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:Sex bias in tumor immunity: insights from immune cells.
Sex bias in tumor immunity: insights from immune cells.
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在癌症发病率、免疫治疗反应以及对不良反应的易感性方面已观察到显著的性别差异,这些差异同时影响生殖器官癌症和非生殖器官癌症。虽然生活方式因素、致癌物暴露和医疗可及性对这些差异有所贡献,但它们并不能完全解释所观察到的男女在抗肿瘤免疫方面的差异。尽管性激素受体在免疫细胞中优先表达,X染色体也包含众多参与免疫功能的基因,其不完全失活可能增强女性的抗肿瘤免疫反应。相反,男性中Y连锁基因的缺失或下调与癌症风险增加相关。
此外,雌激素、孕激素和雄激素信号通路影响固有免疫和适应性免疫应答,导致癌症进展和治疗中性别特异性的结局差异。性别偏向性差异在基因表达的表观遗传调控、细胞衰老、微生物群组成、代谢和DNA损伤应答中也很明显,所有这些都影响抗肿瘤免疫和免疫治疗疗效。
总体而言,性染色体、性激素和激素受体的组合协调了参与肿瘤免疫的各种免疫细胞的表型和功能。然而,考虑到激素受体在免疫细胞中的优先表达以及性激素水平在不同生命阶段显著波动,每种特定免疫细胞中的性别差异是背景和环境依赖的。本综述旨在概述由性染色体和性激素信号驱动的T细胞、B细胞、NK细胞、DCs、中性粒细胞和巨噬细胞的分子、细胞和表观遗传变化。这些见解可能为性别特异性靶向治疗的设计提供信息,并导向更个体化的癌症治疗策略。
Significant sex disparities have been observed in cancer incidence, treatment response to immunotherapy, and susceptibility to adverse effects, affecting both reproductive and non-reproductive organ cancers. While lifestyle factors, carcinogenic exposure, and healthcare access contribute to these disparities, they do not fully explain the observed male-female variation in anti-tumor immunity.
Despite the preferential expression of sex hormone receptors in immune cells, X chromosome also contains numerous genes involved in immune function, and its incomplete inactivation may enhance anti-tumor immune responses in females. In contrast, loss or downregulation of Y-linked genes in males has been associated with an increased cancer risk.
Additionally, estrogen, progesterone and androgen signaling pathways influence both innate and adaptive immune responses, contributing to sex-specific outcomes in cancer progression and therapy.
Sex-biased differences are also evident in the epigenetic regulation of gene expression, cellular senescence, microbiota composition, metabolism, and DNA damage response, all of which impact anti-tumor immunity and immunotherapy treatment efficacy. In general, the combination of sex chromosomes, sex hormones, and hormone receptors orchestrates the phenotype and function of various immune cells involved in tumor immunity.
However, sex disparity in each specific immune cell are context and environment dependent, considering the preferential expression of hormone receptor in immune cell and sex hormone levels fluctuate significantly across different life stages.
This review aims to outline the molecular, cellular, and epigenetic changes in T cells, B cells, NK cells, DCs, neutrophils, and macrophages driven by sex chromosomes and sex hormone signaling. These insights may inform the design of sex-specific targeted therapies and leading to more individualized cancer treatment strategies.
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