Phan Le Minh Tu, Cho Sungbo
School of Medicine and Pharmacy, The University of Danang, Danang 550000, Vietnam.
Department of Electronic Engineering, Gachon University, Seongnam, Gyeonggi-do 13120, Republic of Korea.
Bioinorg Chem Appl. 2022 Apr 10;2022:9303703. doi: 10.1155/2022/9303703. eCollection 2022.
Carbon dots (CDs) provide distinctive advantages of strong fluorescence, good photostability, high water solubility, and outstanding biocompatibility, and thus are widely exploited as potential imaging agents for and bioimaging. Imaging is absolutely necessary when discovering the structure and function of cells, detecting biomarkers in diagnosis, tracking the progress of ongoing disease, treating various tumors, and monitoring therapeutic efficacy, making it an important approach in modern biomedicine. Numerous investigations of CDs have been intensively studied for utilization in bioimaging-supported medical sciences. However, there is still no article highlighting the potential importance of CD-based bioimaging to support various biomedical applications. Herein, we summarize the development of CDs as fluorescence (FL) nanoprobes with different FL colors for potential bioimaging-based applications in living cells, tissue, and organisms, including the bioimaging of various cell types and targets, bioimaging-supported sensing of metal ions and biomolecules, and FL imaging-guided tumor therapy. Current CD-based microscopic techniques and their advantages are also highlighted. This review discusses the significance of advanced CD-supported imaging-based and investigations, suggests the potential of CD-based imaging for biomedicine, and encourages the effective selection and development of superior probes and platforms for further biomedical applications.
碳点(CDs)具有独特的优势,如强荧光、良好的光稳定性、高水溶性和出色的生物相容性,因此被广泛用作潜在的成像剂用于生物成像。在发现细胞的结构和功能、诊断中检测生物标志物、追踪疾病进展、治疗各种肿瘤以及监测治疗效果时,成像绝对是必要的,这使其成为现代生物医学中的一种重要方法。对碳点在生物成像支持的医学科学中的应用进行了大量研究。然而,仍然没有文章强调基于碳点的生物成像对支持各种生物医学应用的潜在重要性。在此,我们总结了碳点作为具有不同荧光颜色的荧光(FL)纳米探针的发展,用于在活细胞、组织和生物体中基于潜在生物成像的应用,包括各种细胞类型和靶点的生物成像、生物成像支持的金属离子和生物分子传感以及荧光成像引导的肿瘤治疗。还强调了当前基于碳点的显微技术及其优势。本综述讨论了先进的基于碳点的成像研究的意义,提出了基于碳点的成像在生物医学中的潜力,并鼓励为进一步的生物医学应用有效选择和开发优质的探针和平台。