Related Experiment Video
Updated: Jul 29, 2026

Assessment of Kidney Function in Mouse Models of Glomerular Disease
Published on: June 30, 2018
Role of postglomerular microvessels in pathophysiology of diabetic nephropathy. Assessment and hypothesis
1Department of Physiology, University of Maryland School of Medicine, Baltimore, Maryland 21201.
Abstract:
Although glomerular damage plays a well-established and important role in the pathomechanism of diabetic nephropathy, it alone does not fully explain the progression of renal complications in long-term diabetes mellitus. We discuss experimental evidence showing involvement of the postglomerular microvessels (peritubular capillaries and venules) in diabetic microangiopathy. This involvement is manifest in increased permeability of these vessels to plasma proteins and in highly augmented lymphatic drainage of the extravasated proteins from the renal interstitium. We suggest that in the advanced phase of diabetic nephropathy, proteinuria (corresponding to excess leakage of proteins through the glomerular capillary wall) indicates the probability that postglomerular microvessels have also allowed leakage of plasma proteins. As long as lymphatic drainage is capable of removing the increased quantity of extravasated plasma proteins from the interstitium, renal function should not be deleteriously affected. However, if the excess amount of extravasated proteins exceeds the capacity of lymphatic drainage, increases in interstitial volume and pressure are unavoidable with detrimental consequences for glomerular filtration and tubular reabsorption. Under these conditions, a potential positive-feedback loop can be visualized that involves increased extravasation of plasma proteins leading to increased interstitial pressure that through dilation of the afferent and efferent arterioles results in a further increase in protein extravasation. These conditions combined with glomerular damage should lead to the eventual collapse of renal function.
Insights
Diabetic nephropathy involves more than glomerular damage. Postglomerular microvessel leakage of proteins, if exceeding lymphatic drainage capacity, contributes to kidney function decline in diabetes mellitus.
Area of Science:
- Nephrology
- Diabetology
- Microvascular Medicine
Background:
- Glomerular damage is a known factor in diabetic nephropathy.
- However, it does not fully account for progressive renal complications in long-term diabetes mellitus.
Purpose of the Study:
- To discuss experimental evidence on the role of postglomerular microvessels in diabetic nephropathy.
- To elucidate the mechanism linking microvascular leakage, lymphatic drainage, and renal function decline.
Main Methods:
- Review and discussion of experimental evidence.
- Analysis of the interplay between glomerular and postglomerular microvascular function.
- Examination of protein extravasation and lymphatic drainage dynamics.
Main Results:
- Postglomerular microvessels (peritubular capillaries and venules) are involved in diabetic microangiopathy.
- Increased permeability of these vessels leads to plasma protein leakage into the renal interstitium.
- Exceeding lymphatic drainage capacity causes interstitial edema and pressure increases, impairing renal function.
Conclusions:
- Proteinuria in advanced diabetic nephropathy suggests concurrent postglomerular microvascular leakage.
- A positive feedback loop involving protein extravasation and increased interstitial pressure can accelerate renal dysfunction.
- Combined glomerular damage and microvascular issues lead to eventual kidney function collapse.
More Related Videos
08:21Intradermal Microdialysis: An Approach to Investigating Novel Mechanisms of Microvascular Dysfunction in Humans
Published on: July 21, 2023
10:31Comparative Proteomic Analysis of Whole Kidney, Medulla, and Cortical Tubules in Diabetic Pathogenesis of Kidney Injury in Mice
Published on: May 2, 2025
Related Concept Videos
Renal Corpuscle
Glomerulus: Structure and Function
The glomerulus is a tiny, intricate network of capillaries located at the beginning of the nephron. It's enveloped by the Bowman's capsule and receives its blood supply from an afferent arteriole, which divides into numerous capillaries...
Diabetic Retinopathy
Diabetic Nephropathy