通路是癌症免疫治疗的一个有前景的靶点。细胞内STING蛋白的激活触发多种免疫刺激分子的产生,在适当的背景下,这些分子可以驱动树突状细胞成熟、抗肿瘤巨噬细胞极化、T细胞致敏和激活、NK 细胞激活、血管重编程和/或癌细胞死亡,从而导致免疫介导的肿瘤消除和抗肿瘤免疫记忆的产生。
因此,目前有大量正在进行的临床前和临床研究,旨在进一步理解STING通路在癌症免疫监视中的作用,以及开发该通路的调节剂作为刺激抗肿瘤免疫的策略。
然而,STING通路激动剂的疗效受到许多药物递送和药理学挑战的限制。根据STING激动剂的类别和所需给药途径,这些挑战可能包括药物稳定性差、免疫细胞毒性、免疫相关不良事件、肿瘤或淋巴结靶向和/或滞留有限、细胞摄取和细胞内递送低,以及对STING信号强度和动力学的复杂依赖性。本综述简要总结了STING通路,重点介绍了近期的生物学进展、免疫学后果及其对药物递送的意义。本综述还对正在用于增强STING通路激动剂疗效、安全性和/或临床实用性的不断扩展的化学策略库进行了批判性分析,最后提请注意若干治疗进展的机会。
The stimulator of interferon genes (STING) cellular signaling pathway is a promising target for cancer immunotherapy. Activation of the intracellular STING protein triggers the production of a multifaceted array of immunostimulatory molecules, which, in the proper context, can drive dendritic cell maturation, antitumor macrophage polarization, T cell priming and activation, natural killer cell activation, vascular reprogramming, and/or cancer cell death, resulting in immune-mediated tumor elimination and generation of antitumor immune memory. Accordingly, there is a significant amount of ongoing preclinical and clinical research toward further understanding the role of the STING pathway in cancer immune surveillance as well as the development of modulators of the pathway as a strategy to stimulate antitumor immunity.
Yet, the efficacy of STING pathway agonists is limited by many drug delivery and pharmacological challenges. Depending on the class of STING agonist and the desired administration route, these may include poor drug stability, immunocellular toxicity, immune-related adverse events, limited tumor or lymph node targeting and/or retention, low cellular uptake and intracellular delivery, and a complex dependence on the magnitude and kinetics of STING signaling.
This review provides a concise summary of the STING pathway, highlighting recent biological developments, immunological consequences, and implications for drug delivery. This review also offers a critical analysis of an expanding arsenal of chemical strategies that are being employed to enhance the efficacy, safety, and/or clinical utility of STING pathway agonists and lastly draws attention to several opportunities for therapeutic advancements.
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