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Published on: November 10, 2021
Tipping the balance from angiogenesis to fibrosis in CKD
Barbara J Ballermann1, Marya Obeidat1
1Department of Medicine, University of Alberta , Edmonton, Alberta, Canada.
Insights
Chronic kidney disease (CKD) causes progressive renal fibrosis and loss of kidney capillaries. Understanding failed blood vessel growth (angiogenesis) in CKD is key to developing new therapies.
Area of Science:
- Nephrology
- Vascular Biology
- Pathophysiology of Chronic Kidney Disease
Background:
- Chronic progressive renal fibrosis is a major cause of end-stage renal failure in chronic kidney disease (CKD).
- Loss of the peritubular capillary network is a hallmark of CKD, irrespective of the underlying cause.
- Mechanisms driving capillary regression include reduced glomerular perfusion and diminished survival signals for endothelial cells.
Approach:
- Investigated factors contributing to peritubular capillary regression in CKD.
- Examined the role of glomerular sclerosis, tubular injury, and inflammation in endothelial cell survival.
- Analyzed the impact of pericyte dissociation and direct inflammatory injury on capillary integrity.
Key Points:
- Reduced glomerular perfusion and impaired survival signals from damaged kidney cells contribute to capillary loss.
- Inflammation and pericyte dissociation further compromise endothelial cell survival and capillary integrity.
- Chronic hypoxia in CKD favors fibrogenesis over the necessary pro-angiogenic response.
Conclusions:
- Therapeutic strategies for CKD should focus on understanding and overcoming failed angiogenesis.
- Harnessing endothelial cell survival and pro-angiogenic mechanisms offers a promising avenue for reducing CKD burden.
Abstract:
Chronic progressive renal fibrosis leads to end-stage renal failure many patients with chronic kidney disease (CKD). Loss of the rich peritubular capillary network is a prominent feature, and seems independent of the specific underlying disease. The mechanisms that contribute to peritubular capillary regression include the loss of glomerular perfusion, as flow-dependent shear forces are required to provide the survival signal for endothelial cells. Also, reduced endothelial cell survival signals from sclerotic glomeruli and atrophic or injured tubule epithelial cells contribute to peritubular capillary regression. In response to direct tubular epithelial cell injury, and the inflammatory reaction that ensues, capillary pericytes dissociate from their blood vessels, also reducing endothelial cell survival. In addition, direct inflammatory injury of capillary endothelial cells, for instance in chronic allograft nephropathy, also contributes to capillary dropout. Chronic tissue hypoxia, which ensues from the rarefaction of the peritubular capillary network, can generate both an angiogenic and a fibrogenic response. However, in CKD, the balance is strongly tipped toward fibrogenesis. Understanding the underlying mechanisms for failed angiogenesis in CKD and harnessing endothelial-specific survival and pro-angiogenic mechanisms for therapy should be our goal if we are to reduce the disease burden from CKD.
Related Concept Videos
Chronic Kidney Disease I: Introduction
Acute Kidney Injury II: Pathophysiology
Chronic Kidney Disease III: Interprofessional Care
Regulation of Angiogenesis and Blood Supply
Chronic Kidney Disease II: Clinical Manifestations
Acute Kidney Injury IV: Diagnostic Studies and Prevention

