Huang Fei-Fei, Di Xiao-Fei, Bai Mo-Han
School of Medicine, South China University of Technology, Guangzhou, Guangdong, China.
Front Bioeng Biotechnol. 2024 Sep 4;12:1458362. doi: 10.3389/fbioe.2024.1458362. eCollection 2024.
Urinary cell-free DNA (UcfDNA) is gaining recognition as an important biomarker for diagnosing bladder cancer. UcfDNA contains tumor derived DNA sequences, making it a viable candidate for non-invasive early detection, diagnosis, and surveillance of bladder cancer. The quantification and qualification of UcfDNA have demonstrated high sensitivity and specificity in the molecular characterization of bladder cancer. However, precise analysis of UcfDNA for clinical bladder cancer diagnosis remains challenging. This review summarizes the history of UcfDNA discovery, its biological properties, and the quantitative and qualitative evaluations of UcfDNA for its clinical significance and utility in bladder cancer patients, emphasizing the critical role of UcfDNA in bladder cancer diagnosis. Emerging bioactive technologies and materials currently offer promising tools for multiple UcfDNA analysis, aiming to achieve more precise and efficient capture of UcfDNA, thereby significantly enhancing diagnostic accuracy. This review also highlights breakthroughs in detection technologies and substrates with the potential to revolutionize bladder cancer diagnosis in clinic.
尿游离DNA(UcfDNA)作为诊断膀胱癌的重要生物标志物正逐渐获得认可。UcfDNA包含肿瘤衍生的DNA序列,使其成为膀胱癌非侵入性早期检测、诊断和监测的可行候选物。UcfDNA的定量和定性在膀胱癌的分子特征分析中已显示出高灵敏度和特异性。然而,对UcfDNA进行精确分析以用于临床膀胱癌诊断仍然具有挑战性。本综述总结了UcfDNA的发现历史、其生物学特性以及对UcfDNA的定量和定性评估,以探讨其在膀胱癌患者中的临床意义和实用性,强调UcfDNA在膀胱癌诊断中的关键作用。新兴的生物活性技术和材料目前为多种UcfDNA分析提供了有前景的工具,旨在实现对UcfDNA更精确、高效的捕获,从而显著提高诊断准确性。本综述还强调了检测技术和底物方面的突破,这些突破有可能彻底改变临床膀胱癌诊断。