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Role of circular RNAs in gastrointestinal tumors and drug resistance 被引量:1
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作者 shi-jun xi Wen-Qi Cai +1 位作者 Qin-Qi Wang xiao-Chun Peng 《World Journal of Clinical Cases》 SCIE 2021年第34期10400-10417,共18页
The incidence of gastrointestinal cancers has increased significantly over the past decade and gastrointestinal malignancies now rank among the leading causes of mortality globally.Although newer therapeutic strategie... The incidence of gastrointestinal cancers has increased significantly over the past decade and gastrointestinal malignancies now rank among the leading causes of mortality globally.Although newer therapeutic strategies such as targeted therapies have greatly improved patient outcomes,their clinical success is limited by drug resistance,treatment failure and recurrence of metastatic disease.Therefore,there is an urgent need for further research identifying accurate and reliable biomarkers for precise treatment strategies.Circular RNAs(circRNAs)exhibit a covalently closed structure,high stability and biological conservation,and their expression is associated with the occurrence and development of gastrointestinal tumors.Moreover,circRNAs may significantly influence drug resistance of gastrointestinal cancers.In this article,we review the role of circRNAs in the occurrence and development of gastrointestinal cancer,their association with drug resistance,and potential application for early diagnosis,treatment and prognosis in gastrointestinal malignancies.Furthermore,we summarize characteristics of circRNA,including mechanism of formation and biological effects via mRNA sponging,chromatin replication,gene regulation,translational modification,signal transduction,and damage repair.Finally,we discuss whether circRNA-related noninvasive testing may be clinically provided in the future.This review provides new insights for the future development of diagnostics and therapeutics based on circRNAs in gastrointestinal tumors. 展开更多
关键词 Gastrointestinal cancer Circular RNA Drug resistance GENOMICS Targeted therapy Molecular mechanics
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