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Review

Stress and the neuroendocrine system: the role of exercise as a stressor and modifier of stress

Pages 783-792 | Published online: 10 Jan 2014

References

  • McEwen BS. Stressed or stressed out: what is the difference? J. Psychiatry Neurosci.30(5), 315–318 (2005).
  • McEwen BS. Stress, definition and concepts of. In: Encyclopedia of Stress, Volume 3. Fink G (Ed.). Academic Press, CA, USA 508–509 (2000).
  • McEwen BS. Protective and damaging effects of stress mediators. N. Engl. J. Med.338(3), 171–179 (1998).
  • McEwen BS. Allostasis and allostatic load: implications for neuropsychopharmacology. Neuropsychopharm.22, 108–124 (2000).
  • Cannon WB. The emergency function of the adrenal medulla in pain and in the major emotions. Am. J. Physiol.33, 356–372 (1914).
  • Selye H. A syndrome produced by diverse nocuous agents. Nature138, 32–36 (1936).
  • Mason JW. A re-evaluation of the concept of ‘non-specificity’ in stress theory. J. Psychiat. Res.8, 323–328 (1971).
  • Chrousos CP, Gold PW. The concept of stress systems disorders: overview of physical and behavioral homeostasis. JAMA267, 1244–1252 (1992).
  • Sterling P, Eyer J. Allostasis: a new paradigm to explain arousal pathology. In: Handbook of Life Stress, Cognition and Health. Fisher S (Ed.). J Wily & Sons, NY, USA 629–649 (1988).
  • Young E, Abelson J, Lightman SL. Cortisol pulsatility and its role in stress regulation and health. Front. Neuroendocrinol.25, 69–76 (2004).
  • Levine S. Developmental determines of sensitivity and resistance to stress. Psychoneuroendocrinol.30, 939–946 (2005).
  • Goldstein DS. Catecholamines and stress. Endocrine Reg.37, 69–80 (2003).
  • Charmandari E, Tsigos C, Chrousos G. Endocrinology of the stress response. Ann. Rev. Physiol.67, 259–284 (2005).
  • Tremblay MS, Chu SY, Mureika R. Methodological and statistical considerations for exercise-related hormone evaluations. Sports Med.20(2), 90–108 (1995).
  • Galbo H. Hormonal and Metabolic Adaptation to Exercise. Georg Thieme Verlag, Stuttgart, Germany, 2–117 (1983).
  • Viru A. Hormonal Ensemble in Exercise – Hormones in Muscular Activity, Volume 1. CRC Press, FL, USA, 34–96 (1985).
  • Viru A. Plasma hormones and physical exercise. Int. J. Sports Med.13, 201–209 (1992).
  • Brooks GA, Fahey TD, White TP. Neural-endocrine control of metabolism. In: Exercise Physiology: Human Bioenergetics and its Application, (2nd Edition). Mayfield Publishing, Toronto, Canada, 56–196 (1996).
  • McMurray RG, Hackney AC. Endocrine responses to exercise and training. In: Exercise and Sport Science. Garrett W (Ed.). Lippincott Williams & Wilkins, PA, USA, 135–162 (2000).
  • Davies CTM, Few JD. Effects of exercise on adrenocortical function. J. Appl. Physiol.5, 887–891 (1973).
  • Borer KT. Exercise Endocrinology. Human Kinetics Publishing, IL, USA, 77–96 (2003).
  • Lehmann M, Keul J, Huber G, DaPrada M. Plasma catecholamines in trained and untrained volunteers during graded exercise. Int. J. Sports Med.2(3), 143–147 (1981).
  • Farrell PA, Garthwaite TL, Gustafson AB. Plasma adrenocorticotropin and cortisol responses to submaximal and exhaustive exercise. J. Appl. Physiol.55(5), 1441–1444 (1983).
  • Luger A, Deuster PA, Kyle SB et al. Acute hypothalamic-pituitary-adrenal responses to the stress of treadmill exercise: physiologic adaptations to training. N. Engl. J. Med.316(21), 1309–1315 (1987).
  • Struder HK, Hollmann W, Platen P, Rost R, Weicker H, Weber K. Hypothalamic–pituitary–adrenal and –gonadal axis function after exercise in sedentary and endurance trained elderly males. Eur. J. Appl. Physiol. Occup. Physiol.77(3), 285–288 (1998).
  • Hackney AC. Neuroendocrine system, exercise overload and regeneration. In: Overload, Performance Incompetence, and Regeneration in Sport. Lehmann M (Ed.). Kluwer Academic-Plenum, Stuttgart, Germany, 131–177 (1999).
