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迈向个性化纳米医学:液体活检中用于癌症生物标志物分析的微米和纳米器件的批判性评估

Toward Personalized Nanomedicine: The Critical Evaluation of Micro and Nanodevices for Cancer Biomarker Analysis in Liquid Biopsy.

作者信息

Clack Kimberley, Soda Narshone, Kasetsirikul Surasak, Mahmudunnabi Rabbee G, Nguyen Nam-Trung, Shiddiky Muhammad J A

机构信息

School of Environment and Science (ESC), Griffith University, Nathan Campus, Nathan, QLD, 4111, Australia.

Queensland Micro and Nanotechnology Centre (QMNC), Griffith University, Nathan Campus, Nathan, QLD, 4111, Australia.

出版信息

Small. 2023 Apr;19(15):e2205856. doi: 10.1002/smll.202205856. Epub 2023 Jan 11.

Abstract

Liquid biopsy for the analysis of circulating cancer biomarkers (CBs) is a major advancement toward the early detection of cancer. In comparison to tissue biopsy techniques, liquid biopsy is relatively painless, offering multiple sampling opportunities across easily accessible bodily fluids such as blood, urine, and saliva. Liquid biopsy is also relatively inexpensive and simple, avoiding the requirement for specialized laboratory equipment or trained medical staff. Major advances in the field of liquid biopsy are attributed largely to developments in nanotechnology and microfabrication that enables the creation of highly precise chip-based platforms. These devices can overcome detection limitations of an individual biomarker by detecting multiple markers simultaneously on the same chip, or by featuring integrated and combined target separation techniques. In this review, the major advances in the field of portable and semi-portable micro, nano, and multiplexed platforms for CB detection for the early diagnosis of cancer are highlighted. A comparative discussion is also provided, noting merits and drawbacks of the platforms, especially in terms of portability. Finally, key challenges toward device portability and possible solutions, as well as discussing the future direction of the field are highlighted.

摘要

用于分析循环癌症生物标志物(CBs)的液体活检是癌症早期检测的一项重大进展。与组织活检技术相比,液体活检相对无痛,可在血液、尿液和唾液等易于获取的体液中进行多次采样。液体活检也相对便宜且操作简单,无需专门的实验室设备或训练有素的医务人员。液体活检领域的重大进展很大程度上归功于纳米技术和微制造技术的发展,这些技术能够创建高度精确的基于芯片的平台。这些设备可以通过在同一芯片上同时检测多个标志物,或采用集成和组合的目标分离技术,克服单个生物标志物的检测局限性。在这篇综述中,重点介绍了用于癌症早期诊断的便携式和半便携式微型、纳米和多重平台在CB检测领域的主要进展。还提供了比较讨论,指出了这些平台的优缺点,特别是在便携性方面。最后,强调了设备便携性面临的关键挑战和可能的解决方案,并讨论了该领域的未来方向。

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