Wang Lei, Wang Lianqing, Dong Chunbo, Liu Jialong, Cui Guoxin, Gao Shan, Liu Zhida
Shanxi Academy of Advanced Research and Innovation Taiyuan China.
MOE Key Laboratory of Coal Environmental Pathogenicity and Prevention Shanxi Medical University Taiyuan China.
Exploration (Beijing). 2025 May 1;5(4):e20240044. doi: 10.1002/EXP.20240044. eCollection 2025 Aug.
Messenger RNA (mRNA) technology is revolutionizing the pharmaceutical industry owing to its superior safety profile, manufacturing capabilities, and potential applications in previously undruggable therapeutic targets. In addition to linear mRNA, such as conventional mRNA, self-amplifying mRNA, and trans-amplifying mRNA, circular mRNA has emerged as a promising candidate. Circular RNA (circRNA) is a class of single-stranded RNA with a covalently closed loop structure that offers enhanced stability compared to linear RNA by resisting degradation from RNases. Recent studies have revolutionized our understanding of their biological functions, surpassing the notion that they are merely byproducts of aberrant splicing events. Given the remarkable success achieved in cancer and SARS-CoV-2/monkeypox virus (MPXV) vaccines, circRNA is being intensively investigated for gene and cell therapies. In this review, we provide an overview of circRNA biogenesis mechanisms in vivo, along with synthesis strategies in vitro, while discussing translation regulation mechanisms and quality control processes involved in circRNA production. Furthermore, we explore the potential application scenarios for circRNAs.
信使核糖核酸(mRNA)技术正在彻底改变制药行业,这得益于其卓越的安全性、制造能力以及在以往难以成药的治疗靶点中的潜在应用。除了线性mRNA,如传统mRNA、自我扩增mRNA和反式扩增mRNA,环状mRNA已成为一个有前景的候选者。环状核糖核酸(circRNA)是一类具有共价闭合环状结构的单链RNA,通过抵抗核糖核酸酶的降解,其稳定性比线性RNA更高。最近的研究彻底改变了我们对其生物学功能的理解,超越了它们仅仅是异常剪接事件副产物的观念。鉴于在癌症疫苗和严重急性呼吸综合征冠状病毒2/猴痘病毒(MPXV)疫苗方面取得的显著成功,环状RNA正在被深入研究用于基因治疗和细胞治疗。在这篇综述中,我们概述了体内circRNA的生物合成机制以及体外合成策略,同时讨论了circRNA产生过程中涉及的翻译调控机制和质量控制过程。此外,我们还探讨了circRNA的潜在应用场景。