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一种通用的绿色方法用于合成具有增强的广谱抗菌和抗氧化活性的氮磷共掺杂碳量子点。

A universal green approach for the synthesis of NPS-codoped carbon quantum dots with enhanced broad-spectrum antibacterial and antioxidant activities.

作者信息

Pant Megha, Kumar Suresh, Kiran Kumari, Bisht Narendra Singh, Pande Veena, Dandapat Anirban

机构信息

Department of Biotechnology, Sir J. C. Bose Technical Campus, Bhimtal, Kumaun University Nainital Uttarakhand - 263136 India.

Department of Chemistry, DSB Campus, Kumaun University Nainital Uttarakhand - 263002 India.

出版信息

RSC Adv. 2023 Mar 20;13(14):9186-9194. doi: 10.1039/d2ra08103b.

Abstract

Bio-inspired quantum dots have received widespread attention in recent years due to their great potential for biological applications. Herein, we report a one pot hydrothermal synthesis of nitrogen-phosphorus-sulphur (NPS)-codoped carbon quantum dots from endophytic bacteria without using any additional doping precursor. The synthesized CQDs were thoroughly characterized and interestingly found to have a graphene like structure. The synthesized CQDs were then utilized in bactericidal activities against Gram-negative bacteria like , and Gram-positive bacteria like the strain. The strains were treated with different concentrations ranging from 5-100 µg ml. The 5 µg ml concentration appeared to be the MIC (minimum inhibitory concentration) and 100 µg ml is the MBC (minimum bactericidal concentration) maintaining a short incubation period of one hour. A simple, cost-effective and eco-friendly approach to synthesize multi-elemental doped CQDs would certainly cause the method to be used in future for diverse biological applications. As compared to the broadly used antibiotics, the developed CQDs have some added advantages including lower cytotoxicity, excellent photo-stability and high selectivity.

摘要

近年来,受生物启发的量子点因其在生物应用方面的巨大潜力而受到广泛关注。在此,我们报道了一种从内生细菌中一锅水热合成氮 - 磷 - 硫(NPS)共掺杂碳量子点的方法,无需使用任何额外的掺杂前驱体。对合成的碳量子点进行了全面表征,有趣的是发现其具有类似石墨烯的结构。然后将合成的碳量子点用于对革兰氏阴性菌如 、 和革兰氏阳性菌如 菌株的杀菌活性研究。用5 - 100 µg/ml的不同浓度处理这些菌株。5 µg/ml的浓度似乎是最低抑菌浓度(MIC),100 µg/ml是最低杀菌浓度(MBC),且孵育期短,仅一小时。一种简单、经济高效且环保的合成多元素掺杂碳量子点的方法肯定会使其在未来用于各种生物应用。与广泛使用的抗生素相比,所开发的碳量子点具有一些额外优势,包括较低的细胞毒性、优异的光稳定性和高选择性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5377/10026554/0c22623d4545/d2ra08103b-f1.jpg

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