Literature DB >> 12797841

The exercise-induced growth hormone response in athletes.

Richard J Godfrey1, Zahra Madgwick, Gregory P Whyte.   

Abstract

Human growth hormone (hGH) is secreted in a pulsatile fashion, generally following a circadian rhythm. A number of physiological stimuli can initiate hGH secretion, the most powerful, non-pharmacological of which are sleep and exercise. hGH has many varied roles throughout life, from growth itself, including the turnover of muscle, bone and collagen, to the regulation of selective aspects of metabolic function including increased fat metabolism and the maintenance of a healthier body composition in later life. The exercise-induced growth hormone response (EIGR) is well recognised and although the exact mechanisms remain elusive, a number of candidates have been implicated. These include neural input, direct stimulation by catecholamines, lactate and or nitric oxide, and changes in acid-base balance. Of these, the best candidates appear to be afferent stimulation, nitric oxide and lactate. Resistance training results in a significant EIGR. Evidence suggests that load and frequency are determining factors in the regulation of hGH secretion. Despite the significant EIGR induced by resistance training, much of the stimulus for protein synthesis has been attributed to insulin-like growth factor-1 with modest contributions from the hGH-GH receptor interaction on the cell membrane. The EIGR to endurance exercise is associated with the intensity, duration, frequency and mode of endurance exercise. A number of studies have suggested an intensity 'threshold' exists for EIGR. An exercise intensity above lactate threshold and for a minimum of 10 minutes appears to elicit the greatest stimulus to the secretion of hGH. Exercise training above the lactate threshold may amplify the pulsatile release of hGH at rest, increasing 24-hour hGH secretion. The impact of chronic exercise training on the EIGR remains equivocal. Recent evidence suggests that endurance training results in decreased resting hGH and a blunted EIGR, which may be linked to an increased tissue sensitivity to hGH. While the potential ergogenic effects of exogenous GH administration are attractive to some athletes, the abuse of GH has been associated with a number of pathologies. Identification of a training programme that will optimise the EIGR may present a viable alternative. Ageing is often associated with a progressive decrease in the volume and, especially, the intensity of exercise. A growing body of evidence suggests that higher intensity exercise is effective in eliciting beneficial health, well-being and training outcomes. In a great many cases, the impact of some of the deleterious effects of ageing could be reduced if exercise focused on promoting the EIGR. This review examines the current knowledge and proposed mechanisms for the EIGR, the physiological consequences of endurance, strength and power training on the EIGR and its potential effects in elderly populations, including the aged athlete.

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Year:  2003        PMID: 12797841     DOI: 10.2165/00007256-200333080-00005

Source DB:  PubMed          Journal:  Sports Med        ISSN: 0112-1642            Impact factor:   11.136


  107 in total

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  39 in total

Review 1.  Neurocognitive aging and cardiovascular fitness: recent findings and future directions.

Authors:  Stan J Colcombe; Arthur F Kramer; Edward McAuley; Kirk I Erickson; Paige Scalf
Journal:  J Mol Neurosci       Date:  2004       Impact factor: 3.444

Review 2.  Ageing, growth hormone and physical performance.

Authors:  F Lanfranco; L Gianotti; R Giordano; M Pellegrino; M Maccario; E Arvat
Journal:  J Endocrinol Invest       Date:  2003-09       Impact factor: 4.256

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Authors:  Vanessa D Sherk; Kyle A Sherk; SoJung Kim; Kaelin C Young; Debra A Bemben
Journal:  Eur J Appl Physiol       Date:  2010-10-21       Impact factor: 3.078

Review 4.  Blood flow restriction training and the exercise pressor reflex: a call for concern.

Authors:  Marty D Spranger; Abhinav C Krishnan; Phillip D Levy; Donal S O'Leary; Scott A Smith
Journal:  Am J Physiol Heart Circ Physiol       Date:  2015-09-04       Impact factor: 4.733

5.  Effect of training on GH and IGF-1 responses to a submaximal exercise in football players.

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Journal:  Eur J Appl Physiol       Date:  2005-09-07       Impact factor: 3.078

6.  Growth hormone 1 (GH1) gene and performance and post-race rectal temperature during the South African Ironman triathlon.

Authors:  B Walpole; T D Noakes; M Collins
Journal:  Br J Sports Med       Date:  2006-02       Impact factor: 13.800

7.  Growth hormone secretion in relation to plasma lactate and glucose concentrations during a maximal treadmill exercise test in horses.

Authors:  V Borromeo; F Ferrucci; E Zucca; A Berrini; C Secchi
Journal:  Vet Res Commun       Date:  2008-09       Impact factor: 2.459

8.  Young elite athletes of different sport disciplines present with an increase in pulsatile secretion of growth hormone compared with non-elite athletes and sedentary subjects.

Authors:  G Ubertini; A Grossi; D Colabianchi; R Fiori; C Brufani; C Bizzarri; G Giannone; A E Rigamonti; A Sartorio; E E Muller; M Cappa
Journal:  J Endocrinol Invest       Date:  2008-02       Impact factor: 4.256

Review 9.  Unique aspects of competitive weightlifting: performance, training and physiology.

Authors:  Adam Storey; Heather K Smith
Journal:  Sports Med       Date:  2012-09-01       Impact factor: 11.136

10.  Effects of muscular strength training and growth hormone (GH) supplementation on femoral bone tissue: analysis by Raman spectroscopy, dual-energy X-ray absorptiometry, and mechanical resistance.

Authors:  Robson Chacon Castoldi; Guilherme Akio Tamura Ozaki; Thiago Alves Garcia; Ines Cristina Giometti; Tatiana Emy Koike; Regina Celi Trindade Camargo; João Domingos Augusto Dos Santos Pereira; Carlos José Leopoldo Constantino; Mário Jefferson Quirino Louzada; José Carlos Silva Camargo Filho; William Dias Belangero
Journal:  Lasers Med Sci       Date:  2019-06-15       Impact factor: 3.161

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