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1.
Artigo em Alemão | MEDLINE | ID: mdl-39173651

RESUMO

A 1,5-year-old intact male German Hunting Terrier was initially presented 2018 with hematuria. An abdominal ultrasound revealed multiple hyperechogenic structures in the urinary bladder. A urinalysis indicated severe crystalluria (ammonium urate or xanthine). Following cystotomy and urinary calculus analysis, ammonium urate urolithiasis was diagnosed in 2019. The patient was tested homozygous at the SLC2A9:p.C188F variant, which results in severe hyperuricemia and hyperuricosuria. This case report presents the first incidence of the SLC2A9:p.C188F gene variant being detected in a German Hunting Terrier. Veterinary practitioners are encouraged to consider the possibility of this gene defect presenting in breeds beyond the Dalmatian.


Assuntos
Doenças do Cão , Proteínas Facilitadoras de Transporte de Glucose , Ácido Úrico , Urolitíase , Cães , Masculino , Animais , Doenças do Cão/genética , Doenças do Cão/diagnóstico , Urolitíase/veterinária , Urolitíase/genética , Urolitíase/diagnóstico , Ácido Úrico/urina , Proteínas Facilitadoras de Transporte de Glucose/genética
2.
Heliyon ; 10(12): e33300, 2024 Jun 30.
Artigo em Inglês | MEDLINE | ID: mdl-39022019

RESUMO

In-vitro studies are widely used in nutrition research. Two major challenges using in-vitro models in animal nutrition research are the individual adaptation of in-vitro digestion models to varying physiological conditions and small digesta output limiting sample material for further analysis. Since several years, the use of zinc in animal production has been legally reduced to control zinc emissions. Earlier, zinc doses around 3000 mg/kg diet were used to prevent post-weaning diarrhea and promote growth in weaning piglets. The first aim of this study was to adapt an in-vitro digestion system for piglets with increased sample output. The second aim was to study the effect of a titanium-bound zinc source at legal dietary inclusion levels on nutrient degradation in an in-vitro digestion model. The experiment was conducted in a 2x2 factorial design incubating 2 different feeds (1. control feed: a commercial piglet diet containing 75 mg zinc per kg diet and 2. treatment feed: control feed with 50 mg of a titanium-bound zinc oxide) in in-situ digestion bags in the Ankom Daisy® incubator with or without digestive enzymes (pepsin, pancreatic enzymes and bile salts). Residuals of incubated feed were analyzed for crude ash, crude protein and starch. The addition of pepsin, pancreatic enzymes and bile salts significantly increased organic matter, crude protein and starch degradation from the digested feed, therefore making the distinction of nutrient disappearance due to enzyme activity versus due to dissolution possible. In conclusion we established an in-vitro digestion model to evaluate the effect of addition of a new zinc source on the enzymatic digestion in piglets. However, addition of the new zinc source did not significantly improve nutrient degradation in the in-vitro digestion model.

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