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dc.contributor.author Sárközy, Márta
dc.contributor.author Szűcs, Gergő
dc.contributor.author Pipicz, Márton
dc.contributor.author Zvara, Ágnes
dc.contributor.author Eder K
dc.contributor.author Fekete V
dc.contributor.author Szucs C
dc.contributor.author Barkanyi J
dc.contributor.author Csonka, Csaba
dc.contributor.author Puskás, László
dc.contributor.author Konya C
dc.contributor.author Ferdinandy, Péter
dc.contributor.author Csont, Tamás Bálint
dc.date.accessioned 2018-08-29T13:07:47Z
dc.date.available 2018-08-29T13:07:47Z
dc.date.issued 2015
dc.identifier 84936861598
dc.identifier.citation pagination=85, pages: 20; journalVolume=14; journalTitle=CARDIOVASCULAR DIABETOLOGY;
dc.identifier.uri http://repo.lib.semmelweis.hu//handle/123456789/6177
dc.identifier.uri doi:10.1186/s12933-015-0248-6
dc.description.abstract BACKGROUND: Diabetic patients have an increased risk of developing cardiovascular diseases, which are the leading cause of death in developed countries. Although multivitamin products are widely used as dietary supplements, the effects of these products have not been investigated in the diabetic heart yet. Therefore, here we investigated if a preparation of different minerals, vitamins, and trace elements (MVT) affects the cardiac gene expression pattern in experimental diabetes. METHODS: Two-day old male Wistar rats were injected with streptozotocin (i.p. 100 mg/kg) or citrate buffer to induce diabetes. From weeks 4 to 12, rats were fed with a vehicle or a MVT preparation. Fasting blood glucose measurement and oral glucose tolerance test were performed at week 12, and then total RNA was isolated from the myocardium and assayed by rat oligonucleotide microarray for 41012 oligonucleotides. RESULTS: Significantly elevated fasting blood glucose concentration and impaired glucose tolerance were markedly improved by MVT-treatment in diabetic rats at week 12. Genes with significantly altered expression due to diabetes include functional clusters related to cardiac hypertrophy (e.g. caspase recruitment domain family, member 9; cytochrome P450, family 26, subfamily B, polypeptide; FXYD domain containing ion transport regulator 3), stress response (e.g. metallothionein 1a; metallothionein 2a; interleukin-6 receptor; heme oxygenase (decycling) 1; and glutathione S-transferase, theta 3), and hormones associated with insulin resistance (e.g. resistin; FK506 binding protein 5; galanin/GMAP prepropeptide). Moreover the expression of some other genes with no definite cardiac function was also changed such as e.g. similar to apolipoprotein L2; brain expressed X-linked 1; prostaglandin b2 synthase (brain). MVT-treatment in diabetic rats showed opposite gene expression changes in the cases of 19 genes associated with diabetic cardiomyopathy. In healthy hearts, MVT-treatment resulted in cardiac gene expression changes mostly related to immune response (e.g. complement factor B; complement component 4a; interferon regulatory factor 7; hepcidin). CONCLUSIONS: MVT-treatment improved diagnostic markers of diabetes. This is the first demonstration that MVT-treatment significantly alters cardiac gene expression profile in both control and diabetic rats. Our results and further studies exploring the mechanistic role of individual genes may contribute to the prevention or diagnosis of cardiac complications in diabetes.
dc.relation.ispartof urn:issn:1475-2840
dc.title The effect of a preparation of minerals, vitamins and trace elements on the cardiac gene expression pattern in male diabetic rats
dc.type Journal Article
dc.date.updated 2018-08-27T17:28:54Z
dc.language.rfc3066 en
dc.identifier.mtmt 2915576
dc.identifier.wos 000357711000001
dc.identifier.pubmed 26126619
dc.contributor.department SE/AOK/I/Farmakológiai és Farmakoterápiás Intézet
dc.contributor.institution Semmelweis Egyetem
dc.mtmt.swordnote Márta Sárközy and Gergő Szűcs contributed equally to this work. Peter Ferdinandy and Tamas Csont also contributed equally to this work.


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