Literature DB >> 23709660

Impact of the length of vitamin D deficiency on cardiac remodeling.

Heloisa Balan Assalin1, Bruna Paola Rafacho, Priscila Portugal dos Santos, Lidiane Paula Ardisson, Meliza Goi Roscani, Fernanda Chiuso-Minicucci, Luis Fernando Barbisan, Ana Angelica Henrique Fernandes, Paula Schmidt Azevedo, Marcos Ferreira Minicucci, Leonardo Antonio Zornoff, Sergio Alberto Rupp de Paiva.   

Abstract

BACKGROUND: This study was aimed to evaluate the influence of vitamin D (VD) deficiency on cardiac metabolism, morphology, and function. Thus, we investigated the relationship of these changes with the length of the nutrient restriction. METHODS AND
RESULTS: Male weanling Wistar rats were allocated into 4 groups: C2 (n=24), animals were fed an AIN-93G diet with 1000 IU VD/kg of chow and were kept under fluorescent light for 2 months; D2 (n=22), animals were fed a VD-deficient AIN-93G diet and were kept under incandescent light for 2 months; C4 (n=21) animals were kept in the same conditions of C2 for 4 months; and D4 (n=23) animals were kept in the same conditions of D2 for 4 months. Biochemical analyses showed lower β-hydroxyacyl coenzyme-A dehydrogenase activity and higher lactate dehydrogenase activity in VD-deficient animals. Furthermore, VD deficiency was related to increased cytokines release, oxidative stress, apoptosis, and fibrosis. Echocardiographic data showed left ventricular hypertrophy and lower fractional shortening and ejection fraction in VD-deficient animals. Difference became evident in the lactate dehydrogenase activity, left ventricular weight, right ventricle weight, and left ventricular mass after 4 months of VD deficiency.
CONCLUSIONS: Our data indicate that VD deficiency is associated with energetic metabolic changes, cardiac inflammation, oxidative stress, fibrosis and apoptosis, cardiac hypertrophy, left chambers alterations, and systolic dysfunction. Furthermore, length of the restriction influenced these cardiac changes.

Entities:  

Keywords:  cardiac remodeling; oxidative stress; vitamin D deficiency

Mesh:

Substances:

Year:  2013        PMID: 23709660     DOI: 10.1161/CIRCHEARTFAILURE.112.000298

Source DB:  PubMed          Journal:  Circ Heart Fail        ISSN: 1941-3289            Impact factor:   8.790


  27 in total

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Authors:  Vikrant Rai; Devendra K Agrawal
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Review 4.  Assessing Cardiac Metabolism: A Scientific Statement From the American Heart Association.

Authors:  Heinrich Taegtmeyer; Martin E Young; Gary D Lopaschuk; E Dale Abel; Henri Brunengraber; Victor Darley-Usmar; Christine Des Rosiers; Robert Gerszten; Jan F Glatz; Julian L Griffin; Robert J Gropler; Hermann-Georg Holzhuetter; Jorge R Kizer; E Douglas Lewandowski; Craig R Malloy; Stefan Neubauer; Linda R Peterson; Michael A Portman; Fabio A Recchia; Jennifer E Van Eyk; Thomas J Wang
Journal:  Circ Res       Date:  2016-03-24       Impact factor: 17.367

5.  Low vitamin D status in systemic sclerosis and the impact on disease phenotype.

Authors:  Laura Groseanu; Violeta Bojinca; Tania Gudu; Ioana Saulescu; Denisa Predeteanu; Andra Balanescu; Florian Berghea; Daniela Opris; Andreea Borangiu; Cosmin Constantinescu; Magda Negru; Ruxandra Ionescu
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6.  1,25-Vitamin D3 promotes cardiac differentiation through modulation of the WNT signaling pathway.

Authors:  Su M Hlaing; Leah A Garcia; Jaime R Contreras; Keith C Norris; Monica G Ferrini; Jorge N Artaza
Journal:  J Mol Endocrinol       Date:  2014-08-19       Impact factor: 5.098

Review 7.  Vitamin-D concentrations, cardiovascular risk and events - a review of epidemiological evidence.

Authors:  Martin Robert Grübler; Winfried März; Stefan Pilz; Tanja B Grammer; Christian Trummer; Christian Müllner; Verena Schwetz; Marlene Pandis; Nicolas Verheyen; Andreas Tomaschitz; Antonella Fiordelisi; Daniela Laudisio; Ersilia Cipolletta; Guido Iaccarino
Journal:  Rev Endocr Metab Disord       Date:  2017-06       Impact factor: 6.514

8.  The role of lipotoxicity in smoke cardiomyopathy.

Authors:  Priscila P Santos; Fernando Oliveira; Vanessa C M P Ferreira; Bertha F Polegato; Meliza G Roscani; Ana Angelica Fernandes; Pamela Modesto; Bruna P M Rafacho; Silmeia G Zanati; Annarita Di Lorenzo; Luiz S Matsubara; Sergio A R Paiva; Leonardo A M Zornoff; Marcos F Minicucci; Paula S Azevedo
Journal:  PLoS One       Date:  2014-12-02       Impact factor: 3.240

9.  Estimated GFR and Subsequent Higher Left Ventricular Mass in Young and Middle-Aged Adults With Normal Kidney Function: The Coronary Artery Risk Development in Young Adults (CARDIA) Study.

Authors:  Nisha Bansal; Feng Lin; Eric Vittinghoff; Carmen Peralta; Joao Lima; Holly Kramer; Michael Shlipak; Kirsten Bibbins-Domingo
Journal:  Am J Kidney Dis       Date:  2015-08-05       Impact factor: 11.072

10.  Tomato (Lycopersicon esculentum) Supplementation Induces Changes in Cardiac miRNA Expression, Reduces Oxidative Stress and Left Ventricular Mass, and Improves Diastolic Function.

Authors:  Bruna L B Pereira; Fernanda C O Arruda; Patrícia P Reis; Tainara F Felix; Priscila P Santos; Bruna P Rafacho; Andrea F Gonçalves; Renan T Claro; Paula S Azevedo; Bertha F Polegato; Katashi Okoshi; Ana A H Fernandes; Sergio A R Paiva; Leonardo A M Zornoff; Marcos F Minicucci
Journal:  Nutrients       Date:  2015-11-19       Impact factor: 5.717

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