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  • The liver-selective NO donor, V-PYRRO/NO, protects against liver steatosis and improves postprandial glucose tolerance in mice fed high fat diet.

The liver-selective NO donor, V-PYRRO/NO, protects against liver steatosis and improves postprandial glucose tolerance in mice fed high fat diet.

Biochemical pharmacology (2014-12-24)
Edyta Maslak, Piotr Zabielski, Kamila Kochan, Kamil Kus, Agnieszka Jasztal, Barbara Sitek, Bartosz Proniewski, Tomasz Wojcik, Katarzyna Gula, Agnieszka Kij, Maria Walczak, Małgorzata Baranska, Adrian Chabowski, Ryan J Holland, Joseph E Saavedra, Larry K Keefer, Stefan Chlopicki
ABSTRACT

There is an unmet medical need for novel NAFLD treatments. Here we have examined the effects of liver-selective NO donor (V-PYRRO/NO) as compared with metformin on hepatic steatosis and glucose tolerance in mice fed high fat diet. Effects of V-PYRRO/NO (5 mgkg(-1)) or metformin (616 mgkg(-1)) were examined in C57BL/6J mice fed high fat diet (HF, 60 kcal% fat). Quantitative determination of steatosis, liver fatty acid composition and western blot analysis of selected proteins involved in mitochondrial biogenesis, fatty acid de novo synthesis and oxidation, triacylglycerols and cholesterol transport from the liver were performed. Liver NOx and nitrate concentration and blood biochemistry were also analyzed. V-PYRRO/NO and metformin reduced liver steatosis with simultaneous reduction of total liver triacylglycerols, diacylglycerols and ceramides fraction and reversed HF-induced decrease in UFA/SFA ratio. V-PYRRO/NO substantially improved postprandial glucose tolerance, while the effect of metformin was modest and more pronounced on HOMA IR index. The anti-steatotic mechanism of V-PYRRO/NO was dependent on NO release, differed from that of metformin and involved improved glucose tolerance and inhibition of de novo fatty acid synthesis by Akt activation and ACC phosphorylation. In turn, major mechanism of metformin action involved increased expression of proteins implicated in mitochondrial biogenesis and metabolism (PGC-1α, PPARα, COX IV, cytochrome c, HADHSC). V-PYRRO/NO acts as a liver-specific NO donor prodrug affording pronounced anti-steatotic effects and may represent an efficient, mechanistically novel approach to prevent liver steatosis and insulin resistance.

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Acetonitrile, suitable for HPLC, gradient grade, ≥99.9%
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Metanolo, suitable for HPLC, ≥99.9%
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Acido cloridrico, ACS reagent, 37%
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Metanolo, ACS reagent, ≥99.8%
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Ethyl alcohol, Pure, 200 proof, ACS reagent, ≥99.5%
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Acetonitrile, HPLC Plus, ≥99.9%
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Acido cloridrico, ACS reagent, 37%
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Metanolo, HPLC Plus, ≥99.9%
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Cloruro di idrogeno, 4.0 M in dioxane
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Ethyl alcohol, Pure, 200 proof, meets USP testing specifications
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Acetonitrile, ACS reagent, ≥99.5%
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Hydrofluoric acid, ACS reagent, 48%
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Ethyl alcohol, Pure, 190 proof, for molecular biology
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D-(+)-glucosio, 45% in H2O, sterile-filtered, BioXtra, suitable for cell culture
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Formato di ammonio, reagent grade, 97%
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Formaldeide, for molecular biology, 36.5-38% in H2O
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Acetonitrile, suitable for HPLC, gradient grade, ≥99.9%
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Acido cloridrico, 1.0 N, BioReagent, suitable for cell culture
SAFC
Formaldeide, contains 10-15% methanol as stabilizer, 37 wt. % in H2O
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Metanolo, suitable for HPLC, gradient grade, suitable as ACS-grade LC reagent, ≥99.9%
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Acido cloridrico, 37 wt. % in H2O, 99.999% trace metals basis
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D-(+)-glucosio, 100 g/L in H2O, sterile-filtered, BioXtra, suitable for cell culture
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Acido cloridrico, 36.5-38.0%, BioReagent, for molecular biology
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Acetonitrile, anhydrous, 99.8%
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Cloruro di idrogeno, 2.0 M in diethyl ether
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Metanolo, Laboratory Reagent, ≥99.6%
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Formato di ammonio, ≥99.995% trace metals basis
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Hydrofluoric acid, 48 wt. % in H2O, ≥99.99% trace metals basis
Supelco
Acido cloridrico, volumetric, 0.1 M HCl (0.1N), endotoxin free
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Metanolo, BioReagent, ≥99.93%