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Protein kinase-D1 overexpression prevents lipid-induced cardiac insulin resistance.
Dirkx, Ellen; van Eys, Guillaume J J M; Schwenk, Robert W; Steinbusch, Laura K M; Hoebers, Nicole; Coumans, Will A; Peters, Tim; Janssen, Ben J; Brans, Boudewijn; Vogg, Andreas T; Neumann, Dietbert; Glatz, Jan F C; Luiken, Joost J F P.
Afiliação
  • Dirkx E; Department of Molecular Genetics, Cardiovascular Research Institute Maastricht (CARIM), Maastricht University, The Netherlands.
  • van Eys GJ; Department of Molecular Genetics, Cardiovascular Research Institute Maastricht (CARIM), Maastricht University, The Netherlands.
  • Schwenk RW; Department of Molecular Genetics, Cardiovascular Research Institute Maastricht (CARIM), Maastricht University, The Netherlands.
  • Steinbusch LK; Department of Molecular Genetics, Cardiovascular Research Institute Maastricht (CARIM), Maastricht University, The Netherlands.
  • Hoebers N; Department of Molecular Genetics, Cardiovascular Research Institute Maastricht (CARIM), Maastricht University, The Netherlands.
  • Coumans WA; Department of Molecular Genetics, Cardiovascular Research Institute Maastricht (CARIM), Maastricht University, The Netherlands.
  • Peters T; Department of Experimental Cardiology, Cardiovascular Research Institute Maastricht (CARIM), Maastricht University, The Netherlands.
  • Janssen BJ; Department of Pharmacology, Cardiovascular Research Institute Maastricht (CARIM), Maastricht University, The Netherlands.
  • Brans B; Department of Nuclear Medicine, Maastricht University Medical Center, The Netherlands.
  • Vogg AT; Department of Nuclear Medicine, University Hospital Aachen, Germany.
  • Neumann D; Department of Molecular Genetics, Cardiovascular Research Institute Maastricht (CARIM), Maastricht University, The Netherlands.
  • Glatz JF; Department of Molecular Genetics, Cardiovascular Research Institute Maastricht (CARIM), Maastricht University, The Netherlands.
  • Luiken JJ; Department of Molecular Genetics, Cardiovascular Research Institute Maastricht (CARIM), Maastricht University, The Netherlands. Electronic address: j.luiken@maastrichtuniversity.nl.
J Mol Cell Cardiol ; 76: 208-17, 2014 Nov.
Article em En | MEDLINE | ID: mdl-25173922
ABSTRACT
In the insulin resistant heart, energy fuel selection shifts away from glucose utilization towards almost complete dependence on long-chain fatty acids (LCFA). This shift results in excessive cardiac lipid accumulation and eventually heart failure. Lipid-induced cardiomyopathy may be averted by strategies that increase glucose uptake without elevating LCFA uptake. Protein kinase-D1 (PKD1) is involved in contraction-induced glucose, but not LCFA, uptake allowing to hypothesize that this kinase is an attractive target to treat lipid-induced cardiomyopathy. For this, cardiospecific constitutively active PKD1 overexpression (caPKD1)-mice were subjected to an insulin resistance-inducing high fat-diet for 20-weeks. Substrate utilization was assessed by microPET and cardiac function by echocardiography. Cardiomyocytes were isolated for measurement of substrate uptake, lipid accumulation and insulin sensitivity. Wild-type mice on a high fat-diet displayed increased basal myocellular LCFA uptake, increased lipid deposition, greatly impaired insulin signaling, and loss of insulin-stimulated glucose and LCFA uptake, which was associated with concentric hypertrophic remodeling. The caPKD1 mice on high-fat diet showed none of these characteristics, whereas on low-fat diet a shift towards cardiac glucose utilization in combination with hypertrophy and ventricular dilation was observed. In conclusion, these data suggest that PKD pathway activation may be an attractive therapeutic strategy to mitigate lipid accumulation, insulin resistance and maladaptive remodeling in the lipid-overloaded heart, but this requires further investigation.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Proteína Quinase C / Resistência à Insulina / Cardiomiopatia Dilatada Limite: Animals Idioma: En Ano de publicação: 2014 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Proteína Quinase C / Resistência à Insulina / Cardiomiopatia Dilatada Limite: Animals Idioma: En Ano de publicação: 2014 Tipo de documento: Article