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Modp analyzer

Manufactured by Advanced Instruments

The ModP analyzer is a laboratory instrument designed to measure and analyze various physical and chemical properties of samples. It utilizes advanced technology to provide accurate and reliable data. The core function of the ModP analyzer is to perform precise measurements and analyses, enabling researchers and scientists to obtain valuable insights about their samples.

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2 protocols using modp analyzer

1

Metabolic Profiling of Mouse Aquaresis

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Single mice were kept for 24-hours in metabolic cages (3600M021, Techniplast) and urine and stool production, as well as water and food intake were measured. Treatments were performed with dDAVP (0.4μg/kg intraperitoneally) and effects on these parameters were assessed. Mouse serum chemistries were determined with a Dri-Chem7000 chemistry analyzer (Heska). Urine chemistries were determined with a Roche ModP analyzer and urine osmolality with an Advanced Instruments Micro Osmometer Model 3300. CBC was obtained with the HemaTrue analyzer (Heska). Blood gas analysis was performed with an IRMA TRUpoint capillary blood analysis system (Lifehealth). Mouse serum renin was measured with a mouse renin 1 ELISA kit (EMREN1, Thermo Fisher), according to the manufacturer’s instructions. Aldosterone assays were performed with a commercially available radioimmunoassay kit (ACTIVE® Aldosterone RIA, Beckman Coulter, IMMUNOTECH, Prague, Czech Republic). Anti-aldosterone antibody-coated tubes, 125I-labeled aldosterone radioligand, 7 calibrators ranging from 0 to 4448 pmol/L, and 2 controls were provided by the manufacturer. The assays were performed according to the kit protocol with the modification of an overnight incubation step at room temperature.
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2

Metabolic Cage Evaluation in Mice

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Single mice were kept for 24 hours in metabolic cages (3600M021, Techniplast), and urine and stool production, as well as water and food intake, were measured. All experimental mouse groups were exposed to metabolic cages in the same manner and under the same conditions. Mouse serum chemistries were determined with a Dri-Chem7000 chemistry analyzer (Heska) after blood was obtained via cardiac puncture after CO2 asphyxiation. Of note, this method of euthanasia leads to an artificial increase in serum potassium levels49 (link). Urine chemistries were determined with a Roche ModP analyzer and urine osmolality with an Advanced Instruments Micro Osmometer Model 3300. Urine microalbumin was measured with a Siemens DCA Vantage analyzer. Values shown are from distinct mice.
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