CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Addressing Immune Response Dysfunction in an Integrated Approach for Testing and Assessment for Non-Genotoxic Carcinogens in Humans: A Targeted Analysis.
Addressing Immune Response Dysfunction in an Integrated Approach for Testing and Assessment for Non-Genotoxic Carcinogens in Humans: A Targeted Analysis.
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大多数已知的化学致癌剂会直接或在代谢激活后诱导 DNA 损伤的直接激活。然而,致癌物并不总是直接通过基因毒性机制发挥作用,而是可以通过非基因毒性致癌(NGTxC)机制发挥作用。免疫功能障碍是 NGTxC 已被证明可以改变的关键事件之一。免疫系统是针对转化细胞的第一道防线,具有针对癌细胞的先天免疫反应和免疫逃避机制。在这里,我们回顾一下免疫功能障碍的关键事件。这些包括免疫毒性、免疫逃避、免疫抑制和炎症介导的免疫反应,以及免疫抗癌分子信号传导途径分子破坏的关键因素,特别是与NGTxC鉴定相关的细胞因子和芳基碳氢化合物受体介导的信号传导途径。还从进化遗产的角度讨论了细胞因子对响应环境压力的功能灵活性的可塑性。这与对当前可用测试方法工具的监管应用适用性的严格评估相结合,并通过从稳健的癌症活检研究中确定的 MAPK、mTOR、PD-L1、TIL 和 Tregs、CD8+、FoxP3+、WNT、IL-17、IL-11、IL-10 和 TNF 等关键生物标志物得到证实。
最后,建议了解如何在 NGTxC 测试和评估的综合方法中解决这些化学品危害监管目的的终点问题。
Most known chemical carcinogens induce the direct activation of DNA damage, either directly or following metabolic activation.
However, carcinogens do not always operate directly through genotoxic mechanisms but can do so via non-genotoxic carcinogenic (NGTxC) mechanisms. Immune dysfunction is one of these key events that NGTxCs have been shown to modify. The immune system is a first line of defence against transformed cells, with an innate immune response against cancer cells and mechanisms of immune evasion.
Here, we review the key events of immune dysfunction. These include immunotoxicity, immune evasion, immune suppression and inflammatory-mediated immune responses, and the key players in the molecular disruption of immune anti-cancer molecular signalling pathways, particularly those mediated by cytokines and the Aryl hydrocarbon Receptor, in relation to the identification of NGTxC.
The plasticity of cytokines towards functional flexibility in response to environmental stressors is also discussed from an evolutionary heritage perspective. This is combined with a critical assessment of the suitability for the regulatory application of currently available test method tools and is corroborated by the key biomarkers of, e. g. , MAPK, mTOR, PD-L1, TIL and Tregs, CD8+, FoxP3+, WNT, IL-17, IL-11, IL-10, and TNF , as identified from robust cancer biopsy studies.
Finally, an understanding of how to address these endpoints for chemical hazard regulatory purposes, within an integrated approach to testing and assessment for NGTxC, is proposed.
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