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Arabian journal of chemistry. 2022 Jul;15(7):103942. doi: 10.1016/j.arabjc.2022.103942

Prediction of COVID-19 manipulation by selective ACE inhibitory compounds of Potentilla reptant root: In silico study and ADMET profile

基于牛膝根中选择性ACE抑制化合物的COVID-19治疗作用预测:离体研究与ADMET性质分析 翻译改进

Yuan Xu  1, Mahmood Al-Mualm  2, Ermias Mergia Terefe  3, Maksuda Ilyasovna Shamsutdinova  4, Maria Jade Catalan Opulencia  5, Fahad Alsaikhan  6, Abduladheem Turki Jalil  7, Ali Thaeer Hammid  8, Ayesheh Enayati  9, Hassan Mirzaei  9, Vahid Khori  9, Ali Jabbari  9, Aref Salehi  9, Alireza Soltani  10, Abdullah Mohamed  11

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作者单位

  • 1 First People's Hospital of Wuyi County, Zhejiang Province, Wuyi, Zhejiang 321200, China.
  • 2 Department of Clinical Laboratory Techniques, Al-Nisour University College, Baghdad, Iraq.
  • 3 School of Pharmacy and Health Science, United States International University, Nairobi, Kenya.
  • 4 Department of Hematology, Transfusiology and Laboratory Affairs, Tashkent Medical Academy, Farobi Street 2, Tashkent 100109, Uzbekistan.
  • 5 College of Business Administration, Ajman University, Ajman, United Arab Emirates.
  • 6 College of Pharmacy, Prince Sattam Bin Abdulaziz University, Alkharj, Saudi Arabia.
  • 7 Medical Laboratories Techniques Department, Al-Mustaqbal University College, Babylon, Hilla 51001, Iraq.
  • 8 Computer Engineering Techniques Department, Faculty of Information Technology, Imam Ja'afar Al-Sadiq University, Baghdad, Iraq.
  • 9 Ischemic Disorders Research Center, Golestan University of Medical Sciences, Gorgan, Iran.
  • 10 Golestan Rheumatology Research Center, Golestan University of Medical Science, Gorgan, Iran.
  • 11 Research Centre, Future University in Egypt, New Cairo 11845, Egypt.
  • DOI: 10.1016/j.arabjc.2022.103942 PMID: 35502159

    摘要 Ai翻译

    In the novel SARS-CoV-2 (COVID-19) as a global emergency event, the main reason of the cardiac injury from COVID-19 is angiotensin-converting enzyme 2 (ACE2) targeting in SARS-CoV-2 infection. The inhibition of ACE2 induces an increase in the angiotensin II (Ang II) and the angiotensin II receptor type 1 (AT1R) leading to impaired cardiac function or cardiac inflammatory responses. The ethyl acetate fraction of Potentilla reptans L. root can rescue heart dysfunction, oxidative stress, cardiac arrhythmias and apoptosis. Therefore, isolated components of P. reptans evaluated to identify natural anti-SARS-CoV-2 agents via molecular docking. In silico molecular docking study were carried out using the Auto Dock software on the isolated compounds of Potentilla reptans root. The protein targets of selective ACE and others obtained from Protein Data Bank (PDB). The best binding pose between amino acid residues involved in active site of the targets and compounds was discovered via molecular docking. Furthermore, ADMET properties of the compounds were evaluated. The triterpenoids of P. reptans showed more ACE inhibitory potential than catechin in both domains. They were selective on the nACE domain, especially compound 5. Also, the compound 5 & 6 had the highest binding affinity toward active site of nACE, cACE, AT1R, ACE2, and TNF-α receptors. Meanwhile, compound 3 showed more activity to inhibit TXA2. Drug likeness and ADMET analysis showed that the compounds passed the criteria of drug likeness and Lipinski rules. The current study depicted that P. reptans root showed cardioprotective effect in COVID-19 infection and manipulation of angiotensin II-induced side effects.

    Keywords: ADMET; Angiotensin II; COVID-19; Molecular docking simulation; Potentilla reptans.

    Keywords:COVID-19 manipulation; ACE inhibitory compounds; Potentilla reptant root; in silico study; ADMET profile

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    Prediction of COVID-19 manipulation by selective ACE inhibitory compounds of Potentilla reptant root: In silico study and ADMET profile