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Celastrol mitigates staphyloxanthin biosynthesis and biofilm formation in Staphylococcus aureus via targeting key regulators of virulence; in vitro and in vivo approach
Faculty
Pharmacy
Year:
2022
Type of Publication:
ZU Hosted
Pages:
1-18
Authors:
Mo'men Mahmoud Ezzelarab Abdelaziz Metwally Askoura
Staff Zu Site
Abstract In Staff Site
Journal:
BMC microbiology BioMed Central Ltd
Volume:
22
Keywords :
Celastrol mitigates staphyloxanthin biosynthesis , biofilm formation
Abstract:
staphylococcus aureus is a leading cause of human infections. The spread of antibiotic-resistant staphylococci has driven the search for novel strategies to supersede antibiotics use. Thus, targeting bacterial virulence rather than viability could be a possible alternative.The influence of celastrol on staphyloxanthin (STX) biosynthesis, biofilm formation, antibiotic susceptibility and host pathogenesis in S. aureus has been investigated. Celastrol efficiently reduced STX biosynthesis in S. aureus. Liquid chromatography-mass spectrometry (LC–MS) and molecular docking revealed that celastrol inhibits STX biosynthesis through its effect on CrtM. Quantitative measurement of STX intermediates showed a significant pigment inhibition via interference of celastrol with CrtM and accumulation of its substrate, farnesyl diphosphate. Importantly, celastrol-treated S. aureus was more sensitive to environmental stresses and human blood killing than untreated bacteria. Similarly, inhibition of STX upon celastrol treatment rendered S. aureus more susceptible to membrane targeting antibiotics. In addition to its anti-pigment capability, celastrol exhibits significant anti-biofilm activity against S. aureus as indicated by crystal violet assay and microscopy. Celastrol-treated cells showed deficient exopolysaccharide production and cell hydrophobicity. Moreover, celastrol markedly synergized the action of conventional antibiotics against S. aureus and reduced bacterial pathogenesis in vivo using mice infection model. These findings were further validated using qRT-PCR, demonstrating that celastrol could alter the expression of STX biosynthesis genes as well as biofilm formation related genes and bacterial virulence. Celastrol is a novel anti-virulent agent against S. aureus suggesting, a prospective therapeutic role for celastrol as a multi-targeted anti-pathogenic agent.
Author Related Publications
Mo'men Mahmoud Ezzelarab Abdelaziz Metwally Askoura, "Alteration of Salmonella enterica Virulence and Host Pathogenesis through Targeting sdiA by Using the CRISPR-Cas9 System", MDPI, 2021
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Mo'men Mahmoud Ezzelarab Abdelaziz Metwally Askoura, "efflux pump inhibitors epis as new antimicrobila agents against peseudomnas aeruginosa", libyan journal of microbiology, 2011
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Mo'men Mahmoud Ezzelarab Abdelaziz Metwally Askoura, "listeria monocytogenes internalins: a diverse proteinfam invoved in virulence", the libyan journal of infectious disases, 2010
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Mo'men Mahmoud Ezzelarab Abdelaziz Metwally Askoura, "The Campylobacter jejuni Ferric Uptake Regulator Promotes Acid Survival and Cross-Protection against Oxidative Stress.", American Society for Microbiology, 2016
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Mo'men Mahmoud Ezzelarab Abdelaziz Metwally Askoura, "In Vitro Study on the Pathogenicity of Proteus Species Isolated", لايوجد, 1900
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Department Related Publications
Mona Abdelmoniem Elsayed Mahmmoud , "The value of peritoneal lavage in peritonitis", لايوجد, 1900
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Mona Abdelmoniem Elsayed Mahmmoud , "Chemoantibiotic _ resistance in enteropathogenic Escherichia Coli Locally ", لايوجد, 1900
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