Biography and Research Information
OverviewAI-generated summary
Lance Benson's research focuses on understanding the mechanisms underlying chronic hypertension, particularly the role of immune cells and cellular processes in disease progression. His recent publications investigate how resident memory CD8+ T cells contribute to the persistence of hypertension and how cytokine-mediated macrophage transitions promote cardiac fibrosis in chronic hypertension. Benson has authored two publications to date, collaborating with Madison Clements on one of these works.
Metrics
- h-index: 5
- Publications: 30
- Citations: 119
Positions
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Postdoctoral Trainee 2023–presentUniversity of Alabama at Birmingham Nephrology ORCID
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Postdoctoral Trainee publications 2026University of Arkansas for Medical Sciences ORCID
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Graduate Student 2019–2023University of Arkansas for Medical Sciences Pharmacology and Toxicology ORCID
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Clinical Laboratory Specialist/ Medical Technician 2018–2019Unity Health: Harris Medical Center ORCID
Selected Publications
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Kidney Resident Memory CD8+ T cells drive the immortality of hypertension (2026)
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Cytokine-mediated macrophage transition promotes early cardiac fibrosis in chronic hypertension (2026)
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Establishment of resident memory T cells anchors hypertension in the kidney (2025)
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Abstract P200: Immune memory contributes to chronic hypertension recurrence (2024)
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Abstract P335: An innate immune component in hypertension-induced cardiac dysfunction Christoph Mora, Katherine Deck, Yunmeng Liu, Lance Benson, Tonya Rafferty, & Shengyu Mu (2024)
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P227 MACROPHAGE TO MYOFIBROBLAST TRANSITION IN THE DEVELOPMENT OF DIASTOLIC DYSFUNCTION (2024)
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O14 KIDNEY RESIDENT MEMORY T CELLS MEDIATE THE CHRONIC PROGRESSION OF HYPERTENSION (2024)
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P2X7 -Mediated Antigen-Independent Activation of CD8 + T Cells Promotes Salt-Sensitive Hypertension (2024)
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Abstract P3019: During Salt-sensitive Hypertension, CD8+ T Cells Increase Renal Sodium Transporters, NKCC2 And ENaC (2023)
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The mechanism of CD8+ T cell activation in promoting salt-sensitive hypertension (2023)
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Macrophage to Myofibroblast Transition in Diastolic Dysfunction Development (2023)
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The link between immunity and hypertension in the kidney and heart (2023)
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S-40-5: ROLE OF INTERFERON GAMMA IN T CELL MEDIATED SALT-RETENTION IN THE KIDNEY AND PROGRESSION OF HYPERTENSION (2023)
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IFN-γ Contributes to the Immune Mechanisms of Hypertension (2022)
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Abstract 021: Activated Cd8 + T Cells Interact With Distal Convoluted Tubules To Promote Salt-sensitive Hypertension Through The Ifnγ-pdl1 Pathway (2022)
Collaboration Network
Top Collaborators
- Cytokine-mediated macrophage transition promotes early cardiac fibrosis in chronic hypertension
- Kidney Resident Memory CD8+ T cells drive the immortality of hypertension
- Cytokine-mediated macrophage transition promotes early cardiac fibrosis in chronic hypertension
- Kidney Resident Memory CD8+ T cells drive the immortality of hypertension
- Cytokine-mediated macrophage transition promotes early cardiac fibrosis in chronic hypertension
- Kidney Resident Memory CD8+ T cells drive the immortality of hypertension
- Cytokine-mediated macrophage transition promotes early cardiac fibrosis in chronic hypertension
- Kidney Resident Memory CD8+ T cells drive the immortality of hypertension
- Cytokine-mediated macrophage transition promotes early cardiac fibrosis in chronic hypertension
- Kidney Resident Memory CD8+ T cells drive the immortality of hypertension
- Cytokine-mediated macrophage transition promotes early cardiac fibrosis in chronic hypertension
- Kidney Resident Memory CD8+ T cells drive the immortality of hypertension
- Cytokine-mediated macrophage transition promotes early cardiac fibrosis in chronic hypertension
- Kidney Resident Memory CD8+ T cells drive the immortality of hypertension
- Cytokine-mediated macrophage transition promotes early cardiac fibrosis in chronic hypertension
- Cytokine-mediated macrophage transition promotes early cardiac fibrosis in chronic hypertension
- Kidney Resident Memory CD8+ T cells drive the immortality of hypertension
- Kidney Resident Memory CD8+ T cells drive the immortality of hypertension
- Kidney Resident Memory CD8+ T cells drive the immortality of hypertension
- Kidney Resident Memory CD8+ T cells drive the immortality of hypertension
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