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Published on: November 10, 2021
Pro- and anti-fibrotic effects of vascular endothelial growth factor in chronic kidney diseases
Changxiu Miao1, Xiaoyu Zhu1, Xuejiao Wei1
1Department of Nephrology, The First Hospital of Jilin University, Changchun, People's Republic of China.
Abstract:
Renal fibrosis is the inevitable common end-point of all progressive chronic kidney diseases. The underlying mechanisms of renal fibrosis are complex, and currently there is no effective therapy against renal fibrosis. Renal microvascular rarefaction contributes to the progression of renal fibrosis; however, an imbalance between proangiogenic and antiangiogenic factors leads to the loss of renal microvasculature. Vascular endothelial growth factor (VEGF) is the most important pro-angiogenic factor. Recent studies have unraveled the involvement of VEGF in the regulation of renal microvascular rarefaction and fibrosis via various mechanisms; however, it is not clear whether it has anti-fibrotic or pro-fibrotic effect. This paper reviews the available evidence pertaining to the function of VEGF in the fibrotic process and explores the associated underlying mechanisms. Our synthesis will help identify the future research priorities for developing specialized treatments for alleviating or preventing renal fibrosis. Abbreviation: VEGF: vascular endothelial growth factor; CKD: chronic kidney disease; ESKD: end-stage kidney disease; ER: endoplasmic reticulum; VEGFR: vascular endothelial growth factor receptor; AKI: acute kidney injury; EMT: epithelial-to-mesenchymal transition; HIF: hypoxia-inducible factor; α-SMA: α smooth muscle actin; UUO: unilateral ureteral obstruction; TGF-β: transforming growth factor-β; PMT: pericyte-myofibroblast transition; NO: nitric oxide; NOS: nitric oxide synthase; nNOS: neuronal nitric oxide synthase; iNOS: inducible nitric oxide synthase; eNOS: endothelial nitric oxide synthase; sGC: soluble guanylate cyclase; PKG: soluble guanylate cyclase dependent protein kinases; UP R: unfolded protein response.
Insights
Vascular endothelial growth factor (VEGF) plays a complex role in kidney fibrosis, potentially acting as both a pro-fibrotic and anti-fibrotic factor. Understanding its dual function is crucial for developing new therapies for chronic kidney diseases.
Area of Science:
- Nephrology
- Angiogenesis Research
- Fibrosis Mechanisms
Background:
- Renal fibrosis is a common outcome in progressive chronic kidney diseases (CKD), lacking effective treatments.
- Renal microvascular rarefaction, driven by an imbalance of angiogenic factors, exacerbates fibrosis.
- Vascular endothelial growth factor (VEGF) is a key pro-angiogenic factor implicated in renal microvascular changes and fibrosis.
Purpose of the Study:
- To review existing evidence on the role of VEGF in renal fibrosis.
- To explore the mechanisms by which VEGF influences the fibrotic process.
- To identify research priorities for novel anti-fibrotic therapies.
Main Methods:
- Literature review of studies investigating VEGF in renal fibrosis.
- Synthesis of evidence on VEGF's pro- and anti-fibrotic effects.
- Analysis of underlying molecular mechanisms.
Main Results:
- VEGF's involvement in renal microvascular rarefaction and fibrosis is complex and multifaceted.
- Evidence suggests VEGF can exert both pro-fibrotic and anti-fibrotic effects in the kidney.
- Mechanisms include regulation of angiogenesis, inflammation, and cellular processes like epithelial-to-mesenchymal transition.
Conclusions:
- The precise role of VEGF in renal fibrosis remains unclear, necessitating further investigation.
- Clarifying VEGF's dual function is essential for targeted therapeutic strategies against kidney fibrosis.
- Future research should focus on dissecting VEGF-mediated pathways to develop effective treatments for CKD progression.
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