Related Experiment Video
Updated: Jun 4, 2025

Implementing Patch Clamp and Live Fluorescence Microscopy to Monitor Functional Properties of Freshly Isolated PKD Epithelium
Published on: September 1, 2015
Intestinal barrier function declines during polycystic kidney disease progression
Randee Sedaka1, Caleb Lovelady1, Emily Hallit1
1Section of Cardio-Renal Physiology and Medicine, Division of Nephrology, Department of Medicine, University of Alabama at Birmingham, Alabama, United States.
Insights
In autosomal dominant polycystic kidney disease (ADPKD), kidney injury precedes intestinal issues. Early stages show a tighter gut barrier, which becomes leaky as kidney cysts progress, impacting water balance.
Area of Science:
- Nephrology and Gastroenterology
- Molecular Biology and Genetics
- Disease Pathogenesis
Background:
- Autosomal dominant polycystic kidney disease (ADPKD) is characterized by kidney cyst development, primarily due to PKD1 mutations.
- Kidney-specific Pkd1 loss in ADPKD leads to epithelial dysfunction and inflammation.
- The intestinal impact of Pkd1 loss in ADPKD remains largely unexplored.
Purpose of the Study:
- To investigate the hypothesis that Pkd1 loss causes intestinal epithelial barrier dysfunction and inflammation preceding cystogenesis in ADPKD.
- To evaluate kidney and intestinal integrity, inflammation, and gut function in a mouse model of ADPKD.
Main Methods:
- Utilized inducible, global Pkd1 knockout (Pkd1KO) mice and control littermates.
- Assessed kidney and intestinal phenotypes at early (3 months) and late (6 months) stages of disease.
- Analyzed kidney and intestinal integrity markers, inflammation, gut motility, and fecal water excretion.
Main Results:
- Early-stage Pkd1KO mice showed mild kidney cysts but a tighter intestinal barrier with no inflammation.
- Late-stage Pkd1KO mice exhibited severe kidney cysts, impaired function, a leakier intestinal barrier, and increased inflammation.
- Gut motility and fecal water excretion were elevated in Pkd1KO mice regardless of age.
Conclusions:
- Kidney injury precedes intestinal injury in ADPKD, with the intestinal barrier becoming compromised as cystogenesis advances.
- Progressive intestinal barrier dysfunction and altered water/sodium transport contribute to ADPKD pathophysiology.
- Extrarenal water loss is a significant factor in ADPKD progression, warranting clinical evaluation.
Abstract:
Most patients with autosomal dominant polycystic kidney disease (ADPKD) develop kidney cysts due to germline PKD1 mutations. In the kidney, Pkd1 loss impairs epithelial cell integrity and increases macrophage infiltration, contributing to cyst growth. Despite its role as the body's largest inflammatory cell reservoir, it has yet to be elucidated whether a similar phenotype presents in the intestines. We hypothesize that loss of Pkd1 leads to a leaky intestinal epithelial barrier and increased inflammation, before rapid cystogenesis. Control and inducible, global Pkd1 knockout (Pkd1KO) mice were euthanized at 3 and 6 mo of age (early and late stage) to evaluate kidney disease progression, small and large intestinal integrity, and inflammation. Early-stage Pkd1KO mice displayed mild cystic kidneys and tubular injury with preserved kidney function. Intestinal epithelial barrier was tighter in KO mice, which was associated with higher expression of cell-cell epithelial integrity markers. However, there was no evidence of local or systemic inflammation in either genotype. Late-stage Pkd1KO mice had severely cystic, impaired kidneys with increased expression of integrity markers, tubular injury, and inflammation. Intestinal epithelial barrier was leakier in late-stage Pkd1KO mice, accompanied by gene reduction of integrity markers, increased inflammation, and elevated water and sodium channel expression. Gut motility and fecal water excretion were increased in Pkd1KO compared with flox mice irrespective of age. Overall, kidney injury appears to precede intestinal injury in ADPKD, whereby the intestinal barrier becomes leaky as cystogenesis progresses.NEW & NOTEWORTHY Though autosomal dominant polycystic kidney disease (ADPKD) is a multisystem disorder, this is the first study to explore a kidney-gut contribution to disease progression. We identified a tightened intestinal epithelial barrier in early PKD, which becomes leaky as kidneys become more cystic, accompanied by a sustained loss of fecal water. Given the only approved ADPKD therapeutic yields adverse aquaretic events, this study emphasizes the need to evaluate extrarenal water loss in patients before prescribing.
More Related Videos
Related Concept Videos
Nephrons
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...
Factors Affecting Renal Clearance: Renal Impairment
One condition associated with renal failure is uremia. Uremia is characterized by impaired glomerular filtration and fluid accumulation in the body. This condition hinders the renal clearance of drugs, resulting in drug accumulation and potential...
Renal Tubule and Collecting Duct
Proximal Convoluted Tubule (PCT):
The PCT is the initial segment of the renal tubule, extending from the Bowman's capsule that encloses the glomerulus. Its convoluted structure and microvilli-lined cells increase the surface area for reabsorption. The PCT reabsorbs glucose, amino acids, sodium, and water from the filtrate, ensuring essential...
Drug Elimination by Renal Route: Tubular Secretion
Formation of Dilute Urine
Filtrate Osmolarity in the PCT
Initially, as the filtrate passes through the proximal convoluted tubule (PCT), its...

