Zhang Bo, Zhang Hao, Wang Zeyu, Cao Hui, Zhang Nan, Dai Ziyu, Liang Xisong, Peng Yun, Wen Jie, Zhang Xun, Zhang Liyang, Luo Peng, Zhang Jian, Liu Zaoqu, Cheng Quan, Peng Renjun
Department of Neurosurgery, Xiangya Hospital, Central South University, Changsha, China.
National Clinical Research Center for Geriatric Disorders, Xiangya Hospital, Central South University, Changsha, China.
CNS Neurosci Ther. 2024 Apr;30(4):e14500. doi: 10.1111/cns.14500. Epub 2023 Nov 12.
Central nervous system (CNS) tumors originate from the spinal cord or brain. The study showed that even with aggressive treatment, malignant CNS tumors have high mortality rates. However, CNS tumor risk factors and molecular mechanisms have not been verified. Due to the reasons mentioned above, diagnosis and treatment of CNS tumors in clinical practice are currently fraught with difficulties. Circular RNAs (circRNAs), single-stranded ncRNAs with covalently closed continuous structures, are essential to CNS tumor development. Growing evidence has proved the numeral critical biological functions of circRNAs for disease progression: sponging to miRNAs, regulating gene transcription and splicing, interacting with proteins, encoding proteins/peptides, and expressing in exosomes.
This review aims to summarize current progress regarding the molecular mechanism of circRNA in CNS tumors and to explore the possibilities of clinical application based on circRNA in CNS tumors.
We have summarized studies of circRNA in CNS tumors in Pubmed.
This review summarized their connection with CNS tumors and their functions, biogenesis, and biological properties. Furthermore, we introduced current advances in clinical RNA-related technologies. Then we discussed the diagnostic and therapeutic potential (especially for immunotherapy, chemotherapy, and radiotherapy) of circRNA in CNS tumors in the context of the recent advanced research and application of RNA in clinics.
CircRNA are increasingly proven to participate in decveloping CNS tumors. An in-depth study of the causal mechanisms of circRNAs in CNS tomor progression will ultimately advance their implementation in the clinic and developing new strategies for preventing and treating CNS tumors.
中枢神经系统(CNS)肿瘤起源于脊髓或大脑。研究表明,即使采用积极的治疗方法,恶性CNS肿瘤的死亡率仍很高。然而,CNS肿瘤的危险因素和分子机制尚未得到证实。由于上述原因,目前临床实践中CNS肿瘤的诊断和治疗困难重重。环状RNA(circRNAs)是具有共价闭合连续结构的单链非编码RNA,对CNS肿瘤的发展至关重要。越来越多的证据证明了circRNAs在疾病进展中的多种关键生物学功能:充当微小RNA(miRNAs)的海绵、调节基因转录和剪接、与蛋白质相互作用、编码蛋白质/肽以及在外泌体中表达。
本综述旨在总结circRNA在CNS肿瘤分子机制方面的当前进展,并探讨基于circRNA的CNS肿瘤临床应用可能性。
我们总结了Pubmed上关于circRNA在CNS肿瘤中的研究。
本综述总结了它们与CNS肿瘤的联系及其功能、生物发生和生物学特性。此外,我们介绍了临床RNA相关技术的当前进展。然后,结合近期RNA在临床的前沿研究和应用,我们讨论了circRNA在CNS肿瘤中的诊断和治疗潜力(特别是免疫治疗、化疗和放疗方面)。
越来越多的证据表明circRNA参与CNS肿瘤的发生发展。深入研究circRNAs在CNS肿瘤进展中的因果机制最终将推动其在临床中的应用,并为预防和治疗CNS肿瘤开发新策略。