CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Testosterone

  • Hormone replacement therapy in morphine-induced hypogonadic male chronic pain patients. 📎

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    Abstract Title:

    Hormone replacement therapy in morphine-induced hypogonadic male chronic pain patients.

    Abstract Source:

    Reprod Biol Endocrinol. 2011;9:26. Epub 2011 Feb 18. PMID: 21332999

    Abstract Author(s):

    Anna Maria Aloisi, Ilaria Ceccarelli, Maria Carlucci, Annalisa Suman, Gianfranco Sindaco, Sergio Mameli, Valentina Paci, Laura Ravaioli, Giandomenico Passavanti, Valeria Bachiocco, Gilberto Pari

    Article Affiliation:

    Department of Physiology, Section of Neuroscience and Applied Physiology, University of Siena, Siena, Italy. This email address is being protected from spambots. You need JavaScript enabled to view it.

    Abstract:

    BACKGROUND:In male patients suffering from chronic pain, opioid administration induces severe hypogonadism, leading to impaired physical and psychological conditions such as fatigue, anaemia and depression. Hormone replacement therapy is rarely considered for these hypogonadic patients, notwithstanding the various pharmacological solutions available.

    METHODS:To treat hypogonadism and to evaluate the consequent endocrine, physical and psychological changes in male chronic pain patients treated with morphine (epidural route), we tested the administration of testosterone via a gel formulation for one year. Hormonal (total testosterone, estradiol, free testosterone, DHT, cortisol), pain (VAS and other pain questionnaires), andrological (Ageing Males' Symptoms Scale-AMS) and psychological (POMS, CES-D and SF-36) parameters were evaluated at baseline (T0) and after 3, 6 and 12 months (T3, T6, T12 respectively).

    RESULTS:The daily administration of testosterone increased total and free testosterone and DHT at T3, and the levels remained high until T12. Pain rating indexes (QUID) progressively improved from T3 to T12 while the other pain parameters (VAS, Area%) remained unchanged. The AMS sexual dimension and SF-36 Mental Index displayed a significant improvement over time.

    CONCLUSIONS:In conclusion, our results suggest that a constant, long-term supply of testosterone can induce a general improvement of the male chronic pain patient's quality of life, an important clinical aspect of pain management.

  • Testosterone physiology in resistance exercise and training: the up-stream regulatory elements.

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    Abstract Title:

    Testosterone physiology in resistance exercise and training: the up-stream regulatory elements.

    Abstract Source:

    Sports Med. 2010 Dec 1;40(12):1037-53. PMID: 21058750

    Abstract Author(s):

    Jakob L Vingren, William J Kraemer, Nicholas A Ratamess, Jeffrey M Anderson, Jeff S Volek, Carl M Maresh

    Article Affiliation:

    Applied Physiology Laboratories, Department of Kinesiology, Health Promotion and Recreation, University of North Texas, Denton, Texas, USA.

    Abstract:

    Testosterone is one of the most potent naturally secreted androgenic-anabolic hormones, and its biological effects include promotion of muscle growth. In muscle, testosterone stimulates protein synthesis (anabolic effect) and inhibits protein degradation (anti-catabolic effect); combined, these effects account for the promotion of muscle hypertrophy by testosterone. These physiological signals from testosterone are modulated through the interaction of testosterone with the intracellular androgen receptor (AR). Testosterone is important for the desired adaptations to resistance exercise and training; in fact, testosterone is considered the major promoter of muscle growth and subsequent increase in muscle strength in response to resistance training in men. The acute endocrine response to a bout of heavy resistance exercise generally includes increased secretion of various catabolic (breakdown-related) and anabolic (growth-related) hormones including testosterone. The response of testosterone and AR to resistance exercise is largely determined by upper regulatory elements including the acute exercise programme variable domains, sex and age. In general, testosterone concentration is elevated directly following heavy resistance exercise in men. Findings on the testosterone response in women are equivocal with both increases and no changes observed in response to a bout of heavy resistance exercise. Age also significantly affects circulating testosterone concentrations. Until puberty, children do not experience an acute increase in testosterone from a bout of resistance exercise; after puberty some acute increases in testosterone from resistance exercise can be found in boys but not in girls. Aging beyond 35-40 years is associated with a 1-3% decline per year in circulating testosterone concentration in men; this decline eventually results in the condition known as andropause. Similarly, aging results in a reduced acute testosterone response to resistance exercise in men. In women, circulating testosterone concentration also gradually declines until menopause, after which a drastic reduction is found. In summary, testosterone is an important modulator of muscle mass in both men and women and acute increases in testosterone can be induced by resistance exercise. In general, the variables within the acute programme variable domains must be selected such that the resistance exercise session contains high volume and metabolic demand in order to induce an acute testosterone response.

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