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Published on: May 1, 2016
Pathology and Epidemiology of Oxalate Nephrosis in Cheetahs
Emily P Mitchell1,2, Molly E Church3, Sarah M Nemser4
11 Department of Research and Scientific Services, National Zoological Gardens of South Africa, Pretoria, South Africa.
Insights
Acute oxalate nephrosis in cheetahs (Acinonyx jubatus) can occur without ethylene glycol exposure. Young cheetahs with oxalate crystals showed higher crystal burden and renal damage, suggesting a need for further research into contributing factors.
Area of Science:
- Veterinary Pathology
- Nephrology
- Conservation Medicine
Background:
- Acute oxalate nephrosis is a significant concern in cheetahs (Acinonyx jubatus).
- Previous understanding of causes often linked it to ethylene glycol exposure, but other factors require investigation.
Purpose of the Study:
- To investigate acute oxalate nephrosis in cheetahs without ethylene glycol exposure.
- To characterize renal and gastrointestinal lesions associated with oxalate crystals in cheetahs.
- To identify potential contributing factors and risk groups for oxalate nephrosis.
Main Methods:
- Archived data and tissues from cheetahs across North America, southern Africa, and France were evaluated.
- Renal and gastrointestinal lesions were characterized in cheetahs with and without oxalate crystals.
- Calcium oxalate crystals were confirmed using Raman spectroscopy.
Main Results:
- Calcium oxalate crystals were confirmed in 45 of 47 tested cheetahs.
- Younger cheetahs (<1.5 years) with oxalate crystals had a higher crystal burden.
- Crystal presence and number were associated with specific renal lesions like tubular necrosis and regeneration, but not chronic renal diseases.
- Crystal burden was lower in southern African cheetahs compared to American and European animals.
Conclusions:
- Oxalate-related renal disease is a potential cause of acute renal failure in cheetahs, particularly young captive ones.
- Chronic renal diseases do not appear to significantly contribute to oxalate nephrosis.
- Further research is needed on the role of location, diet, stress, and genetics in cheetah oxalate nephrosis pathogenesis.
Abstract:
To investigate cases of acute oxalate nephrosis without evidence of ethylene glycol exposure, archived data and tissues from cheetahs ( Acinonyx jubatus) from North America ( n = 297), southern Africa ( n = 257), and France ( n = 40) were evaluated. Renal and gastrointestinal tract lesions were characterized in a subset of animals with ( n = 100) and without ( n = 165) oxalate crystals at death. Crystals were confirmed as calcium oxalate by Raman spectroscopy in 45 of 47 cheetahs tested. Crystals were present in cheetahs from 3.7 months to 15.9 years old. Cheetahs younger than 1.5 years were less likely to have oxalates than older cheetahs ( P = .034), but young cheetahs with oxalates had more oxalate crystals than older cheetahs ( P < .001). Cheetahs with oxalate crystals were more likely to have renal amyloidosis, interstitial nephritis, or colitis and less likely to have glomerular loop thickening or gastritis than those without oxalates. Crystal number was positively associated with renal tubular necrosis ( P ≤ .001), regeneration ( P = .015), and casts ( P ≤ .001) but inversely associated with glomerulosclerosis, renal amyloidosis, and interstitial nephritis. Crystal number was unrelated to the presence or absence of colitis and was lower in southern African than American and European animals ( P = .01). This study found no evidence that coexisting chronic renal disease (amyloidosis, interstitial nephritis, or glomerulosclerosis), veno-occlusive disease, gastritis, or enterocolitis contributed significantly to oxalate nephrosis. Oxalate-related renal disease should be considered as a potential cause of acute renal failure, especially in young captive cheetahs. The role of location, diet, stress, and genetic predisposition in the pathogenesis of oxalate nephrosis in cheetahs warrants further study.
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