Match tier Listed
Presence Current · Arkansas
Last published 2025
Sources OpenAlex · ORCID
Refreshed 2026-10-05

Abdul H. Khan

High Impact

Associate Staff Scientist

Also affiliated: Tulane University (2008–2011); Bahauddin Zakariya University (2008–2009); Froedtert Hospital (2016–2020); United States Department of Veterans Affairs (1981–1985); Ochsner Health System (2013); Universiti Sains Malaysia (2007–2010); University of South Carolina (1981–1984); Islamia University of Bahawalpur (2017); Bangladesh Medical University (2025); Czech Academy of Sciences (2013); University of California, Irvine (2007); Medical College of Wisconsin (1985–2024); Columbia University Irving Medical Center (2010); Ochsner Medical Center (2010); Veterans Health Administration (1985); Tulane Medical Center (2010); Wm. Jennings Bryan Dorn VA Medical Center (1982); Chase Farm Hospital (2011); Henry Ford Hospital (2013); Columbia VA Health Care System (1982); Milwaukee VA Medical Center (2012–2014); Mayo Clinic Health System (2021); Czech Academy of Sciences, Institute of Physiology (2013); Medical College of Wisconsin Cancer Center (2021); Albany Medical College (1994); Case Western Reserve University (2013); University of Missouri (2024); The University of Texas Southwestern Medical Center (2013); American University of Antigua (2025); University of Colorado Denver (2010); Dhaka Medical College and Hospital (2024)

31 h-index 187 pubs 3,202 cited

  • Male
  • Animals
  • Rats
  • Kidney
  • Humans
  • Female
  • Blood Pressure
  • Hypertension
  • Rats, Sprague-Dawley
  • Renal Circulation
  • Middle Aged
  • Aged
  • Disease Models, Animal
  • Hemodynamics
  • Mice

Biography and Research Information

OverviewAI-generated summary

Dr. Abdul H. Khan's research focuses on preclinical drug development, with a particular emphasis on integrative physiology, pharmacology, and in vivo preclinical and translational research. His work investigates therapeutic strategies for cardiovascular and renal diseases, as well as anti-fibrotic drug development. Recent studies have explored the potential of specific molecules, such as the kidney-targeted epoxyeicosatrienoic acid analog EET-F01, to reduce inflammation and oxidative stress in cases of cisplatin-induced nephrotoxicity. He has also examined the impact of chloride channel 6 (CLC-6) loss on vascular smooth muscle contractility and arterial stiffness, and investigated the efficacy of the multitarget molecule PTUPB in treating diabetic nephropathy in rats.

Further research by Dr. Khan and his collaborators has delved into the effects of environmental factors on health, including the reproductive toxicity of polystyrene microplastics in male mice. His group has also studied sex differences in kidney injury following unilateral ureteral obstruction in mice, and the therapeutic potential of dual soluble epoxide hydrolase inhibitor–farnesoid X receptor agonist treatments for renal inflammation and fibrosis. Dr. Khan has authored or co-authored 193 publications, with a Google Scholar H-index of 31, and has received recognition as a highly cited researcher. He also leads a research group and has a background in biomedical education and clinical research.

Metrics

  • h-index: 31
  • Publications: 187
  • Citations: 3,202

Positions

  • Associate Staff Scientist 2024–present
    University of Arkansas for Medical Sciences Pharmaceutical Sciences ORCID
  • Assistant Professor 2023–2024
    University of Missouri Physiology, Pharmacology, Anesthesiology ORCID
  • Instructor 2022–2023
    University of Tennessee Health Science Center Physiology ORCID
  • Assistant Professor 2014–2021
    Medical College of Wisconsin Pharmacology and Toxicology ORCID

Selected Publications

  • Sorafenib Treatment Results in Greater Kidney Injury in Renal Hypoplasia Mice (Abstract ID: 272359) (2026)
    Journal of Pharmacology and Experimental Therapeutics DOI OpenAlex
  • Renal hemodynamics underlie hepatorenal physiology in bile duct-ligated rats (2026)
    Clinical Science 1 citation DOI OpenAlex
  • Renoprotective approaches against anthracycline nephrotoxicity (2026)
    Biochemical Pharmacology 2 citations DOI OpenAlex
  • EET-Based Therapeutics Mitigate Sorafenib-Associated Glomerular Cell Damage (2025)
    Biomolecules DOI OpenAlex
  • Dual acting inhibitor of soluble epoxide hydrolase and Cyclooxygenase-2, attenuates glomerular injury in renal hypoplasia mice (2025)
    European Journal of Pharmacology 2 citations DOI OpenAlex
  • Transforming growth factor β receptor 1 and mitogen-activated protein 4 kinase 4 dual inhibitor, TK-850, reduces renal fibrosis in unilateral ureteral–obstructed mice (2025)
    Journal of Pharmacology and Experimental Therapeutics DOI OpenAlex
  • 591 Low kidney mass contributes to enhanced fractionated irradiation-induced renal hemodynamic dysfunction in mice (2025)
    Journal of Clinical and Translational Science DOI OpenAlex
  • Editorial: Debates in experimental pharmacology and drug discovery 2023: innovative approaches to chronic kidney disease drug discovery, identification of targets and safety assessment (2025)
    Frontiers in Pharmacology 1 citation DOI OpenAlex

View all publications on OpenAlex →

Collaboration Network

34 Collaborators 11 Institutions 3 Countries

Top Collaborators

View profile →
View profile →
View profile →
View profile →

Similar Researchers

Based on overlapping research topics