Literature DB >> 15465890

Exercise improves impaired ventricular function and alterations of cardiac myofibrillar proteins in diabetic dyslipidemic pigs.

F Steven Korte1, Eric A Mokelke, Michael Sturek, Kerry S McDonald.   

Abstract

Chronic diabetes is often associated with cardiomyopathy, which may result, in part, from defects in cardiac muscle proteins. We investigated whether a 20-wk porcine model of diabetic dyslipidemia (DD) would impair in vivo myocardial function and yield alterations in cardiac myofibrillar proteins and whether endurance exercise training would improve these changes. Myocardial function was depressed in anesthetized DD pigs (n = 12) compared with sedentary controls (C; n = 13) as evidenced by an approximately 30% decrease in left ventricular fractional shortening and an approximately 35% decrease in +dP/dt measured by noninvasive echocardiography and direct cardiac catheterization, respectively. This depression in myocardial function was improved with chronic exercise as treadmill-trained DD pigs (DDX) (n = 13) had significantly greater fractional shortening and +dP/dt than DD animals. Interestingly, the isoform expression pattern of the myofibrillar regulatory protein, cardiac troponin T (cTnT), was significantly shifted from cTnT1 toward cTnT2 and cTnT3 in DD pigs. Furthermore, this change in cTnT isoform expression pattern was prevented in DDX pigs. Finally, there was a decrease in baseline levels of cAMP-dependent protein kinase-induced phosphorylation of the myofibrillar proteins troponin I and myosin-binding protein-C in DD animals. Overall, these results indicate that 20 wk of DD lead to myocardial dysfunction coincident with significant alterations in myofibrillar proteins, both of which are prevented with endurance exercise training, implying that changes in myofibrillar proteins may contribute, at least in part, to cardiac dysfunction associated with diabetic cardiomyopathy.

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Year:  2004        PMID: 15465890     DOI: 10.1152/japplphysiol.00551.2004

Source DB:  PubMed          Journal:  J Appl Physiol (1985)        ISSN: 0161-7567


  14 in total

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3.  Metabolic syndrome and coronary artery disease in Ossabaw compared with Yucatan swine.

Authors:  Zachary P Neeb; Jason M Edwards; Mouhamad Alloosh; Xin Long; Eric A Mokelke; Michael Sturek
Journal:  Comp Med       Date:  2010-08       Impact factor: 0.982

4.  Exercise mitigates homocysteine - β2-adrenergic receptor interactions to ameliorate contractile dysfunction in diabetes.

Authors:  Paras Kumar Mishra; Olubusayo Awe; Naira Metreveli; Natia Qipshidze; Irving G Joshua; Suresh C Tyagi
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5.  Ca²⁺ sensitization of cardiac myofilament proteins contributes to exercise training-enhanced myocardial function in a porcine model of chronic occlusion.

Authors:  Vandana Sarin; Mariappan Muthuchamy; Cristine L Heaps
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Review 6.  Contractile apparatus dysfunction early in the pathophysiology of diabetic cardiomyopathy.

Authors:  Mark T Waddingham; Amanda J Edgley; Hirotsugu Tsuchimochi; Darren J Kelly; Mikiyasu Shirai; James T Pearson
Journal:  World J Diabetes       Date:  2015-07-10

7.  Enhanced skeletal muscle expression of extracellular superoxide dismutase mitigates streptozotocin-induced diabetic cardiomyopathy by reducing oxidative stress and aberrant cell signaling.

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8.  Comparative analysis of heart functions in micropigs and conventional pigs using echocardiography and radiography.

Authors:  Min Young Lee; Sang Hun Lee; Seung Gon Lee; Soo Hyun Park; Chai Yong Lee; Kye Hun Kim; Sun Ho Hwang; Sang Yub Lim; Young Keun Ahn; Ho Jae Han
Journal:  J Vet Sci       Date:  2007-03       Impact factor: 1.672

9.  Exercise-induced cardiac performance in autoimmune (type 1) diabetes is associated with a decrease in myocardial diacylglycerol.

Authors:  Rajprasad Loganathan; Lesya Novikova; Igor G Boulatnikov; Irina V Smirnova
Journal:  J Appl Physiol (1985)       Date:  2012-07-12

10.  Fluvastatin-induced reduction of oxidative stress ameliorates diabetic cardiomyopathy in association with improving coronary microvasculature.

Authors:  Takuya Shida; Takashi Nozawa; Mitsuo Sobajima; Hiroyuki Ihori; Akira Matsuki; Hiroshi Inoue
Journal:  Heart Vessels       Date:  2013-08-25       Impact factor: 2.037

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