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纳米技术在液体活检中循环肿瘤DNA定量分析中的应用:一项系统综述

The Application of Nanotechnology for Quantification of Circulating Tumour DNA in Liquid Biopsies: A Systematic Review.

作者信息

Wu Nathan J W, Aquilina Matthew, Qian Bin-Zhi, Loos Remco, Gonzalez-Garcia Ines, Santini Cristina C, Dunn Katherine E

出版信息

IEEE Rev Biomed Eng. 2023;16:499-513. doi: 10.1109/RBME.2022.3159389. Epub 2023 Jan 5.

Abstract

Technologies for quantifying circulating tumour DNA (ctDNA) in liquid biopsies could enable real-time measurements of cancer progression, profoundly impacting patient care. Sequencing methods can be too complex and time-consuming for regular point-of-care monitoring, but nanotechnology offers an alternative, harnessing the unique properties of objects tens to hundreds of nanometres in size. This systematic review was performed to identify all examples of nanotechnology-based ctDNA detection and assess their potential for clinical use. Google Scholar, PubMed, Web of Science, Google Patents, Espacenet and Embase/MEDLINE were searched up to 23rd March 2021. The review identified nanotechnology-based methods for ctDNA detection for which quantitative measures (e.g., limit of detection, LOD) were reported and biologically relevant samples were used. The pre-defined inclusion criteria were met by 66 records. LODs ranged from 10 zM to 50nM. 25 records presented an LOD of 10fM or below. Nanotechnology-based approaches could provide the basis for the next wave of advances in ctDNA diagnostics, enabling analysis at the point-of-care, but none are currently used clinically. Further work is needed in development and validation; trade-offs are expected between different performance measures e.g., number of sequences detected and time to result.

摘要

液体活检中循环肿瘤DNA(ctDNA)定量技术可实现癌症进展的实时监测,对患者护理产生深远影响。测序方法对于常规的即时检测监测而言可能过于复杂且耗时,但纳米技术提供了一种替代方案,利用尺寸在数十到数百纳米的物体的独特性质。进行这项系统评价以识别所有基于纳米技术的ctDNA检测实例,并评估其临床应用潜力。截至2021年3月23日,对谷歌学术、PubMed、科学网、谷歌专利、欧洲专利局专利数据库和Embase/MEDLINE进行了检索。该评价识别出了报告了定量指标(如检测限,LOD)且使用了生物学相关样本的基于纳米技术的ctDNA检测方法。66条记录符合预定义的纳入标准。检测限范围为10泽莫耳至50纳摩尔。25条记录呈现的检测限为10飞摩尔或更低。基于纳米技术的方法可为ctDNA诊断的下一波进展提供基础,实现即时检测分析,但目前尚无一种方法用于临床。在开发和验证方面还需要进一步开展工作;预计在不同性能指标(如检测到的序列数量和出结果时间)之间会存在权衡。

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