Jiang Yingnan, Zhao Xinyu, Zhou Xuechun, He Xiaoyu, Zhang Zhe, Xiao Lizhi, Bai Jing, Yang Ying, Zhao Lei, Zhao Yu, Lin Quan
Jilin Ginseng Academy, Changchun University of Chinese Medicine, Changchun 130117, People's Republic of China.
Jilin Jice Testing Technology Co., LTD., Changchun 130117, People's Republic of China.
ACS Omega. 2023 Oct 23;8(44):41469-41479. doi: 10.1021/acsomega.3c05319. eCollection 2023 Nov 7.
In recent years, antibiotic-based carbon nanodots have been extensively developed and studied, because of their excellent synergistic fluorescence and antibacterial properties. These antibacterial carbon nanodots have also been developed with various new applications, such as heavy iron detection, pH sensitivity, temperature response, and bacterial count detection in various environments. In this article, using vancomycin hydrochloride as the only precursor, vancomycin hydrochloride carbon nanodots were rapidly synthesized by a one-step microwave method. The diameter of the vancomycin hydrochloride carbon nanodots was concentrated at 0.899 ± 0.40 nm with a uniform size and excitation-dependent fluorescence. Vancomycin hydrochloride carbon nanodots showed better antibacterial activity than the original vancomycin hydrochloride with low biological toxicity and good stability. In the pH range of approximately 7-13, there was a good linear relationship between the fluorescence intensity of the carbon nanodots and the pH value ( = 0.98516). Moreover, vancomycin hydrochloride carbon nanodots could quickly and specifically detect poisonous Sn through changes in their fluorescence intensity, with a detection limit of approximately 5.2 μM. Multifunctional vancomycin hydrochloride carbon nanodots have good application prospects in the fields of antibacterial, toxic Sn detection, and pH-sensitive aspects.
近年来,基于抗生素的碳纳米点因其优异的荧光协同和抗菌性能而得到广泛开发和研究。这些抗菌碳纳米点还被开发出各种新应用,如重金属检测、pH敏感性、温度响应以及各种环境中的细菌计数检测。在本文中,以盐酸万古霉素作为唯一前驱体,通过一步微波法快速合成了盐酸万古霉素碳纳米点。盐酸万古霉素碳纳米点的直径集中在0.899±0.40nm,尺寸均匀且具有激发依赖性荧光。盐酸万古霉素碳纳米点表现出比原始盐酸万古霉素更好的抗菌活性,具有低生物毒性和良好的稳定性。在大约7 - 13的pH范围内,碳纳米点的荧光强度与pH值之间存在良好的线性关系(=0.98516)。此外,盐酸万古霉素碳纳米点能够通过其荧光强度的变化快速、特异性地检测有毒的Sn,检测限约为5.2μM。多功能盐酸万古霉素碳纳米点在抗菌、有毒Sn检测和pH敏感方面具有良好的应用前景。