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Updated: Jun 23, 2026

Intravascular Delivery of Biologics to the Rat Kidney
Published on: September 1, 2016
Angiogenesis in the kidney: a new therapeutic target?
Lilach O Lerman1, Alejandro R Chade
1Department of Internal Medicine, Divisions of Nephrology and Hypertension and Cardiovascular Diseases, Mayo Clinic, Rochester, Minnesota, USA.
Purpose Of Review:
The prevalence of chronic kidney disease has been growing consistently for the past decades. Renal failure is often associated with defective angiogenesis, and recognition of the contribution of the renal microcirculation to the progression of chronic renal disease may aid in the development of therapeutic interventions.
Recent Findings:
Intra-renal proliferation, remodeling, and/or rarefaction of microvessels in response to injury can all aggravate nephron damage, and experimental evidence suggests that they may constitute the early steps in the complex pathways involved in progressive renal injury. Recent studies showed the benefits of targeted interventions deemed to promote neovascularization (e.g. progenitor cells, growth factors) on the ischemic myocardium and brain and in a few models of renal disease.
Summary:
Evidence of aberrant renal microvascular architecture in various forms of renal disease provides the impetus to attempt modulating the renal microcirculation to interfere with the disease process. Targeted interventions to preserve the renal microcirculation may not only decrease the evolving injury in renal vascular disease but also potentially constitute a coadjuvant intervention to become part of a comprehensive management plan to improve the success of parallel strategies to preserve renal function, such as revascularization.
Insights
Chronic kidney disease progression is linked to abnormal renal microcirculation. Interventions targeting neovascularization show promise for preserving kidney function and aiding treatment.
Area of Science:
- Nephrology
- Vascular Biology
- Regenerative Medicine
Background:
- Chronic kidney disease (CKD) prevalence is rising globally.
- Renal failure is frequently linked to impaired angiogenesis.
- Understanding the renal microcirculation's role in CKD progression is crucial for therapeutic development.
Purpose of the Study:
- To review the role of renal microcirculation in CKD.
- To explore therapeutic interventions targeting neovascularization in renal disease.
Main Methods:
- Review of recent experimental evidence and studies.
- Analysis of targeted interventions promoting neovascularization.
Main Results:
- Aberrant intra-renal microvascular changes (proliferation, remodeling, rarefaction) can worsen nephron damage.
- Experimental data suggests these microvascular alterations are early steps in progressive renal injury.
- Interventions promoting neovascularization (e.g., progenitor cells, growth factors) have shown benefits in preclinical models.
Conclusions:
- Aberrant renal microvascular architecture in CKD necessitates strategies to modulate it.
- Targeted interventions preserving renal microcirculation may reduce injury in renal vascular disease.
- These interventions could be coadjuvant therapies to improve outcomes of other renal function-preserving strategies.
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