Literature DB >> 2733577

Urinary 3-methylhistidine excretion increases with repeated weight training exercise.

J M Pivarnik1, J F Hickson, I Wolinsky.   

Abstract

This investigation examines the effect of progressive resistance weight training exercise on urinary 3-methylhistidine (3-MH) excretions in untrained subjects. For 19 consecutive days, 11 males were fed a weight maintenance, lactovegetarian diet which contained the Recommended Dietary Allowance (0.8g.kg-1.d-1) for protein. No exercise was performed for the first 7 d of the study. Subjects were strength tested on day 8 and performed upper and lower body weight training exercises from days 9-19. Complete, 24-h urine collections were obtained from each subject on a daily basis. Samples were assayed for creatinine and 3-MH. Stable baseline 3-MH values were present during the pre-exercise control period. Significant increases in 3-MH occurred by study day 11, which was the third day of weight training exercise. This was true regardless of whether the data were expressed by daily excretions (microM.d-1; P less than 0.01), per unit of body weight (microM.kg-1.d-1; P less than 0.005), or per unit of creatinine excretion (microM.g Creat-1.d-1; P less than 0.001). Since urinary 3-MH is an index of actin and myosin catabolism, these data support the hypothesis that the rate of skeletal muscle degradation is increased during strength building exercises.

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Year:  1989        PMID: 2733577

Source DB:  PubMed          Journal:  Med Sci Sports Exerc        ISSN: 0195-9131            Impact factor:   5.411


  8 in total

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Review 5.  Amino acid supplementation and exercise performance. Analysis of the proposed ergogenic value.

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8.  Testosterone therapy induces molecular programming augmenting physiological adaptations to resistance exercise in older men.

Authors:  Nima Gharahdaghi; Supreeth Rudrappa; Matthew S Brook; Iskandar Idris; Hannah Crossland; Claire Hamrock; Muhammad Hariz Abdul Aziz; Fawzi Kadi; Janelle Tarum; Paul L Greenhaff; Dumitru Constantin-Teodosiu; Jessica Cegielski; Bethan E Phillips; Daniel J Wilkinson; Nathaniel J Szewczyk; Kenneth Smith; Philip J Atherton
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  8 in total

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