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Updated: Jun 23, 2026

Implementing Patch Clamp and Live Fluorescence Microscopy to Monitor Functional Properties of Freshly Isolated PKD Epithelium
Published on: September 1, 2015
Calcimimetic inhibits late-stage cyst growth in ADPKD
Vincent H Gattone1, Neal X Chen, Rachel M Sinders
1Department of Anatomy and Cell Biology, Indiana University School of Medicine, 635 Barnhill Drive, Indianapolis, Indiana 46202, USA. vgattone@iupui.edu
Abstract:
In polycystic kidney disease (PKD), genetic mutations in polycystin 1 and 2 lead to defective intracellular trafficking of calcium, thereby decreasing intracellular calcium and altering cAMP signaling to favor proliferation. We hypothesized that calcimimetics, allosteric modulators of the calcium-sensing receptor, would reduce cyst growth by increasing intracellular calcium. We randomly assigned 20-wk-old male rats with a form of autosomal dominant PKD (heterozygote Cy/+) to one of four groups for 14 to 18 wk of treatment: (group 1) no treatment; (group 2) calcimimetic R-568 formulated in the diet; (group 3) R-568 plus calcium-supplemented drinking water (R-568 plus Ca); or (group 4) Ca-supplemented drinking water with a normal diet (Ca). Severity of PKD did not progress in any of the three treatment groups between 34 and 38 wk. Compared with no treatment, cyst growth was unaffected at 34 wk by all treatments, but cyst volume and fibrosis were lower at 38 wk, with both R-568-treated groups demonstrating a greater reduction than calcium alone. Between 34 and 38 wk, the total kidney weight increased by 78% in the control group (P < 0.001) and by 19% in the Ca group (P < 0.01), but did not increase in the R-568 or R-568 plus Ca groups, suggesting inhibition of disease progression despite equivalent suppression of parathyroid hormone. In summary, treatment of hyperparathyroidism halts late-stage progression of rodent cystic kidney disease. The benefit of R-568 alone suggests calcium-sensing receptor modulation may have additional inhibitory effects on late-stage cyst growth resulting from a direct modulation of intracellular calcium.
Insights
Calcimimetics, drugs that modulate the calcium-sensing receptor, halted late-stage polycystic kidney disease (PKD) progression in rats. This suggests a potential new therapeutic strategy for PKD by directly impacting intracellular calcium levels.
Area of Science:
- Nephrology
- Pharmacology
- Genetics
Background:
- Polycystic kidney disease (PKD) is caused by genetic mutations affecting calcium and cAMP signaling.
- Defective intracellular calcium handling in PKD promotes cyst cell proliferation.
- Calcimimetics are potential modulators of calcium-sensing receptors.
Purpose of the Study:
- To investigate if calcimimetics can reduce cyst growth in an animal model of autosomal dominant PKD.
- To explore the role of calcium-sensing receptor modulation in polycystic kidney disease progression.
Main Methods:
- Male rats with autosomal dominant PKD were treated with a calcimimetic (R-568), calcium supplementation, or both.
- Kidney weight, cyst volume, and fibrosis were assessed over 14-18 weeks.
- Parathyroid hormone levels were monitored to assess treatment efficacy.
Main Results:
- Calcimimetic treatment (R-568) halted late-stage PKD progression, indicated by no increase in total kidney weight.
- Both R-568 treated groups showed greater reduction in cyst volume and fibrosis at 38 weeks compared to calcium alone.
- Calcimimetic R-568 demonstrated potential inhibitory effects on cyst growth beyond parathyroid hormone suppression.
Conclusions:
- Treatment targeting the calcium-sensing receptor with calcimimetics halts late-stage progression of rodent cystic kidney disease.
- Calcimimetic R-568 may offer direct benefits in reducing cyst growth by modulating intracellular calcium.
- This study supports calcium-sensing receptor modulation as a therapeutic avenue for polycystic kidney disease.
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