石墨烯量子点:一个药物评论

Shital Shinde, Aniket Patil, R. Gaikwad
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引用次数: 0

摘要

量子点(QDs)具有独特的物理化学和光学特性,适用于光电子器件、发光二极管和光伏电池等器件。与基于硒和碲/偏硫化物的量子点相比,石墨烯量子点(GQDs)具有更低的毒性和更强的生物相容性,这些特性使其在药物递送剂、生物成像、治疗学和治疗学等各个领域的应用成为理想的候选者。本研究系统地探讨了自上而下和自下而上合成GQDs的不同方法。不同的物理化学,光学和生物特性包括在这个特殊的文本。这些特性包括大小和化学成分依赖的荧光、治疗学、细胞毒性、疾病诊断和生物相容性。最后,从合成、生物相容性和细胞毒性等方面讨论了GQDs在药物传递和生物成像系统中的预测和可能的发展方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Graphene Quantum Dots: A Pharmaceutical Review
Quantum dots (QDs) possess exclusive physicochemical and optical properties which are suitable for devices like, optoelectronic devices, light-emitting diodes, and photovoltaic cells. Compared to the selenium and tellurium/metasulfide- based QDs, graphene quantum dots (GQDs) are less toxic and have more biocompatibility, these properties make them ideal candidates for the application in various fields like, drug delivery agents, bio-imaging, therapeutics, and theranostics. Different types of methods for the synthesis of GQDs like top-down and bottom-up methods are systematically deliberated in this study. Different physicochemical, optical, and biological properties are included in this particular text. These properties include size- and chemical-composition-dependent fluorescence, therapeutics, cellular toxicity, disease diagnostics, and biocompatibility. At last, predictions and possible directions of GQDs in drug delivery and bioimaging systems are deliberated concerning challenges such as synthesis, biocompatibility, and cellular toxicity.
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