Tsai Po-Wei, Tayo Lemmuel L, Ting Jasmine U, Hsieh Cheng-Yang, Lee Chia-Jung, Chen Chih-Ling, Yang Hsiao-Chuan, Tsai Hsing-Yu, Hsueh Chung-Chuan, Chen Bor-Yann
Department of Medical Science Industries, College of Health Sciences, Chang Jung Christian University, Tainan 711, Taiwan.
School of Chemical, Biological, and Materials Engineering and Sciences, Mapúa University, 1002 Metro Manila, the Philippines.
Ind Crops Prod. 2023 Jan;191:115944. doi: 10.1016/j.indcrop.2022.115944. Epub 2022 Nov 10.
Due to the pandemics of COVID-19, herbal medicine has recently been explored for possible antiviral treatment and prevention via novel platform of microbial fuel cells. It was revealed that leaves was very appropriate for anti-COVID-19 drug development. Antioxidant and anti-inflammatory tests exhibited the most promising activities for ethanol extracts and drying approaches were implemented on the leaf samples prior to ethanol extraction. Ethanol extracts of leaves were applied to bioenergy evaluation via DC-MFCs, clearly revealing that air-dried leaves (CA-A-EtOH) exhibited the highest bioenergy-stimulating capabilities (ca. 2.72 fold of power amplification to the blank). Furthermore, molecular docking analysis was implemented to decipher the potential of leaves metabolites. Chlorogenic acid (-6.5 kcal/mol) owned the highest binding affinity with RdRp of SARS-CoV-2, showing a much lower average RMSF value than an apoprotein. This study suggested leaves as an encouraging medicinal herb against SARS-CoV-2.
由于新冠疫情,最近人们通过微生物燃料电池这一新型平台探索了草药在抗病毒治疗和预防方面的可能性。研究发现,某植物叶子非常适合用于抗新冠药物的开发。抗氧化和抗炎测试表明,乙醇提取物具有最有前景的活性,并且在乙醇提取之前,对叶子样本采用了干燥方法。将该植物叶子的乙醇提取物应用于通过直流微生物燃料电池进行生物能源评估,结果清楚地表明,风干叶(CA-A-EtOH)表现出最高的生物能源刺激能力(功率放大约为空白对照的2.72倍)。此外,还进行了分子对接分析以解读该植物叶子代谢物的潜力。绿原酸(-6.5千卡/摩尔)与新冠病毒的RNA依赖性RNA聚合酶(RdRp)具有最高的结合亲和力,其平均均方根波动值比无配体蛋白低得多。这项研究表明,该植物叶子是一种对抗新冠病毒的有前景的药用植物。