A Probable Anti-COVID Phytochemical (1,7-Bis-(4-hydroxyphenyl)-1-heptene-3,5-dione) Screened Computationally from the Rhizome of Curcuma longa 

T. Ezeorba, N. Uchendu, E. J. Nweze, Chibuzo K. Okoroafor, Pascal O. Ogbu, Miracle C. Okpara, R. Asomadu, P. Joshua
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引用次数: 2

Abstract

The devastating nature of the SARS-CoV-2 pandemic has fostered the need for potent therapeutics to manage or curb the disease’s severity. As a response, several studies on drug repurposing, vaccine design and optimizing natural phytochemicals are ongoing. This study aims at screening for potent and novel anti-COVID phytochemicals from the rhizome of Curcuma longa. A phytochemical library of 50 nonubiquitous bioactive compounds from the rhizome of Curcuma longa was retrieved from Dr. Duke’s phytochemical and ethnobotanical database (accessed on 20 April 2021). The compounds in the library were docked against the receptor binding domain (RBD) of SARS-CoV-2 (PDB ID: 7EAM_1). Three compounds—quercetin; 1,7-Bis-(4-hydroxyphenyl)-1-heptene-3,5-dione; and cyclocurcumin, were selected based on their higher docking score than the standard repurposed drug (Arbidol). This study further examined the interactions of the novel 1,7-Bis-(4-hydroxyphenyl)-1-heptene-3,5-dione (BHHD) in the binding pocket as well as its ADMET properties. Excellent interaction was observed between the atoms of BHHD and amino acid residues known to foster the viral entry into the host. Furthermore, the ADMET result for BHHD was impressive for a lead molecule. Therefore, this study recommends for further investigation on the potency and toxicity of BHHD both on cell lines and animal models.
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从姜黄根茎中筛选抗新冠病毒植物化学物质(1,7-双-(4-羟基苯基)-1-庚烯-3,5-二酮
SARS-CoV-2大流行的破坏性促使人们需要强有力的治疗方法来控制或遏制该疾病的严重程度。为此,一些关于药物再利用、疫苗设计和优化天然植物化学物质的研究正在进行中。本研究旨在从姜黄根茎中筛选有效的新型抗新冠病毒植物化学物质。从Duke博士的植物化学和民族植物学数据库(于2021年4月20日访问)中检索了姜黄根茎中50种非普遍存在的生物活性化合物的植物化学文库。文库中的化合物与SARS-CoV-2的受体结合域(RBD) (PDB ID: 7EAM_1)对接。三个compounds-quercetin;(1, 7-Bis) - 4-hydroxyphenyl 1-heptene-3, 5-dione;和环姜黄素,根据其对接评分高于标准再用途药物(阿比多尔)而选择。本研究进一步研究了新型1,7-二-(4-羟基苯基)-1-庚烯-3,5-二酮(BHHD)在结合袋中的相互作用及其ADMET特性。在BHHD原子和氨基酸残基之间观察到良好的相互作用,已知可以促进病毒进入宿主。此外,ADMET结果对BHHD的铅分子是令人印象深刻的。因此,本研究建议进一步研究BHHD在细胞系和动物模型上的效力和毒性。
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