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用于细菌标记的荧光碳点:机制与展望——综述

Fluorescent carbon dots for labeling of bacteria: mechanism and prospects-a review.

机构信息

Department of Biomedical Engineering, Chang Gung University, Taoyuan, 33302, Taiwan.

Department of Bioscience and Biotechnology, National Taiwan Ocean University, Keelung, 202301, Taiwan.

出版信息

Anal Bioanal Chem. 2024 Jul;416(17):3907-3921. doi: 10.1007/s00216-024-05300-1. Epub 2024 Apr 24.

Abstract

The search for bacteria-labeling agents that are more efficient and less toxic compared to existing staining dyes is ongoing. Fluorescent quantum dots and carbon dots (CDs) have been extensively researched for various bioimaging applications. Priority is given to CDs due to several advantages, including lower toxicity, versatility in tuning their properties, and better photostability compared to metal-based quantum dots. Although significant progress is still needed to replace existing dyes with CDs for bacteria labeling, they offer promising potential for further improvement in efficiency. Surface charges and functional groups have been reported as decisive factors for bacterial discrimination and live/dead assays; however, a complete guideline for preparing CDs with optimum properties for efficient staining and predicting their labeling performance is lacking. In this review, we discuss the application of fluorescent CDs for bacterial labeling and the underlying mechanisms and principles. We primarily focus on the application and mechanism of CDs for Gram differentiation, live imaging, live/dead bacteria differentiation, bacterial viability testing, biofilm imaging, and the challenges associated with application of CDs. Based on proposed mechanisms of bacterial labeling and ambiguous results reported, we provide our view and guidelines for the researchers in this field to overcome the challenges associated with bacteria labeling using fluorescent CDs.

摘要

目前正在寻找比现有染色染料更有效、毒性更低的细菌标记试剂。荧光量子点和碳点(CDs)已被广泛研究用于各种生物成像应用。与基于金属的量子点相比,由于毒性更低、易于调整其性质以及更好的光稳定性等优点,优先考虑 CDs。尽管用 CDs 替代现有染料进行细菌标记仍需要取得重大进展,但它们为提高效率提供了有希望的潜力。表面电荷和官能团已被报道为细菌区分和死活测定的决定性因素;然而,缺乏用于制备具有最佳染色性能并预测其标记性能的 CDs 的完整指南。在这篇综述中,我们讨论了荧光 CDs 在细菌标记中的应用以及相关的机制和原理。我们主要关注 CDs 在革兰氏区分、活细胞成像、活/死细菌区分、细菌活力测试、生物膜成像以及与 CDs 应用相关的挑战方面的应用和机制。基于提出的细菌标记机制和报告的模糊结果,我们为该领域的研究人员提供了克服使用荧光 CDs 进行细菌标记相关挑战的观点和指导。

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