CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:State-of-the-Art Strategies for Circular RNA in Cancers: Opportunity and Challenge.
State-of-the-Art Strategies for Circular RNA in Cancers: Opportunity and Challenge.
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环状RNA(circRNA)具有共价闭合结构、显著稳定性及精确的时空调控特性,已从曾被忽视的转录副产物发展为关键分子调节因子。除已知的微小RNA海绵作用外,circRNA还可充当蛋白支架和转录调节因子,甚至作为功能性肽合成模板。本综述总结circRNA整个生命周期的近期突破,包括生物发生、降解、核质转运及经细胞外囊泡介导的分泌,并系统分析其在肿瘤发生、免疫逃逸、转移播散、程序性细胞死亡及肿瘤—微生物组互作中的多重作用。文章重点介绍circRNA作为液体活检生物标志物的突出潜力,并审慎评估其在circRNA疫苗、靶向递送平台及CAR-T 等工程化细胞疗法中的转化应用。综述还讨论加速circRNA发现、功能表征和治疗设计的新兴人工智能方法。在应对标准化和递送方法方面现有挑战的基础上,作者提出未来研究方向,以将circRNA及其编码蛋白纳入精准肿瘤学和下一代免疫疗法。
总体而言,这些进展使circRNA成为一种具有变革潜力的新范式,有望革新癌症诊断、靶向治疗和RNA疫苗开发。
Circular RNAs (circRNAs) are characterized by their covalently closed structure, remarkable stability, and precise spatiotemporal regulation, evolving from once-overlooked transcriptional byproducts to pivotal molecular regulators.
In addition to their well-established function as microRNA sponges, circRNAs serve as protein scaffolds, transcriptional modulators, and even templates for functional peptide synthesis. This review synthesizes recent breakthroughs across the entire circRNA life cycle, encompassing biogenesis, degradation, nucleocytoplasmic transport, and extracellular vesicle-mediated secretion, while systematically analyzing their multifaceted involvement in tumorigenesis, immune evasion, metastatic dissemination, programmed cell death, and tumor-microbiome crosstalk.
We highlight their exceptional potential as liquid biopsy biomarkers and critically assess translational applications in circRNA-based vaccines, targeted delivery platforms, and engineered cell therapies like CAR-T. Emerging artificial intelligence approaches that accelerate circRNA discovery, functional characterization, and therapeutic design are also discussed.
Addressing current challenges in standardization and delivery methodologies, we propose future directions for incorporating circRNAs and their encoded proteins into precision oncology and next-generation immunotherapies.
Together, these advances position circRNAs as a transformative paradigm with the potential to revolutionize cancer diagnostics, targeted therapeutics, and RNA vaccine development.
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