Stephen Shrum
Researcher
Also affiliated: Conway School of Landscape Design (2015)
Faculty Researcher
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Stephen Shrum's research focuses on the protective effects of tocotrienols across multiple organ systems. His work investigates how these compounds function through both antioxidant mechanisms and by influencing signaling pathways to mitigate damage, particularly in the context of radiation exposure. Shrum is also involved in studies related to cryopreservation and its implications for organ transplantation, with a specific interest in kidney function. His research utilizes rat models and examines cellular components like mitochondria and their associated proteins. Shrum has a publication record of nine papers and has accumulated 98 citations, with an h-index of 6. He has collaborated with researchers at the University of Arkansas for Medical Sciences and the University of Arkansas at Fayetteville.
Metrics
- h-index: 6
- Publications: 9
- Citations: 109
Selected Publications
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Tocotrienols Provide Radioprotection to Multiple Organ Systems through Complementary Mechanisms of Antioxidant and Signaling Effects (2023)
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The BK activator NS11021 partially protects rat kidneys from cold storage and transplantation-induced mitochondrial and renal injury (2020)
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Specific BK Channel Activator NS11021 Protects Rat Renal Proximal Tubular Cells from Cold Storage—Induced Mitochondrial Injury In Vitro (2019)
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The first direct activity assay for the mitochondrial protease OMA1 (2019)
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MitoBK Channels as a Therapeutic Target in Renal Cold Storage and Transplantation (2018)
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Role of MitoBK Channels in Renal Cold Preservation (2017)
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Renal cold storage followed by transplantation impairs expression of key mitochondrial fission and fusion proteins (2017)
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Determining the Role of <i>neurogenin1</i> in the Development of the Mouse Dorsal Root Ganglion (2015)
Collaboration Network
Top Collaborators
- Tocotrienols Provide Radioprotection to Multiple Organ Systems through Complementary Mechanisms of Antioxidant and Signaling Effects
- Tocotrienols Provide Radioprotection to Multiple Organ Systems through Complementary Mechanisms of Antioxidant and Signaling Effects
- Tocotrienols Provide Radioprotection to Multiple Organ Systems through Complementary Mechanisms of Antioxidant and Signaling Effects
- Tocotrienols Provide Radioprotection to Multiple Organ Systems through Complementary Mechanisms of Antioxidant and Signaling Effects
- Tocotrienols Provide Radioprotection to Multiple Organ Systems through Complementary Mechanisms of Antioxidant and Signaling Effects
- Tocotrienols Provide Radioprotection to Multiple Organ Systems through Complementary Mechanisms of Antioxidant and Signaling Effects
- Tocotrienols Provide Radioprotection to Multiple Organ Systems through Complementary Mechanisms of Antioxidant and Signaling Effects
- Tocotrienols Provide Radioprotection to Multiple Organ Systems through Complementary Mechanisms of Antioxidant and Signaling Effects
- Tocotrienols Provide Radioprotection to Multiple Organ Systems through Complementary Mechanisms of Antioxidant and Signaling Effects
- Tocotrienols Provide Radioprotection to Multiple Organ Systems through Complementary Mechanisms of Antioxidant and Signaling Effects
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