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Kylie Heitman

Showing results (1-10 of 9) with videos related to

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International Journal of Molecular Sciences|May 25, 2024
Skeletal Muscle Injury in Chronic Kidney Disease-From Histologic Changes to Molecular Mechanisms and to Novel TherapiesKylie Heitman, Matthew S Alexander, Christian Faul
The Journal of Physiology|September 29, 2025
Soft tissue accumulations of phosphate are not always associated with serum phosphate or with calcifications in mouse models of hyperphosphatemiaAbul Fajol, Kylie Heitman, S Madison Thomas, et al.
Scientific Reports|March 25, 2023
Phosphate induces inflammation and exacerbates injury from cigarette smoke in the bronchial epitheliumSeth Bollenbecker, Kylie Heitman, Brian Czaya, et al.
Elife|March 18, 2022
Hyperphosphatemia increases inflammation to exacerbate anemia and skeletal muscle wasting independently of FGF23-FGFR4 signalingBrian Czaya, Kylie Heitman, Isaac Campos, et al.
International Journal of Molecular Sciences|September 14, 2024
Hyperphosphatemia Contributes to Skeletal Muscle Atrophy in MiceKylie Heitman, Seth Bollenbecker, Jordan Bradley, et al.
Nephrology, Dialysis, Transplantation : Official Publication of the European Dialysis and Transplant Association - European Renal Association|December 22, 2025
Nephrotic syndrome in mice elevates FGF23 levels and leads to cardiac hypertrophy in the absence of hyperphosphatemiaAbul Fajol, Qing Li, S Madison Thomas, et al.
Scientific Reports|May 5, 2022
FGF21-FGFR4 signaling in cardiac myocytes promotes concentric cardiac hypertrophy in mouse models of diabetesChristopher Yanucil, Dominik Kentrup, Xueyi Li, et al.
Journal of the American Society of Nephrology : JASN|January 21, 2026
Systemic Phosphate Elevations Induce FGF23 Production in Skeletal Muscle to Reduce Renal Phosphate Reabsorption in MiceKylie Heitman, Qing Li, Abul Fajol, et al.
Kidney International|May 5, 2022
Soluble α-klotho and heparin modulate the pathologic cardiac actions of fibroblast growth factor 23 in chronic kidney diseaseChristopher Yanucil, Dominik Kentrup, Isaac Campos, et al.
Pageof 1

Showing results (1-10 of 9) with videos related to

Sort By:
Pageof 1
International Journal of Molecular Sciences|May 25, 2024
Skeletal Muscle Injury in Chronic Kidney Disease-From Histologic Changes to Molecular Mechanisms and to Novel TherapiesKylie Heitman, Matthew S Alexander, Christian Faul
The Journal of Physiology|September 29, 2025
Soft tissue accumulations of phosphate are not always associated with serum phosphate or with calcifications in mouse models of hyperphosphatemiaAbul Fajol, Kylie Heitman, S Madison Thomas, et al.
Scientific Reports|March 25, 2023
Phosphate induces inflammation and exacerbates injury from cigarette smoke in the bronchial epitheliumSeth Bollenbecker, Kylie Heitman, Brian Czaya, et al.
Elife|March 18, 2022
Hyperphosphatemia increases inflammation to exacerbate anemia and skeletal muscle wasting independently of FGF23-FGFR4 signalingBrian Czaya, Kylie Heitman, Isaac Campos, et al.
International Journal of Molecular Sciences|September 14, 2024
Hyperphosphatemia Contributes to Skeletal Muscle Atrophy in MiceKylie Heitman, Seth Bollenbecker, Jordan Bradley, et al.
Nephrology, Dialysis, Transplantation : Official Publication of the European Dialysis and Transplant Association - European Renal Association|December 22, 2025
Nephrotic syndrome in mice elevates FGF23 levels and leads to cardiac hypertrophy in the absence of hyperphosphatemiaAbul Fajol, Qing Li, S Madison Thomas, et al.
Scientific Reports|May 5, 2022
FGF21-FGFR4 signaling in cardiac myocytes promotes concentric cardiac hypertrophy in mouse models of diabetesChristopher Yanucil, Dominik Kentrup, Xueyi Li, et al.
Journal of the American Society of Nephrology : JASN|January 21, 2026
Systemic Phosphate Elevations Induce FGF23 Production in Skeletal Muscle to Reduce Renal Phosphate Reabsorption in MiceKylie Heitman, Qing Li, Abul Fajol, et al.
Kidney International|May 5, 2022
Soluble α-klotho and heparin modulate the pathologic cardiac actions of fibroblast growth factor 23 in chronic kidney diseaseChristopher Yanucil, Dominik Kentrup, Isaac Campos, et al.
Pageof 1