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优化纳米级氧化锌的内化及抗新冠病毒计算分析研究

Investigating the Internalization and COVID-19 Antiviral Computational Analysis of Optimized Nanoscale Zinc Oxide.

作者信息

Hamdi Mohamed, Abdel-Bar Hend Mohamed, Elmowafy Enas, El-Khouly Ahmed, Mansour Mai, Awad Gehanne A S

机构信息

Department of Pharmaceutics, Faculty of Pharmacy, University of Sadat City, P.O. Box 32897, Sadat City, Egypt.

Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmacy, Ain Shams University, Cairo, Egypt.

出版信息

ACS Omega. 2021 Mar 4;6(10):6848-6860. doi: 10.1021/acsomega.0c06046. eCollection 2021 Mar 16.

Abstract

Global trials are grappling toward identifying prosperous remediation against the ever-emerging and re-emerging pathogenic respiratory viruses. Battling coronavirus, as a model respiratory virus, via repurposing existing therapeutic agents could be a welcome move. Motivated by its well-demonstrated curative use in herpes simplex and influenza viruses, utilization of the nanoscale zinc oxide (ZnO) would be an auspicious approach. In this direction, ZnO nanoparticles (NPs) were fabricated herein and relevant aspects related to the formulation such as optimization, structure, purity, and morphology were elucidated. In silico molecular docking was conducted to speculate the possible interaction between ZnO NPs and COVID-19 targets including the ACE2 receptor, COVID-19 RNA-dependent RNA polymerase, and main protease. The cellular internalization of ZnO NPs using human lung fibroblast cells was also assessed. Optimized hexagonal and spherical ZnO nanostructures of a crystallite size of 11.50 ± 0.71 nm and positive charge were attained. The pure and characteristic hexagonal wurtzite 63 crystal structure was also observed. Interestingly, felicitous binding of ZnO NPs with the three tested COVID-19 targets, via hydrogen bond formation, was detected. Furthermore, an enhanced dose-dependent cellular uptake was demonstrated. The obtained results infer a rationale, awaiting validation from further biological and therapeutic studies.

摘要

全球范围内的试验正在努力寻找针对不断出现和再次出现的致病性呼吸道病毒的有效治疗方法。通过重新利用现有治疗药物来对抗作为典型呼吸道病毒的冠状病毒可能是一个值得欢迎的举措。鉴于纳米氧化锌(ZnO)在单纯疱疹病毒和流感病毒治疗中的显著疗效,其应用将是一种可行的方法。在此,制备了ZnO纳米颗粒(NPs),并阐明了与制剂相关的各个方面,如优化、结构、纯度和形态。通过计算机模拟分子对接推测ZnO NPs与COVID-19靶点(包括ACE2受体、COVID-19 RNA依赖性RNA聚合酶和主要蛋白酶)之间可能的相互作用。还评估了ZnO NPs在人肺成纤维细胞中的细胞内化情况。获得了微晶尺寸为11.50±0.71 nm且带正电荷的优化六边形和球形ZnO纳米结构。还观察到了纯净且具有特征性的六方纤锌矿晶体结构。有趣的是,检测到ZnO NPs通过形成氢键与三个测试的COVID-19靶点有良好的结合。此外,还证明了细胞摄取呈剂量依赖性增强。所得结果提供了一个理论依据,有待进一步的生物学和治疗学研究验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/562b/7970579/d28d9ed1ba1b/ao0c06046_0002.jpg

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