Publications
210
Citations
8,718
Est. group size
—
Recurring co-author estimate
Active years
51
Publishing since 1976
David P. Basile studies acute kidney injury (AKI)—sudden loss of kidney function—and how it progresses to long-term problems like chronic kidney disease and high blood pressure. The research investigates the biological mechanisms behind kidney damage and repair, including the roles of immune cells (such as IL-17-producing cells and regulatory T cells), blood vessel-forming cells, and inflammation, and explores potential therapies like stem cell products and cell-based treatments.
Publication activity was high in the late 2010s through 2021 but has slowed noticeably in recent years, averaging about 6 per year over the last five years.
Generated by claude-opus-4-8 from public bibliographic data · Jul 9, 2026
Current awards run through March 2028 — about 2 years of funding on record from today. Awards are often renewed, so this is what is currently public, not a forecast.
Long-term effects of acute renal failure
Matched to public NIH RePORTER and NSF records by name and institution. Awards from other agencies are not shown, and a match is not always found — this list may be incomplete.
Typically publishes in teams of ~11 · 17% small-team papers (≤3 authors) · across 35 venues
- Engineering Bioactive Liposomal Nanoparticles for Kidney-Targeted ECFC Backpacks
ACS Applied Bio Materials · 2026
- The role of sex and gender in acute kidney injury—consensus statements from the 33rd Acute Disease Quality Initiative
Kidney International · 2025
- Community-acquired Pneumonia in Children
Emergency Medicine Clinics of North America · 2025
- Store-Operated Calcium-Channel Inhibitor Auxora Improves Kidney Function Following Ischemia-Induced AKI in Rats
Journal of the American Society of Nephrology · 2025
- Simulated Heat Wave Promotes Increased Kidney Interstitial Inflammation and Tissue Damage in Aged Male Wistar Rats
Journal of the American Society of Nephrology · 2025
- Activation of IL-17 Expressing Cells Following AKI Contributes to Sodium-Sensitive Hypertension, Development of Tertiary Lymphoid Structures, and Increased Angiotensin II (Ang II) Constriction
Journal of the American Society of Nephrology · 2025
- Subcutaneous injection of adipose stromal cell-secretome improves renal function and reduces inflammation in established acute kidney injury
Stem Cell Research & Therapy · 2024
- ST2+ T-Regulatory Cells as a Potential Immunotherapy Target for Kidney Fibrosis
Journal of the American Society of Nephrology · 2024
- IL-17A Levels and Progression of Kidney Disease Following Hospitalization with and without Acute Kidney Injury
Kidney360 · 2024
- Sulfotransferase 1C2 Increases Mitochondrial Respiration by Converting Mitochondrial Membrane Cholesterol to Cholesterol Sulfate
Biochemistry · 2024
- Trauma of Origin: The Impact of Maternal AKI on Progeny
Journal of the American Society of Nephrology · 2024
- Role of Sulfotransferase 1C2 in Vitamin D Signaling in Ischemic AKI Associated with Vitamin D Deficiency in Rats
Journal of the American Society of Nephrology · 2024
- ABCG2-Expressing Clonal Repopulating Endothelial Cells Serve to Form and Maintain Blood Vessels
Circulation · 2024
- Impaired hemodynamic renal reserve response following recovery from established acute kidney injury and improvement by hydrodynamic isotonic fluid delivery
American Journal of Physiology-Renal Physiology · 2023
- Greater renal interstitial expansion and inflammation in older male versus older female rats following a four-day simulated heatwave
Physiology · 2023
- Journal of the American Society of Nephrology×17
- American Journal of Physiology-Renal Physiology×6
- PMC×4
- Kidney International×2
- Journal of Clinical Investigation×2
- Pierre C. Dagher
Medicine · Indiana University
- Danielle Janosevic
Medicine · Indiana University
- Chun-Yi Wu
Medicine · University of Michigan
- Danielle E. Soranno
Medicine · Indiana University
- Michael Heung
Medicine · University of Michigan
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Sep 1, 2026.
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