Wu Wenhan, Zhang Shijian, He Jia
Department of General Surgery (Gastrointestinal Surgery), The Affiliated Hospital of Southwest Medical University, Luzhou, China.
School of Clinical Medicine, Southwest Medical University, Luzhou, China.
Front Pharmacol. 2022 May 5;13:879704. doi: 10.3389/fphar.2022.879704. eCollection 2022.
Radioresistance remains a significant challenge in tumor therapy. This systematic review aims to demonstrate the role of long non-coding RNA (lncRNA) in cancer radioresistance/radiosensitivity. The electronic databases Pubmed, Embase, and Google Scholar were searched from January 2000 to December 2021 to identify studies addressing the mechanisms of lncRNAs in tumor radioresistance/sensitivity, each of which required both and experiments. Among the 87 studies identified, lncRNAs were implicated in tumor radioresistance/sensitivity mainly in three paradigms. 1) lncRNAs act on microRNA (miRNA) by means of a sponge, and their downstream signals include some specific molecular biological processes (DNA repair and chromosome stabilization, mRNA or protein stabilization, cell cycle and proliferation, apoptosis-related pathways, autophagy-related pathways, epithelial-mesenchymal transition (EMT), cellular energy metabolism) and some signaling mediators (transcription factors, kinases, some important signal transduction pathways) that regulate various biological processes. 2) lncRNAs directly interact with proteins, affecting the cell cycle and autophagy to contribute to tumor radioresistance. 3) lncRNAs act like transcription factors to initiate downstream signaling pathways and participate in tumor radioresistance. lncRNAs are important regulators involved in tumor radioresistance\sensitivity. Different lncRNAs may participate in the radioresistance with the same regulatory paradigm, and the same lncRNAs may also participate in the radioresistance in different ways. Future research should focus more on comprehensively characterizing the mechanisms of lncRNAs in tumor radioresistance to help us identify corresponding novel biomarkers and develop new lncRNA-based methods to improve radioresistance.
放射抗性仍然是肿瘤治疗中的一个重大挑战。本系统综述旨在阐明长链非编码RNA(lncRNA)在癌症放射抗性/放射敏感性中的作用。检索了电子数据库PubMed、Embase和谷歌学术,时间跨度为2000年1月至2021年12月,以确定探讨lncRNAs在肿瘤放射抗性/敏感性机制的研究,每项研究都需要细胞实验和动物实验。在鉴定出的87项研究中,lncRNAs主要通过三种模式参与肿瘤放射抗性/敏感性。1)lncRNAs通过海绵作用作用于微小RNA(miRNA),其下游信号包括一些特定的分子生物学过程(DNA修复和染色体稳定、mRNA或蛋白质稳定、细胞周期和增殖、凋亡相关途径、自噬相关途径、上皮-间质转化(EMT)、细胞能量代谢)以及一些调节各种生物学过程的信号介质(转录因子、激酶、一些重要的信号转导途径)。2)lncRNAs直接与蛋白质相互作用,影响细胞周期和自噬,从而导致肿瘤放射抗性。3)lncRNAs像转录因子一样发挥作用,启动下游信号通路并参与肿瘤放射抗性。lncRNAs是参与肿瘤放射抗性/敏感性的重要调节因子。不同的lncRNAs可能以相同的调节模式参与放射抗性,而相同的lncRNAs也可能以不同的方式参与放射抗性。未来的研究应更多地关注全面表征lncRNAs在肿瘤放射抗性中的机制,以帮助我们识别相应的新型生物标志物,并开发基于lncRNA的新方法来提高放射抗性。