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Presence Current · Arkansas
Last published 2026
Sources OpenAlex · ORCID
Refreshed 2026-10-08
Charles A. O’Brien profile photo

Charles A. O’Brien

Federal Grant PI High Impact

Professor of Medicine

Also affiliated: United States Department of Veterans Affairs (1989); Inserm (2016); University of Arkansas Medical Center (2000–2024); Universitair Ziekenhuis Leuven (2016); Oklahoma Medical Research Foundation (1989–1995); Yale University (1993–1994); Central Arkansas Veterans Healthcare System (2001–2026); Oklahoma City VA Medical Center (1989); Bone Health and Osteoporosis Foundation (2016); University of Oklahoma Health Sciences Center (1989–1990); Centers for Medicare and Medicaid Services (1995); University of Oklahoma (1990–1995); The University of Texas Health Science Center at Houston (1989); KU Leuven (2016)

Internal Med, College of Medicine

64 h-index 187 pubs 18,048 cited

  • Animals
  • Mice
  • Humans
  • Osteoblasts
  • Osteoclasts
  • Female
  • RANK Ligand
  • Mice, Inbred C57BL
  • Bone and Bones
  • Osteocytes
  • Mice, Transgenic
  • Bone Density
  • Osteogenesis
  • Male
  • Bone Resorption

Biography and Research Information

OverviewAI-generated summary

Charles A. O’Brien is a Professor of Medicine at the University of Arkansas for Medical Sciences, with a research focus on bone metabolism and the cellular and molecular mechanisms underlying skeletal health and disease. His work investigates the roles of hormones, oxidative stress, and cellular aging in bone remodeling and involution. O’Brien has been awarded five federal grants totaling $2,988,579, including significant funding from the National Institutes of Health (NIH) for projects such as the Center for Musculoskeletal Disease Research (CMDR) and research into osteocyte control of bone remodeling. He has also received funding for studies on the molecular mechanisms of glucocorticoid-induced bone loss and bone loss in osteomyelitis.

His scholarship metrics include an h-index of 64, with over 18,000 citations across 189 publications, identifying him as a highly cited researcher. O’Brien’s publications address topics including the control of osteoclast formation by matrix-embedded cells, the signaling pathways of sex steroid receptors in skeletal physiology, and the impact of oxidative stress and chronic parathyroid hormone elevation on bone. He has a notable collaborative network, with numerous shared publications with colleagues at the University of Arkansas for Medical Sciences, including Elena Ambrogini, Olivia Reyes‐Castro, Maria Almeida, and Hayley M. Sabol.

O’Brien's research also examines the direct effects of glucocorticoids on osteoblasts and osteocytes, leading to apoptosis and reduced bone formation and strength. Further investigations explore how skeletal involution is influenced by age-associated oxidative stress and the loss of sex steroids, and how Wnt signaling in osteoblast precursors is affected by oxidative stress. His ongoing work contributes to a broader understanding of bone diseases and potential therapeutic targets.

Metrics

  • h-index: 64
  • Publications: 187
  • Citations: 18,048

Positions

  • Professor of Medicine 1994–present
    University of Arkansas for Medical Sciences Internal Med, College of Medicine Institutional directory

Selected Publications

  • Protocol for the enrichment of endosteal and periosteal mesenchymal cells from murine bone for single-cell transcriptome analysis (2026)
    STAR Protocols DOI OpenAlex
  • A transcriptomic-driven segmentation and cell simulation framework for high-resolution spatial transcriptomics and cell-cell communication (2026)
    bioRxiv (Cold Spring Harbor Laboratory) DOI OpenAlex
  • Mechanistic insights into the pathogenesis and therapeutic recalcitrance of Staphylococcus aureus osteomyelitis (2026)
    Clinical Microbiology Reviews 5 citations DOI OpenAlex
  • Deletion of the scavenger receptor Scarb1 in osteoblast progenitors and myeloid cells does not affect bone mass (2025)
    PLoS ONE DOI OpenAlex
  • The Aging Landscape by scRNAseq of Mesenchymal Lineage Cells in Mouse Bone (2025)
    Aging Cell 6 citations DOI OpenAlex
  • Mechanisms of mitochondrial reactive oxygen species action in bone mesenchymal cells (2025)
    Journal of Biological Chemistry 8 citations DOI OpenAlex
  • Potent suppression of bone remodeling by denosumab does not blunt the anabolic response to romosozumab in mice (2025)
    Bone 5 citations DOI OpenAlex
  • Mechanisms of mitochondrial reactive oxygen species action in bone mesenchymal cells (2025)
    bioRxiv (Cold Spring Harbor Laboratory) DOI OpenAlex

View all publications on OpenAlex →

Federal Grants 5 $2,988,579 total

VA Contact PI Apr 2026 - Mar 2030

Mechanisms Responsible for Bone Loss in Osteomyelitis

Administered by Central Arkansas Veterans Healthcare System I01
NIH Co-PI Apr 2021 - Dec 2026

Different consequences of cellular aging in cortical versus cancellous bone- Resubmission

National Institute on Aging $375,899 R01
NIH Contact PI Feb 2018 - Jan 2028

Center for Musculoskeletal Disease Research (CMDR)

National Institute of General Medical Sciences $2,295,000 P20
VA Contact PI Apr 2009 - Jun 2023

Molecular mechanisms of glucocorticoid-induced bone loss

Administered by Central Arkansas Veterans Healthcare System I01
NIH Contact PI Sep 2003 - Mar 2027

Osteocyte Control of Bone Remodeling

National Institute of Arthritis and Musculoskeletal and Skin Diseases $317,680 R01

Grants & Funding

As listed on this researcher's institutional profile. Federal awards with verified records are shown above.

  • Center for Musculoskeletal Disease Research (COBRE) NIH/Nat. Inst. of General Medical Sciences Principal Investigator
  • In Vivo Regulation of IL6 and IL6R Gene Expression NIH/Nat. Inst. of Arthritis & Musculoskeletal & Skin Diseases Principal Investigator
  • ABI C. OBrien NIH COBRE FY26 Y4 State of Arkansas Principal Investigator
  • RANKL and Lymphocyte Mediated Bone Loss Veterans Administration Principal Investigator
  • Center for Studies of Host Response to Cancer Therapy NIH Co-Investigator
  • IN VIVO REGULATION OF IL6 AND IL6R GENE EXPRESSION NIH Principal Investigator
  • Molecular and Cellular Mechanisms of Osteoporosis NIH Co-Investigator
  • A Transgenic Rat for Noninvasive Assessment of Chondrogenic Activity in vivo NIH Co-Investigator

Collaboration Network

236 Collaborators 60 Institutions 13 Countries

Top Collaborators

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