Title of article :
Preserved response of mitochondrial function to short-term endurance training in skeletal muscle of heart transplant recipients
Author/Authors :
Joffrey Zoll، نويسنده , , Benoit N’Guessan، نويسنده , , Florence Ribera، نويسنده , , ELIANE LAMPERT، نويسنده , , Dominique Fortin، نويسنده , , Vladimir Veksler، نويسنده , , Xavier Bigard، نويسنده , , Bernard Geny، نويسنده , , JEAN LONSDORFER، نويسنده , , Renee Ventura-Clapier، نويسنده , , BERTRAND METTAUER، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2003
Pages :
7
From page :
126
To page :
132
Abstract :
Objectives We sought to determine whether intrinsic mitochondrial function and regulation were altered in heart transplant recipients (HTRs) and to investigate the response of mitochondrial function to six-week endurance training in these patients. Background Despite the normalization of central oxygen transport during exercise, HTRs are still characterized by limited exercise capacity, which is thought to result from skeletal muscle metabolic abnormalities. Methods Twenty HTRs agreed to have vastus lateralis biopsies and exercise testing: before and after training for 12 of them and before and after the same control period for eight subjects unwilling to train. Mitochondrial respiration was evaluated on saponin-permeabilized muscle fibers in the absence or presence (maximum respiration rate [Vmax]) of saturating adenosine diphosphate. Results Mitochondrial function was preserved at the level of sedentary subjects in untrained HTRs, although they showed 28 ± 5% functional aerobic impairment (FAI). After training, Vmax, citrate synthase, cytochrome c oxidase, and mitochondrial creatine kinase (CK) activities were significantly increased by 48%, 40%, 67%, and 53%, respectively (p < 0.05), whereas FAI decreased to 12 ± 5% (p < 0.01). The control of mitochondrial respiration by creatine and mitochondrial CK was also improved (p < 0.01), suggesting that phosphocreatine synthesis and transfer by the mitochondrial CK become coupled to oxidative phosphorylation, as shown in trained, healthy subjects. Conclusions In HTRs, the mitochondrial properties of skeletal muscle were preserved and responded well to training, reaching values of physically active, healthy subjects. This suggests that, in HTRs, immunosuppressive drugs do not alter the intrinsic muscle oxidative capacities and that the patients’ physical handicap results from nonmitochondrial mechanisms. Objectives We sought to determine whether intrinsic mitochondrial function and regulation were altered in heart transplant recipients (HTRs) and to investigate the response of mitochondrial function to six-week endurance training in these patients. Background Despite the normalization of central oxygen transport during exercise, HTRs are still characterized by limited exercise capacity, which is thought to result from skeletal muscle metabolic abnormalities. Methods Twenty HTRs agreed to have vastus lateralis biopsies and exercise testing: before and after training for 12 of them and before and after the same control period for eight subjects unwilling to train. Mitochondrial respiration was evaluated on saponin-permeabilized muscle fibers in the absence or presence (maximum respiration rate [Vmax]) of saturating adenosine diphosphate. Results Mitochondrial function was preserved at the level of sedentary subjects in untrained HTRs, although they showed 28 ± 5% functional aerobic impairment (FAI). After training, Vmax, citrate synthase, cytochrome c oxidase, and mitochondrial creatine kinase (CK) activities were significantly increased by 48%, 40%, 67%, and 53%, respectively (p < 0.05), whereas FAI decreased to 12 ± 5% (p < 0.01). The control of mitochondrial respiration by creatine and mitochondrial CK was also improved (p < 0.01), suggesting that phosphocreatine synthesis and transfer by the mitochondrial CK become coupled to oxidative phosphorylation, as shown in trained, healthy subjects. Conclusions In HTRs, the mitochondrial properties of skeletal muscle were preserved and responded well to training, reaching values of physically active, healthy subjects. This suggests that, in HTRs, immunosuppressive drugs do not alter the intrinsic muscle oxidative capacities and that the patients’ physical handicap results from nonmitochondrial mechanisms.
Keywords :
CSA , Vo2 , FAI , VT , functional aerobic impairment , ventilatory threshold , HTRs , MTP , heart transplant recipients , maximum tolerated power , MyHC , ADP , T , myosin heavy chain , adenosine diphosphate , trained subjects , CHF , UT , CK , Vmax , Congestive heart failure , untrained subjects , cyclosporin A , Oxygen consumption , Creatine kinase , maximum respiration rate
Journal title :
JACC (Journal of the American College of Cardiology)
Serial Year :
2003
Journal title :
JACC (Journal of the American College of Cardiology)
Record number :
598104
Link To Document :
بازگشت