基于生物质废弃物的碳量子点的开发及其作为无毒生物成像剂的潜在应用。
Development of biomass waste-based carbon quantum dots and their potential application as non-toxic bioimaging agents.
作者信息
Abu Norhidayah, Chinnathambi Shanmugavel, Kumar Mahima, Etezadi Fatemeh, Bakhori Noremylia Mohd, Zubir Zuhana Ahmad, Md Salleh Shahrul Nizam, Shueb Rafidah Hanim, Karthikeyan Subramani, Thangavel Vaijayanthi, Abdullah Jaafar, Pandian Ganesh N
机构信息
Department of Medical Microbiology & Parasitology, School of Medical Sciences, Universiti Sains Malaysia, Health Campus Kubang Kerian 16150 Kelantan Malaysia
Advanced Materials Research Centre (AMREC), SIRIM Berhad Lot 34, Jalan Hi-Tech 2/3, Kulim, Hi-Tech Park 09000 Kulim Malaysia.
出版信息
RSC Adv. 2023 Sep 25;13(40):28230-28249. doi: 10.1039/d3ra05840a. eCollection 2023 Sep 18.
Over recent years, carbon quantum dots (CQDs) have advanced significantly and gained substantial attention for their numerous benefits. These benefits include their simple preparation, cost-effectiveness, small size, biocompatibility, bright luminescence, and low cytotoxicity. As a result, they hold great potential for various fields, including bioimaging. A fascinating aspect of synthesizing CQDs is that it can be accomplished by using biomass waste as the precursor. Furthermore, the synthesis approach allows for control over the physicochemical characteristics. This paper unequivocally examines the production of CQDs from biomass waste and their indispensable application in bioimaging. The synthesis process involves a simple one-pot hydrothermal method that utilizes biomass waste as a carbon source, eliminating the need for expensive and toxic reagents. The resulting CQDs exhibit tunable fluorescence and excellent biocompatibility, making them suitable for bioimaging applications. The successful application of biomass-derived CQDs has been demonstrated through biological evaluation studies in various cell lines, including HeLa, Cardiomyocyte, and iPS, as well as in medaka fish eggs and larvae. Using biomass waste as a precursor for CQDs synthesis provides an environmentally friendly and sustainable alternative to traditional methods. The resulting CQDs have potential applications in various fields, including bioimaging.
近年来,碳量子点(CQDs)取得了显著进展,并因其诸多优点而备受关注。这些优点包括制备简单、成本效益高、尺寸小、生物相容性好、发光明亮以及细胞毒性低。因此,它们在包括生物成像在内的各个领域都具有巨大潜力。合成碳量子点的一个引人入胜的方面是可以使用生物质废料作为前驱体来完成。此外,合成方法能够控制其物理化学特性。本文明确探讨了利用生物质废料生产碳量子点及其在生物成像中不可或缺的应用。合成过程涉及一种简单的一锅水热法,该方法利用生物质废料作为碳源,无需使用昂贵且有毒的试剂。所得的碳量子点表现出可调谐荧光和出色的生物相容性,使其适用于生物成像应用。通过在包括HeLa、心肌细胞和诱导多能干细胞等多种细胞系以及青鳉鱼卵和幼虫中的生物学评估研究,已证明了生物质衍生的碳量子点的成功应用。使用生物质废料作为碳量子点合成的前驱体为传统方法提供了一种环境友好且可持续的替代方案。所得的碳量子点在包括生物成像在内的各个领域都有潜在应用。
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