Match tier Confirmed
Presence Current · Arkansas
Last published 2024
Sources OpenAlex · ORCID
Refreshed 2026-10-05

Jeffrey L. Osborn

Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.

Vice President of Research and Professor

Also affiliated: University of Southern California (1990); University of Iowa (1981–1983); University of Kentucky (2006–2022); Medical College of Wisconsin (1984–2001); Dow Chemical (United States) (1976); Iowa City VA Medical Center (1981–1983); Michigan State University (1976–2019)

24 h-index 142 pubs 3,023 cited

  • Animals
  • Kidney
  • Male
  • Blood Pressure
  • Female
  • Dogs
  • Renin
  • Hypertension
  • Rats
  • Sympathetic Nervous System
  • Sodium
  • Renal Circulation
  • Natriuresis
  • Angiotensin II
  • Humans

Biography and Research Information

OverviewAI-generated summary

Jeffrey L. Osborn's research focuses on understanding the mechanisms of hypertension and renal function, particularly in animal models. His work has investigated the role of the sympathetic nervous system and various receptors in regulating blood pressure and kidney function. This includes studies on the antinatriuretic and renin secretion responses to renal nerve stimulation in dogs, examining the mediation of these responses by adrenoceptors and beta-1 receptors.

Osborn has also published on the long-term consequences of renal ischemic injury, demonstrating permanent damage to peritubular capillaries and its influence on kidney function. His research includes the development and utilization of animal models for studying hypertension, contributing to a broader understanding of cardiovascular health. His scholarship metrics include an h-index of 24, with 145 total publications and over 3,100 citations.

Metrics

  • h-index: 24
  • Publications: 142
  • Citations: 3,023

Positions

  • Vice President of Research and Professor 2022–present
    Arkansas Colleges of Health Education Pathophysiology ORCID

Selected Publications

  • Human soluble prorenin receptor expressed in mouse renal collecting duct shows sex-specific effect on cardiorenal function (2024)
    American Journal of Physiology-Renal Physiology 4 citations DOI OpenAlex
  • Renal-Derived Human sPRR Does Not Increase Blood Pressure in High Fat Diet Mice (2024)
    bioRxiv (Cold Spring Harbor Laboratory) DOI OpenAlex
  • Expression of human sPRR in renal collecting duct cells increases blood pressure in female mice independently of its circulating levels (2023)
    Physiology DOI OpenAlex

View all publications on OpenAlex →

Collaboration Network

9 Collaborators 2 Institutions 1 Country

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