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AHRQ Research Studies
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Research Studies is a compilation of published research articles funded by AHRQ or authored by AHRQ researchers.
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1 to 2 of 2 Research Studies DisplayedMcNeil JC, Sommer LM, Vallejo JG
Reduced ceftaroline susceptibility among invasive mrsa infections in children: a clinical and genomic investigation.
The purpose of this study was to assess the frequency of reduced susceptibility (RS) to ceftaroline among pediatric methicillin-resistant Staphylococcus aureus (MRSA) infections. The researchers evaluated MRSA isolates at a tertiary children's hospital for ceftaroline RS. Ceftaroline RS occurred only among health care associated infections in 2.9% of isolates, and were more often clindamycin-resistant.
AHRQ-funded; HS026896.
Citation: McNeil JC, Sommer LM, Vallejo JG .
Reduced ceftaroline susceptibility among invasive mrsa infections in children: a clinical and genomic investigation.
Antimicrob Agents Chemother 2022 Oct 18;66(10):e0074522. doi: 10.1128/aac.00745-22..
Keywords: Children/Adolescents, Medication, Methicillin-Resistant Staphylococcus aureus (MRSA), Infectious Diseases, Genetics
Edwards RL, Heueck I, Lee SG
Potent, specific MEPicides for treatment of zoonotic staphylococci.
In this study, researchers demonstrated that fosmidomycin (FSM) inhibited the first step of the isoprenoid biosynthetic pathway catalyzed by deoxyxylulose phosphate reductoisomerase (DXR) in staphylococci. They synthesized a series of lipophilic ester prodrugs (termed MEPicides) structurally related to FSM, and their data indicated that the presence of the prodrug moiety not only substantially increased potency of the inhibitors against staphylococci but also bypassed the need for GlpT-mediated cellular transport. They concluded that their data indicated that the prodrug MEPicides selectively and robustly inhibited DXR in zoonotic staphylococci, and, further, that DXR represented a promising, druggable target for future development.
AHRQ-funded; HS021736; HS024269.
Citation: Edwards RL, Heueck I, Lee SG .
Potent, specific MEPicides for treatment of zoonotic staphylococci.
PLoS Pathog 2020 Jun;16(6):e1007806. doi: 10.1371/journal.ppat.1007806..
Keywords: Infectious Diseases, Antibiotics, Medication, Genetics