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照亮精准诊断之路:液体活检光子传感器的进展

Shining the Path of Precision Diagnostic: Advancements in Photonic Sensors for Liquid Biopsy.

作者信息

Colapietro Paola, Brunetti Giuseppe, Panciera Carlotta, Elicio Aurora, Ciminelli Caterina

机构信息

Optoelectronics Laboratory, Politecnico di Bari, Via E. Orabona 6, 70125 Bari, Italy.

出版信息

Biosensors (Basel). 2025 Jul 22;15(8):473. doi: 10.3390/bios15080473.

Abstract

Liquid biopsy (LB) has gained attention as a valuable approach for cancer diagnostics, providing a minimally invasive option compared to conventional tissue biopsies and helping to overcome issues related to patient discomfort and procedural invasiveness. Recent advances in biosensor technologies, particularly photonic sensors, have improved the accuracy, speed, and real-time capabilities for detecting circulating biomarkers in biological fluids. Incorporating these tools into clinical practice facilitates more informed therapeutic choices and contributes to tailoring treatments to individual patient profiles. This review highlights the clinical potential of LB, examines technological limitations, and outlines future research directions. Departing from traditional biosensor focused reviews, it adopts a reverse-mapping approach grounded in clinically relevant tumor biomarkers. Specifically, biomarkers associated with prevalent cancers, such as breast, prostate, and lung cancers, serve as the starting point for identifying the most suitable photonic sensing platforms. The analysis underscores the need to align sensor design with the physicochemical properties of each biomarker and the operational requirements of the application. No photonic platform is universally optimal; rather, each exhibits specific strengths depending on performance metrics such as sensitivity, limit of detection, and easy system integration. Within this framework, the review provides a comprehensive assessment of emerging photonic biosensors and outlines key priorities to support their effective clinical translation in cancer diagnostics.

摘要

液体活检(LB)作为一种有价值的癌症诊断方法已受到关注,与传统组织活检相比,它提供了一种微创选择,有助于克服与患者不适和操作侵入性相关的问题。生物传感器技术,特别是光子传感器的最新进展,提高了检测生物流体中循环生物标志物的准确性、速度和实时能力。将这些工具应用于临床实践有助于做出更明智的治疗选择,并有助于根据个体患者情况定制治疗方案。本综述强调了液体活检的临床潜力,探讨了技术局限性,并概述了未来的研究方向。与传统的侧重于生物传感器的综述不同,它采用了一种基于临床相关肿瘤生物标志物的反向映射方法。具体而言,与常见癌症(如乳腺癌、前列腺癌和肺癌)相关的生物标志物作为识别最合适的光子传感平台的起点。分析强调了传感器设计需要与每种生物标志物的物理化学性质以及应用的操作要求相匹配。没有一种光子平台是普遍最优的;相反,根据灵敏度、检测限和易于系统集成等性能指标,每种平台都有其特定的优势。在此框架内,本综述对新兴的光子生物传感器进行了全面评估,并概述了支持其在癌症诊断中有效临床转化的关键优先事项。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6416/12385121/32d549351e5c/biosensors-15-00473-g003.jpg

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