Recalcitrant methicillin-resistant Staphylococcus aureus infection of bone cells: Intracellular penetration and control strategies
Yu K, Song L, Kang HP, Kwon HK, Back J, Lee FY. Recalcitrant methicillin-resistant Staphylococcus aureus infection of bone cells: Intracellular penetration and control strategies. Bone And Joint Research 2020, 9: 49-59. PMID: 32435455, PMCID: PMC7229311, DOI: 10.1302/2046-3758.92.bjr-2019-0131.r1.Peer-Reviewed Original ResearchMethicillin-resistant Staphylococcus aureus (MRSA) infectionsEarly antibiotic administrationHours of injuryStandard of careStaphylococcus aureus infectionBone resident cellsEffect of cefazolinBone Joint ResAntibiotic regimensAntibiotic administrationCombined administrationAntibiotic treatmentAureus infectionProtective effectSurgical preparationMRSA growthOpen fracturesPreparation agentsDetergent susceptibilityPrimary murine osteoblastsBacterial bioburdenMRSAColony formationRifampicinBone cellsRe-appraising the potential of naringin for natural, novel orthopedic biotherapies
Yu KE, Alder KD, Morris MT, Munger AM, Lee I, Cahill SV, Kwon HK, Back J, Lee FY. Re-appraising the potential of naringin for natural, novel orthopedic biotherapies. Therapeutic Advances In Musculoskeletal Disease 2020, 12: 1759720x20966135. PMID: 33343723, PMCID: PMC7727086, DOI: 10.1177/1759720x20966135.Peer-Reviewed Original ResearchBone morphogenetic proteinExtracellular signal-related kinase (ERK) pathwayRANK/RANKL interactionNumerous molecular pathwaysWnt/β-cateninBone resident cellsStem cell precursorsCellular differentiationKinase pathwayMorphogenetic proteinsPotential of naringinMolecular pathwaysΒ-cateninCellular mechanismsBone-preserving effectCommon musculoskeletal pathologiesEstrogen-sensitive tissuesOsteolytic bone diseaseCommon musculoskeletal conditionsMusculoskeletal developmentSystemic side effectsTreatment of osteoporosisDegenerative joint diseaseCell precursorsBone microenvironment