TP53 缺失通过上调 NF-κB-IFN-β-MHC-Ia 信号促进骨肉瘤对 NK 细胞的抵抗
TP53 Loss Elevates NF-κB-IFN-β-MHC-Ia Signaling to Promote NK Cell Resistance in Osteosarcoma.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Cold atmospheric plasma: Novel opportunities for tumor microenvironment targeting.
Cold atmospheric plasma: Novel opportunities for tumor microenvironment targeting.
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随着越来越多临床前和临床证据显示肿瘤微环境(TME)在癌变过程中的重要作用,过去十年TME已被视为重要肿瘤治疗靶点。阐明当前对TME组分及其功能的认识,有助于发现新的肿瘤治疗机会,并制定期望的抗癌治疗方式。本文识别并聚焦TME中的主要细胞组分,即TIL(肿瘤浸润淋巴细胞)、肿瘤相关巨噬细胞、癌相关成纤维细胞和间充质干细胞,解析其在癌变过程中的主要功能,对利用这些组分特征的当前治疗方法进行分类,并预测冷大气等离子体可能通过靶向TME带来的获益。冷大气等离子体是一种氧化还原调节工具,对癌细胞具有选择性。我们的见解可能借助氧化还原稳态和免疫稳态开辟肿瘤控制的新治疗途径。
With mounting preclinical and clinical evidences on the prominent roles of the tumor microenvironment (TME) played during carcinogenesis, the TME has been recognized and used as an important onco-therapeutic target during the past decade. Delineating our current knowledge on TME components and their functionalities can help us recognize novel onco-therapeutic opportunities and establish treatment modalities towards desirable anti-cancer outcome.
By identifying and focusing on primary cellular components in the TME, that is, tumor-infiltrating lymphocytes, tumor-associated macrophages, cancer-associated fibroblasts and mesenchymal stem cells, we decomposed their primary functionalities during carcinogenesis, categorized current therapeutic approaches utilizing traits of these components, and forecasted possible benefits that cold atmospheric plasma, a redox modulating tool with selectivity against cancer cells, may convey by targeting the TME.
Our insights may open a novel therapeutic avenue for cancer control taking advantages of redox homeostasis and immunostasis.
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