Carol Morris
Researcher
University of Arkansas for Medical Sciences
faculty
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Biography and Research Information
OverviewAI-generated summary
Carol Morris's research focuses on the role of myeloid cells in ischemic retinopathies and related inflammatory responses. Her work investigates pathways such as the arginase 1/ornithine decarboxylase pathway and its interaction with HDAC3 to suppress inflammation and ameliorate retinal ischemic injury. She has also published on the deletion of myeloid HDAC3 as a means to promote efferocytosis and improve outcomes in retinal ischemic injury.
Further research areas include the development and study of animal models, specifically for multiple myeloma bone disease. Morris has also contributed to the development of protocols for characterizing myeloid cells in research settings, such as through multi-color flow cytometry. Her work extends to clinical trial surveys, including investigating the zone of equipoise for randomized controlled trials in orthopedic oncology, and proteomic analysis of aqueous humor to understand disease pathophysiology.
Morris holds a high-impact researcher designation, evidenced by her h-index of 25 and over 2,000 citations across 80 publications. She collaborates extensively with researchers at the University of Arkansas for Medical Sciences, including Abdelrahman Y. Fouda, Esraa Shosha, Rami Ahmad Shahror, and Nancy Rusch, with whom she has co-authored multiple publications.
Metrics
- h-index: 25
- Publications: 80
- Citations: 2,027
Selected Publications
- HDAC3 mediates retinal endothelial cell metabolic reprogramming and angiogenesis (2025) DOI
- The role of efferocytosis in ischemic stroke and insights from retinopathy (2025) DOI
- Disrupting the CD47/SIRPα Axis Protects Against Traumatic Optic Neuropathy (2025) DOI
- Disrupting the CD47/SIRPα Axis as a Novel and Translational Therapy for Stroke (Abstract ID: 161422) (2025) DOI
- Proteomic Analysis of Aqueous Humor in Central Retinal Artery Occlusion: Unveiling Novel Insights Into Disease Pathophysiology (2024) DOI
- Deletion of myeloid HDAC3 promotes efferocytosis to ameliorate retinal ischemic injury (2024) DOI
- Role of myeloid cells in ischemic retinopathies: recent advances and unanswered questions (2024) DOI
- The arginase 1/ornithine decarboxylase pathway suppresses HDAC3 to ameliorate the myeloid cell inflammatory response: implications for retinal ischemic injury (2023) DOI
- Multi-color Flow Cytometry Protocol to Characterize Myeloid Cells in Mouse Retina Research (2023) DOI
- Herbal Extracts from Lycii Radicis Corex and Achyranthes japonica Prevent Multiple Myeloma (2021) DOI
- An Improved Animal Model of Multiple Myeloma Bone Disease (2021) DOI
- Animal Models of Multiple Myeloma Bone Disease (2021) DOI
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