Evaluation Of Antimicrobial And Antiobesity Activities of Phytochemicals From Moringa oleifera Leaves And Seeds in Caenorhabditis elegans
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Abstract
Globally, microbial infections and non-communicable diseases
newlinehave been increasing at an alarming rate. NCDs such as diabetes,
newlinecardiovascular diseases, cancers, obesity and microbial infections can
newlineinteract adversely, together with factors like urbanization, dietary
newlinepatterns, and sedentary lifestyle, which have become the main drivers of
newlinehealth epidemics. Research and development have been launched for joint
newlineinterventions against noncommunicable and infectious diseases to make
newlineit an important policy consideration that requires new rational approaches.
newlineAs natural products from plants are receiving increasing attention; the
newlinepotential advantages of leaves and seeds of M. oleifera as novel
newlineantimicrobial and anti-obesity candidates have been researched in this
newlinestudy.
newlineExtraction, characterization and in silico molecular docking of
newlinebioactives from M. oleifera leaves and seeds were studies. Various
newlinesecondary metabolites, high number of phytochemicals and essential
newlinevitamins were found in both leaves and seeds of Moringa. However, the
newlineMadurai variety of M. oleifera leaves showed high contents of phytochemicals. A novel phytobiotic named clinasterol was identified
newlinefrom the Moringa leaves extract using GC-MS and in-silico molecular
newlinedocking analysis. A biopeptide of lt7.5 kDa size termed Napin was found
newlinein Moringa seed extracts based on LC-MS.
newlineAntimicrobial potency of extracts of Moringa leaves and seed were
newlineassessed. The findings suggests that MOL can inhibit S. aureus growth
newlinedevelopment by cell wall damage (MIC - 2.5mg mL-1
newline, MBC - 5mg mL1
newline). The mode of action of ten compounds from Moringa leaves were
newlineanalyzed by molecular docking on lipoprotein X complex (LpxC) and a
newlinefour-chained structured bacterial type II topoisomerase binding protein
newline(4PLB); which resulted in minimal to effective inhibition. Clionasterol
newlinecompound showed the dock score of -17.504 and -21.827 Kcal/mol
newlinerespectively, which can be utilized as an alternative to antibiotic for the
newlineaction against antibiotic-resistant bacteria.