Interactive deciphering electron-shuttling characteristics of Coffea arabica leaves and potential bioenergy-steered anti-SARS-CoV-2 RdRp inhibitor via microbial fuel cells.
Ind Crops Prod
; 191: 115944, 2023 Jan.
Article
em En
| MEDLINE
| ID: mdl-36405420
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 Coffea arabica leaves was very appropriate for anti-COVID-19 drug development. Antioxidant and anti-inflammatory tests exhibited the most promising activities for C. arabica ethanol extracts and drying approaches were implemented on the leaf samples prior to ethanol extraction. Ethanol extracts of C. arabica 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 C. arabica 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 C. arabica leaves as an encouraging medicinal herb against SARS-CoV-2.
ADMET,, Absorption-distribution-metabolism-excretion-toxicity; BBB,, Blood-brain barrier; Biorefinery; C. arabica,, Coffea arabica; CA-40-EtOH,, EtOH extract of C. arabica leaves by 40°C oven-dried; CA-80-EtOH,, EtOH extract of C. arabica leaves by 80°C oven-dried; CA-A-EtOH,, EtOH extract of C. arabica leaves by air-dried; CA-AC,, Acetone extract of C. arabica leaves by 40°C oven-dried; CA-EA,, Ethyl acetate extract of C. arabica leaves by 40°C oven-dried; CA-F-EtOH,, EtOH extract of C. arabica leaves by freeze-dried; CA-H2O,, Water extract of C. arabica leaves by 40°C oven-dried; CA-HX,, Hexane extract of C. arabica leaves by 40°C oven-dried; COVID-19; Chlorogenic acid; Coffea arabica leaves; DC-MFCs,, Dual Chamber-Microbial Fuel Cells; DPPH,, 2,2-diphenyl-1-picrylhydrazyl; FRAP,, Ferric ion reducing antioxidant power; MFC,, Microbial fuel cell; Microbial fuel cells; QSAR,, Quantitative-structure-activity relationship; RMSF,, Root-mean-square fluctuation; RdRp; RdRp,, RNA-dependent RNA polymerase; SARS-CoV-2,, Severe acute respiratory syndrome coronavirus 2
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MEDLINE
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En
Ano de publicação:
2023
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Article