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A novel model of adenine-induced tubulointerstitial nephropathy in mice
Background:
In vivo models of uremia are important tools to study numerous aspects of acute and chronic kidney disease. Mouse models are pivotal because most genetically engineered animal models are mice, which allow dissecting the impact of selected target genes in renal failure. Adenine-based protocols to induce renal failure are available in rats, but have not been adapted in mice due to their reluctance to consume adenine. In the current paper we developed a novel method for induction of renal failure through dietary delivery of adenine mixed in a casein-based diet.
Results:
After an induction phase, a stable model of renal impairment was obtained (target urea range 80-100 mg/dL), mimicking several aspects of chronic kidney disease - mineral and bone disorder including secondary hyperparathyroidism, bone abnormalities and pathological elevation of FGF23. No deaths occurred and the level of uremia was adaptable through adjustments of the adenine content, providing significant advantages compared to existing models. In an 8-week proof-of-concept study, renal histology showed mainly a tubulointerstitial damage with infiltrating leukocytes, interstitial edema and widening of the Bownman's space. Fibrosis was present in most animals as defined by histology and gene expression changes of fibrosis markers. Parathyroid cell proliferation was markedly increased but without signs of glandular hypertrophy. Skeletal histology showed increased trabecular bone and bone marrow adiposity whereas bone biomarkers (CTX and PINP) suggested higher bone formation, but surprisingly, lower bone resorption and perturbations in mineral metabolism.
Conclusions:
We present a novel, non-surgical method for induction of renal failure in mice. This is an important complement to existing uremic models for pathophysiological studies in acute and chronic kidney disease, especially in terms of tubulointerstitial lesions.
Insights
Researchers developed a novel dietary method to induce renal failure in mice, creating a stable model for studying chronic kidney disease. This new approach offers advantages over existing methods for investigating kidney disease pathophysiology.
Area of Science:
- Nephrology
- Animal Models
- Biomedical Research
Background:
- In vivo models are crucial for studying acute and chronic kidney disease (CKD).
- Mouse models are essential for genetic studies in renal failure.
- Existing adenine-based protocols are not suitable for mice.
Purpose of the Study:
- To develop a novel, non-surgical method for inducing renal failure in mice.
- To establish a stable mouse model mimicking aspects of CKD.
Main Methods:
- Dietary delivery of adenine mixed in a casein-based diet.
- Induction phase followed by a stable model of renal impairment (80-100 mg/dL urea).
- 8-week proof-of-concept study.
Main Results:
- Achieved a stable model of renal impairment with CKD features, including mineral and bone disorder (secondary hyperparathyroidism, elevated FGF23).
- Observed tubulointerstitial damage, fibrosis, and parathyroid cell proliferation without hypertrophy.
- Skeletal histology revealed increased trabecular bone and adiposity, with altered bone turnover markers.
Conclusions:
- A novel, non-surgical dietary method for inducing renal failure in mice was developed.
- This model complements existing uremic models for studying acute and CKD.
- The model is particularly useful for investigating tubulointerstitial lesions in kidney disease.
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