School of Life Sciences, Faculty of Science and Engineering, Anglia Ruskin University, Cambridge, UK.
Oncogene. 2024 Jul;43(28):2135-2142. doi: 10.1038/s41388-024-03076-3. Epub 2024 Jun 5.
This review explores the topic of microRNAs (miRNAs) for improved early detection of imperceptible cancers, with potential to advance precision medicine and improve patient outcomes. Historical research exploring miRNA's role in cancer detection collectively revealed initial hurdles in identifying specific miRNA signatures for early-stage and difficult-to-detect cancers. Early studies faced challenges in establishing robust biomarker panels and overcoming the heterogeneity of cancer types. Despite this, recent developments have supported the potential of miRNAs as sensitive and specific biomarkers for early cancer detection as well as having demonstrated remarkable potential as diagnostic tools for imperceptible cancers, such as those with elusive symptoms or challenging diagnostic criteria. This review discusses the advent of high-throughput technologies that have enabled comprehensive detection and profiling of unique miRNA signatures associated with early-stage cancers. Furthermore, advancements in bioinformatics and machine-learning techniques are considered, exploring the integration of multi-omics data which have potential to enhance both the accuracy and reliability of miRNA-based cancer detection assays. Finally, perspectives on the continuing development on technologies as well as discussion around challenges that remain, such as the need for standardised protocols and addressing the complex interplay of miRNAs in cancer biology are conferred.
这篇综述探讨了 microRNAs(miRNAs)在提高难以察觉的癌症早期检测方面的应用,这有可能推动精准医学的发展并改善患者的预后。历史研究探索了 miRNA 在癌症检测中的作用,这些研究共同揭示了在识别早期和难以检测的癌症的特定 miRNA 特征方面存在的最初障碍。早期研究在建立稳健的生物标志物组合和克服癌症类型的异质性方面面临挑战。尽管如此,最近的发展仍支持 miRNA 作为早期癌症检测的敏感和特异性生物标志物的潜力,并已证明其作为难以察觉的癌症(如具有难以捉摸的症状或具有挑战性的诊断标准的癌症)的诊断工具具有显著潜力。这篇综述讨论了高通量技术的出现,这些技术使与早期癌症相关的独特 miRNA 特征的全面检测和分析成为可能。此外,还考虑了生物信息学和机器学习技术的进步,探索了多组学数据的整合,这有可能提高基于 miRNA 的癌症检测分析的准确性和可靠性。最后,本文还探讨了技术的持续发展以及仍然存在的挑战,例如需要标准化的方案和解决 miRNA 在癌症生物学中的复杂相互作用。