Izzeldin Y. Ahmed
Cultural Programming Coordinator
Also affiliated: Arkansas Biosciences Institute (2022)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Izzeldin Y. Ahmed's research focuses on investigating plant-derived compounds and their potential applications, as well as exploring mechanisms related to muscle regeneration and exercise physiology. Recent work includes the induction, separation, and purification of prenylated stilbenoids from peanut hairy root cultures. Ahmed has also published on the metabolism of specific compounds in liver microsomes, examining differences between mouse and human models.
Further research activities involve studying sex differences in recovery from volumetric muscle loss, utilizing regenerative medicine and high-intensity exercise. This includes analyzing the modulation of inflammatory gene expression, myogenesis, and extracellular matrix remodeling following muscle repair. Studies also explore the effects of leucine supplementation on myogenic and inflammatory genes in aged mice and the impact of different exercise intensities on minced muscle repair.
Metrics
- h-index: 2
- Publications: 10
- Citations: 20
Positions
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Cultural Programming Coordinator publications 2025–2026University of Arkansas at Fayetteville Institution web page
Selected Publications
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Sex Differences Influence Recovery Following Volumetric Muscle Loss Using Regenerative Medicine And High-Intensity Exercise (2026)
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Biological Sex Modulates Inflammatory Gene Expression After Minced Muscle Repair And High Intensity Exercise Following Vml (2026)
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Combined High-Intensity Exercise and Autologous Muscle Grafting Differentially Modulate Myogenesis and Extracellular Matrix Remodeling by Sex in VML-Injured Muscle (2026)
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Exercise Intensities Modulates Inflammatory Gene Expression to Minced Muscle Repair Following Volumetric Muscle Loss (2026)
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Aerobic Exercise Training Does Not Attenuate Fibrosis In Autologous Repaired Vml-injured Skeletal Muscle (2025)
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The effect of leucine supplementation on extracellular matrix remodeling in aged male mice at the onset of muscle regeneration (2025)
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Induction of the Prenylated Stilbenoids Arachidin-1 and Arachidin-3 and Their Semi-Preparative Separation and Purification from Hairy Root Cultures of Peanut (Arachis hypogaea L.) (2022)
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Similar 5F-APINACA Metabolism between CD-1 Mouse and Human Liver Microsomes Involves Different P450 Cytochromes (2022)
Collaboration Network
Top Collaborators
- The effect of leucine supplementation on extracellular matrix remodeling in aged male mice at the onset of muscle regeneration
- Aerobic Exercise Training Does Not Attenuate Fibrosis In Autologous Repaired Vml-injured Skeletal Muscle
- Exercise Intensities Modulates Inflammatory Gene Expression to Minced Muscle Repair Following Volumetric Muscle Loss
- Combined High-Intensity Exercise and Autologous Muscle Grafting Differentially Modulate Myogenesis and Extracellular Matrix Remodeling by Sex in VML-Injured Muscle
- Biological Sex Modulates Inflammatory Gene Expression After Minced Muscle Repair And High Intensity Exercise Following Vml
Showing 5 of 6 shared publications
- The effect of leucine supplementation on extracellular matrix remodeling in aged male mice at the onset of muscle regeneration
- Aerobic Exercise Training Does Not Attenuate Fibrosis In Autologous Repaired Vml-injured Skeletal Muscle
- The effect of leucine supplementation on extracellular matrix remodeling in aged male mice at the onset of muscle regeneration
- Aerobic Exercise Training Does Not Attenuate Fibrosis In Autologous Repaired Vml-injured Skeletal Muscle
- Exercise Intensities Modulates Inflammatory Gene Expression to Minced Muscle Repair Following Volumetric Muscle Loss
- Biological Sex Modulates Inflammatory Gene Expression After Minced Muscle Repair And High Intensity Exercise Following Vml
- Exercise Intensities Modulates Inflammatory Gene Expression to Minced Muscle Repair Following Volumetric Muscle Loss
- Combined High-Intensity Exercise and Autologous Muscle Grafting Differentially Modulate Myogenesis and Extracellular Matrix Remodeling by Sex in VML-Injured Muscle
- Exercise Intensities Modulates Inflammatory Gene Expression to Minced Muscle Repair Following Volumetric Muscle Loss
- Combined High-Intensity Exercise and Autologous Muscle Grafting Differentially Modulate Myogenesis and Extracellular Matrix Remodeling by Sex in VML-Injured Muscle
- Exercise Intensities Modulates Inflammatory Gene Expression to Minced Muscle Repair Following Volumetric Muscle Loss
- Combined High-Intensity Exercise and Autologous Muscle Grafting Differentially Modulate Myogenesis and Extracellular Matrix Remodeling by Sex in VML-Injured Muscle
- Exercise Intensities Modulates Inflammatory Gene Expression to Minced Muscle Repair Following Volumetric Muscle Loss
- Combined High-Intensity Exercise and Autologous Muscle Grafting Differentially Modulate Myogenesis and Extracellular Matrix Remodeling by Sex in VML-Injured Muscle
- Biological Sex Modulates Inflammatory Gene Expression After Minced Muscle Repair And High Intensity Exercise Following Vml
- Sex Differences Influence Recovery Following Volumetric Muscle Loss Using Regenerative Medicine And High-Intensity Exercise
- Biological Sex Modulates Inflammatory Gene Expression After Minced Muscle Repair And High Intensity Exercise Following Vml
- Sex Differences Influence Recovery Following Volumetric Muscle Loss Using Regenerative Medicine And High-Intensity Exercise
- Biological Sex Modulates Inflammatory Gene Expression After Minced Muscle Repair And High Intensity Exercise Following Vml
- Sex Differences Influence Recovery Following Volumetric Muscle Loss Using Regenerative Medicine And High-Intensity Exercise
- Similar 5F-APINACA Metabolism between CD-1 Mouse and Human Liver Microsomes Involves Different P450 Cytochromes
- Similar 5F-APINACA Metabolism between CD-1 Mouse and Human Liver Microsomes Involves Different P450 Cytochromes
- Similar 5F-APINACA Metabolism between CD-1 Mouse and Human Liver Microsomes Involves Different P450 Cytochromes
- Similar 5F-APINACA Metabolism between CD-1 Mouse and Human Liver Microsomes Involves Different P450 Cytochromes
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