Singh Inderbir, Arora Riya, Dhiman Hardik, Pahwa Rakesh
Chitkara University, Chitkara College of Pharmacy, Department of Pharmaceutics, Punjab, India.
Kurukshetra University, Institute of Pharmaceutical Sciences, Haryana, India.
Turk J Pharm Sci. 2018 Aug;15(2):219-230. doi: 10.4274/tjps.63497. Epub 2018 Jul 17.
CQD are small carbon nanoparticles smallerl than 10 nm comprising distinctive properties, which have become an obligatory tool for traceable targeted delivery, biomedical research, and different therapy applications. The objective of the present work was to consolidate the current literature on the synthesis, characterization techniques, and biomedical applications of CQD. Two types of synthetic methods viz. top-down approach and bottom-up approach were used for the synthesis of CQD. The top-down approach includes the arc-discharge method, laser ablation method, and electrochemical method. The bottom-up approach includes the thermal method, microwave-assisted method, hydrothermal and aqueous method, and the template method. In this review, we explain the recent progress of CQD in the biomedical field, focusing on their synthetic methods and characterization, followed by different applications. Carbon dots have extensive adequacy for and bioimaging and drug delivery studies. Although more cytotoxicity studies of carbon dots are needed, the data above suggest a bright future for carbon dots in drug delivery and bioimaging studies.
碳量子点(CQD)是尺寸小于10纳米的小碳纳米颗粒,具有独特性质,已成为可追溯靶向递送、生物医学研究及不同治疗应用的必备工具。本研究的目的是整合当前关于碳量子点合成、表征技术及生物医学应用的文献。两种合成方法,即自上而下法和自下而上法被用于碳量子点的合成。自上而下法包括电弧放电法、激光烧蚀法和电化学法。自下而上法包括热法、微波辅助法、水热和水相法以及模板法。在本综述中,我们阐述了碳量子点在生物医学领域的最新进展,重点关注其合成方法和表征,随后是不同的应用。碳点在生物成像和药物递送研究方面具有广泛的适用性。尽管需要更多关于碳点的细胞毒性研究,但上述数据表明碳点在药物递送和生物成像研究方面前景光明。