Literature DB >> 11297610

Changes in non-22-kilodalton (kDa) isoforms of growth hormone (GH) after administration of 22-kDa recombinant human GH in trained adult males.

J D Wallace1, R C Cuneo, M Bidlingmaier, P A Lundberg, L Carlsson, C L Boguszewski, J Hay, M Boroujerdi, A Cittadini, R Dall, T Rosén, C J Strasburger.   

Abstract

GH is being used by elite athletes to enhance sporting performance. To examine the hypothesis that exogenous 22-kDa recombinant human GH (rhGH) administration could be detected through suppression of non-22-kDa isoforms of GH, we studied seventeen aerobically trained males (age, 26.9 +/- 1.5 yr) randomized to rhGH or placebo treatment (0.15 IU/kg/day for 1 week). Subjects were studied at rest and in response to exercise (cycle-ergometry at 65% of maximal work capacity for 20 min). Serum was assayed for total GH (Pharmacia IRMA and pituitary GH), 22-kDa GH (2 different 2-site monoclonal immunoassays), non-22-kDa GH (22-kDa GH-exclusion assay), 20-kDa GH, and immunofunctional GH. In the study, 3 h after the last dose of rhGH, total and 22-kDa GH concentrations were elevated, reflecting exogenous 22-kDa GH. Non-22-kDa and 20-kDa GH levels were suppressed. Regression of non-22-kDa or 20-kDa GH against total or 22-kDa GH produced clear separation of treatment groups. In identical exercise studies repeated between 24 and 96 h after cessation of treatment, the magnitude of the responses of all GH isoforms was suppressed (P < 0.01), but the relative proportions were similar to those before treatment. We conclude: 1) supraphysiological doses of rhGH in trained adult males suppressed exercise-stimulated endogenous circulating isoforms of GH for up to 4 days; 2) the clearest separation of treatment groups required the simultaneous presence of high exogenous 22-kDa GH and suppressed 20-kDa or non-22-kDa GH concentrations; and 3) these methods may prove useful in detecting rhGH abuse in athletes.

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Year:  2001        PMID: 11297610     DOI: 10.1210/jcem.86.4.7379

Source DB:  PubMed          Journal:  J Clin Endocrinol Metab        ISSN: 0021-972X            Impact factor:   5.958


  13 in total

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Review 3.  Adverse health consequences of performance-enhancing drugs: an Endocrine Society scientific statement.

Authors:  Harrison G Pope; Ruth I Wood; Alan Rogol; Fred Nyberg; Larry Bowers; Shalender Bhasin
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Authors:  Lindsey J Anderson; Jamie M Tamayose; Jose M Garcia
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Authors:  M Maimaiti; Y Tanahashi; Z Mohri; K Fujieda
Journal:  J Clin Lab Anal       Date:  2012-09       Impact factor: 2.352

Review 6.  Indirect evidence of hormone abuse. Proof of doping?

Authors:  F Minuto; A Barreca; G Melioli
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Review 7.  Growth hormone, IGF-I and insulin and their abuse in sport.

Authors:  R I G Holt; P H Sönksen
Journal:  Br J Pharmacol       Date:  2008-03-31       Impact factor: 8.739

8.  A comparison of the growth responses following intramuscular GHRH plasmid administration versus daily growth hormone injections in young pigs.

Authors:  Amir S Khan; Ruxandra Draghia-Akli; Roman J Shypailo; Kenneth I Ellis; Harry Mersmann; Marta L Fiorotto
Journal:  Mol Ther       Date:  2009-10-06       Impact factor: 11.454

9.  Coupling Complete Blood Count and Steroidomics to Track Low Doses Administration of Recombinant Growth Hormone: An Anti-Doping Perspective.

Authors:  Luca Narduzzi; Corinne Buisson; Marie-Line Morvan; Alexandre Marchand; Michel Audran; Yves Le Bouc; Emmanuelle Varlet-Marie; Magnus Ericsson; Bruno Le Bizec; Gaud Dervilly
Journal:  Front Mol Biosci       Date:  2021-06-10

Review 10.  Growth hormone doping: a review.

Authors:  Ioulietta Erotokritou-Mulligan; Richard Ig Holt; Peter H Sönksen
Journal:  Open Access J Sports Med       Date:  2011-07-27
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