Elysia A. Masters
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Postdoctoral Fellow
Also affiliated: United States Food and Drug Administration (2022–2026); University of Rochester Medicine (2018–2023); University of Rochester (2018–2023)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Elysia A. Masters' research focuses on understanding the pathogenesis of skeletal infections, particularly those caused by Staphylococcus aureus. Her work investigates how this bacterium invades bone tissue, evades host immune responses, and establishes infections like osteomyelitis and prosthetic joint infections. Masters has explored mechanisms by which Staphylococcus aureus interacts with bone cells and the host immune system, contributing to the development of chronic infections. Her investigations include the role of bacterial cell wall biosynthesis and specific proteins, such as Penicillin Binding Protein 4 (PBP4), in bone invasion. Masters also examines evolving concepts in the clinical management of bone infections, including the definition of biofilms and strategies for local antibiotic therapy.
Metrics
- h-index: 16
- Publications: 25
- Citations: 2,100
Positions
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Postdoctoral Fellow 2021–presentNational Center for Toxicological Research Division of Systems Biology ORCID
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PhD Candidate 2016–2021University of Rochester Biomedical Engineering ORCID
Selected Publications
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Dissecting Sex‐Specific Pathology in K18‐hACE2 Transgenic Mice Infected With Different SARS‐CoV‐2 Variants (2025)
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The effect of black cohosh extract and risedronate coadministration on bone health in an ovariectomized rat model (2024)
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Applying imaging mass spectrometry to define the N-glycan profiles of co-localized virus and immune cell infiltrates in post-COVID-19 infected lung autopsy tissues (2022)
Collaboration Network
Top Collaborators
- Applying imaging mass spectrometry to define the N-glycan profiles of co-localized virus and immune cell infiltrates in post-COVID-19 infected lung autopsy tissues
- Dissecting Sex‐Specific Pathology in K18‐hACE2 Transgenic Mice Infected With Different SARS‐CoV‐2 Variants
- Applying imaging mass spectrometry to define the N-glycan profiles of co-localized virus and immune cell infiltrates in post-COVID-19 infected lung autopsy tissues
- Applying imaging mass spectrometry to define the N-glycan profiles of co-localized virus and immune cell infiltrates in post-COVID-19 infected lung autopsy tissues
- Applying imaging mass spectrometry to define the N-glycan profiles of co-localized virus and immune cell infiltrates in post-COVID-19 infected lung autopsy tissues
- Applying imaging mass spectrometry to define the N-glycan profiles of co-localized virus and immune cell infiltrates in post-COVID-19 infected lung autopsy tissues
- Applying imaging mass spectrometry to define the N-glycan profiles of co-localized virus and immune cell infiltrates in post-COVID-19 infected lung autopsy tissues
- The effect of black cohosh extract and risedronate coadministration on bone health in an ovariectomized rat model
- The effect of black cohosh extract and risedronate coadministration on bone health in an ovariectomized rat model
- The effect of black cohosh extract and risedronate coadministration on bone health in an ovariectomized rat model
- The effect of black cohosh extract and risedronate coadministration on bone health in an ovariectomized rat model
- The effect of black cohosh extract and risedronate coadministration on bone health in an ovariectomized rat model
- The effect of black cohosh extract and risedronate coadministration on bone health in an ovariectomized rat model
- The effect of black cohosh extract and risedronate coadministration on bone health in an ovariectomized rat model
- The effect of black cohosh extract and risedronate coadministration on bone health in an ovariectomized rat model
- The effect of black cohosh extract and risedronate coadministration on bone health in an ovariectomized rat model
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