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新型氧化锌量子点的阳光驱动抗菌活性及其利用 Box-Behnken 设计进行优化——一种用于传染病防护服装的药物。

Sunlight-driven antibacterial activity of a novel zinc oxide quantum dot and its optimization using Box-Behnken design-A medicament for communicable disease protective wearables.

机构信息

Department of Chemical Engineering, Arunai Engineering College, Tiruvannamalai, Tamil Nadu, India.

Department of Biotechnology, Arunai Engineering College, Tiruvannamalai, Tamil Nadu, India.

出版信息

Biotechnol Appl Biochem. 2023 Feb;70(1):221-237. doi: 10.1002/bab.2345. Epub 2022 Apr 21.

Abstract

The current study focuses on microwave-assisted zinc oxide quantum dots synthesis (ZnO-QDs) from zinc oxide bionanocomposite (ZnO-BC) preparation. The novelty lies in the preparation of ZnO-QDs, since the natural elements present in ZnO-BC itself acted as a surface penetration enhancer without using any chemical agent. Under ultraviolet (UV) light ZnO-QDs emitted a blue glow, confirming the fluorescence property. Using Box-Behnken design, the experimental factors of ZnO-QDs were optimized, yielding a positive response of 350 nm absorbance and these results also matched with the UV-visible spectroscopy characterization studies of ZnO-QDs. Using Escherichia coli, the antibacterial activity of ZnO-BC in comparison to ZnO-QDs was determined using the well diffusion method and an inhibition zone ranging from 11 to 23 mm and in the broth assay the OD values were reduced by almost seven and 10 times for ZnO-BC and ZnO-QDs, respectively, when compared to the control (untreated). The antibacterial activity demonstrated that our newly prepared BC and its QDs have superior activity when compared to the standard antibiotics such as ampicillin. This type of nanomaterial can be used as a new bioactive natural material with light-assisted activity for antibacterial coatings in the manufacture of personal protective equipment.

摘要

本研究聚焦于从氧化锌生物纳米复合材料(ZnO-BC)制备出发,通过微波辅助法合成氧化锌量子点(ZnO-QDs)。其新颖之处在于 ZnO-QDs 的制备,因为 ZnO-BC 中存在的天然元素本身就充当了表面渗透增强剂,而无需使用任何化学试剂。在紫外光(UV)下,ZnO-QDs 发出蓝色荧光,证实了其荧光性质。采用 Box-Behnken 设计,对 ZnO-QDs 的实验因素进行了优化,得到了 350nm 吸收峰的正响应,这些结果也与 ZnO-QDs 的紫外-可见光谱特性研究相吻合。通过大肠杆菌,采用平板扩散法测定了 ZnO-BC 与 ZnO-QDs 的抑菌活性,抑菌圈直径分别为 11-23mm。在肉汤试验中,与对照(未经处理)相比,ZnO-BC 和 ZnO-QDs 的 OD 值分别降低了近 7 倍和 10 倍。与标准抗生素(如氨苄西林)相比,所制备的 BC 和其 QDs 表现出更高的抗菌活性。这种纳米材料可用作具有光辅助活性的新型生物活性天然材料,用于制造个人防护设备中的抗菌涂料。

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