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Glomerular disturbances in preeclampsia: disruption between glomerular endothelium and podocyte symbiosis
Daniel E Henao1, Moin A Saleem, Angela P Cadavid
1Grupo Reproducción, Universidad de Antioquia, Colombia. dhenao@medicina.udea.edu.co
Insights
Preeclampsia involves damage to glomerular endothelium and podocytes, disrupting their symbiosis. VEGF deficiency contributes to this, and its supplementation shows promise for treating preeclampsia symptoms.
Area of Science:
- Nephrology
- Obstetrics
- Pathology
Background:
- Preeclampsia is a leading cause of glomerular disease globally.
- Glomerular endotheliosis is a hallmark of preeclampsia, but also present in non-proteinuric hypertension.
- Recent research links podocyte alterations to preeclampsia.
Purpose of the Study:
- To integrate the roles of glomerular endothelium and podocyte alterations in preeclampsia.
- To propose a holistic view of renal disease in preeclampsia, linking antiangiogenic proteins to endothelial and podocyte damage.
- To explore the disruption of symbiosis between glomerular endothelium and podocytes in preeclampsia.
Main Methods:
- Reviewing existing evidence on glomerular endothelium and podocyte alterations in preeclampsia.
- Analyzing the impact of vascular endothelial growth factor (VEGF) alterations by podocytes on endothelium.
- Investigating the effect of endothelin-1 production by endothelium on podocyte damage.
Main Results:
- VEGF deficiency in glomeruli disrupts podocyte and glomerular endothelium symbiosis in preeclampsia.
- Antiangiogenic proteins affect vascular endothelium, leading to hypertension.
- These proteins also impact glomerular endothelium and podocytes, causing renal lesions and proteinuria.
Conclusions:
- VEGF deficiency disrupts glomerular symbiosis in preeclampsia.
- VEGF administration in a rat model alleviated hypertension and proteinuria.
- Further human studies are needed to confirm VEGF supplementation as a therapeutic approach for preeclampsia.
Background:
Preeclampsia (PE) is the commonest cause of glomerular disease worldwide. Glomerular endotheliosis has been considered as the hallmark of PE, but this lesion is also found in non-proteinuric hypertensive pregnant women. Lately, podocyte alterations have been related to PE.
Proposal:
Although it has been demonstrated that glomerular endothelium and podocyte alterations are related to PE, we could locate no formal academic discussion that integrates these two phenomena. The demonstration that alterations of the expression of vascular endothelial growth factor (VEGF) by podocytes result in a dramatic endothelial phenotype and that induced production of endothelin-1 by glomerular endothelium provokes podocyte damage could indicate that glomerular lesions in PE result from disruption of the symbiosis between these cells rather than from events occurring independently. We shall try to describe a holistic way of viewing renal disease in PE women, in which the hypertensive emergency is produced by the effects of antiangiogenic proteins on the vascular endothelium, while renal lesion and proteinuria result from the effects of these proteins on both the glomerular endothelium and the podocyte.
Conclusions:
VEGF deficiency within the glomerulus in women with PE leads to the disruption of podocyte and glomerular endothelium symbiosis. The evidence demonstrating that exogenous VEGF administration in a rat model of PE could alleviate hypertension and proteinuria in these animals are encouraging in view of looking for therapeutic approaches in this direction, nonetheless further evidence should be provided in humans to directly demonstrate that VEGF supplementation could mitigate the symptoms of PE.
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