Institute of Chemical Biology and Fundamental Medicine, Siberian Branch, Russian Academy of Sciences, 630090 Novosibirsk, Russia.
Meshalkin Siberian Federal Biomedical Research Center, Ministry of Public Health of the Russian Federation, 630055 Novosibirsk, Russia.
Int J Mol Sci. 2022 Jul 8;23(14):7594. doi: 10.3390/ijms23147594.
Platinum-based chemotherapy, cisplatin (DDP) specifically, is the main strategy for treating lung cancer (LC). However, currently, there is a lack of predictive drug-resistance markers, and there is increased interest in the development of a reliable and sensitive panels of markers for DDP chemotherapy-effectiveness prediction. MicroRNAs represent a perspective pool of markers for chemotherapy effectiveness.
Data on miRNAs associated with LC DDP chemotherapy response are summarized and analyzed.
A comprehensive review of the data in the literature and an analysis of bioinformatics resources were performed. The gene targets of miRNAs, as well as their reciprocal relationships with miRNAs, were studied using several databases.
The complex analysis of bioinformatics resources and the literature indicated that the expressions of 12 miRNAs have a high predictive potential for LC DDP chemotherapy responses. The obtained information was discussed from the point of view of the main mechanisms of LC chemoresistance.
An overview of the published data and bioinformatics resources, with respect to the predictive microRNA markers of chemotherapy response, is presented in this review. The selected microRNAs and gene panel have a high potential for predicting LC DDP sensitiveness or DDP resistance as well as for the development of a DDP co-therapy.
铂类化疗,特别是顺铂(DDP),是治疗肺癌(LC)的主要策略。然而,目前缺乏预测药物耐药性的标志物,人们越来越关注开发可靠和敏感的 DDP 化疗效果预测标志物组合。microRNAs 是化疗效果的一个有前景的标志物池。
总结和分析与 LC DDP 化疗反应相关的 miRNAs 数据。
对文献中的数据进行全面综述,并对生物信息学资源进行分析。使用多个数据库研究了 miRNAs 的基因靶标及其与 miRNAs 的相互关系。
对生物信息学资源和文献的复杂分析表明,有 12 种 miRNAs 的表达对 LC DDP 化疗反应具有较高的预测潜力。从 LC 化疗耐药的主要机制的角度讨论了所获得的信息。
本文综述了发表的数据和生物信息学资源,涉及化疗反应的预测 microRNA 标志物。所选的 microRNAs 和基因组合具有很高的潜力,可以预测 LC 的 DDP 敏感性或 DDP 耐药性,以及开发 DDP 联合治疗。