  • Hackney AC, Premo MC, McMurray RG. Influence of aerobic versus anaerobic exercise on the relationship between reproductive hormones in men. J. Sports Sci.13(4), 305–311 (1995).
  • Hackney AC, Viru A. Twenty-four hour cortisol response to multiple daily exercise sessions of moderate and high intensity. Clin. Physiol.19(2), 178–182 (1999).
  • Hackney AC, Viru A, Viru M, Karelson K, Janson T, Siim Fischer K. Adrenergic influence on the hormonal response to exercise in endurance trained men. Presented at: 53rd American College of Sports Medicine meeting. Denver, CO, USA (2006) (Abstract 2572).
  • Obminski Z, Stupnicki R, Lerczak K, Starczewska-Czapowska J, Olszewska-Lelonkiewicz M, Hackney AC. Cortisol and testosterone responses to training and competition stress in ice-dance skaters – a case study. So. African J. Sports Med.9, 23–25 (2002).
  • Loucks AB Heath EM. Dietary restriction reduces luteinizing hormone (LH) pulse frequency during waking hours and increases LH pulse amplitude during sleep in young menstruating women. J. Clin. Endocrinol. Metab.78, 910–915 (1994).
  • Winder WW, Hagberg JM, Hickson RR, Ehsani AA, McLane JA. Time course of sympathoadrenergic adaptation to endurance exercise training in man. J. Appl. Physiol.45, 370–374 (1978).
  • Bobbert T, Brechtel L, Mai K et al. Adaptation of the hypothalamic–pituitary hormones during intensive endurance training. Clin. Endocrinol.63, 530–536 (2005).
  • Crews DJ, Landers DM. A meta-analytic review of aerobic fitness and reactivity to psychosocial stressors. Med. Sci. Sports Exerc.19(5) S114–S120 (1987).
  • Blair SN, Kampert JB, Kohl HW et al. Influence of cardiorespiratory fitness and other precursors on cardiovascular disease and all-cause mortality in men and women. JAMA276(3), 205–210 (1996).
  • Kjaer M, Mikines KJ, Linstow MV, Nicolaisen T, Galbo H. Effect of 5 wk of detraining on epinephrine response to insulin-induced hypoglycemia in athletes. J. Appl. Physiol.72(3), 1201–1204 (1992).
  • Deuster PA, Chrousos GP, Luger A et al. Hormonal and metabolic responses of untrained, moderately trained, and highly trained men to three exercise intensities. Metabolism38(2), 141–148 (1989).
  • Korkushko OV, Frolkis MV, Shatilo VB. Reaction of pituitary–adrenal and autonomic nervous system to stress in trained and untrained elderly people. J. Auton. Nerv. Syst.54(1), 27–32 (1995).
  • Park E, Chan O, Li Q et al. Changes in basal hypothalamic–pituitary–adrenal activity during exercise are centrally mediated. Am. J. Physiol.289, R1360–R1371 (2005).
  • Traustadottir T, Bosch PR, Matt KS. The HPA axis response to stress in women: effects of aging and fitness. Pyschoneuroendocrinol.30, 392–402 (2005).
  • World Health Organization Global Strategy on Diet, Physical Activity and Health: Obesity and Overweight Facts Summary WHO technical report series, No.916 (2003).
  • Angeli A, Minetto M, Dovio A, Paccotti P. The overtraining syndrome in athletes: a stress-related disorder. J. Endocrinol. Invest.27(6), 603–612 (2004).
  • Lehmann M, Foster C, Keul J. Overtraining in endurance athletes: a brief review. Med. Sci. Sports Exerc.25, 854–862 (1993).
  • Lehmann M, Lormes W, Opitz-Gress A et al. Training and overtraining: an overview and experimental results in endurance sports. J. Sports Med. Phys. Fit.37, 7–17 (1997).
  • Meeusen R, Duclos M, Gleeson M, Rietjens G, Steinacker J, Urhausen A. Prevention, diagnosis and treatment of the overtraining syndrome: ECSS Position Statement ‘Task Force’. Eur. J. Sport Sci.6(1), 1–14 (2006).
  • Viru A, Viru M. Cortisol – essential adaptation hormone in exercise. Int. J. Sport Med.25, 461–464 (2004).
  • Fry AC, Schilling BK, Weiss LW, Chiu L. β adrenergic down-regulation and performance decrements during high intensity resistance exercise overtraining. J. Appl. Physiol. (2006) (In Press).
  • Hackney AC. Hormonal changes at rest in overtrained endurance athletes. Biol. Sport8(2), 49–56 (1991).
  • Fry AC, Steinacker JM, Meeusen R. Endocrinology of overtraining. In: The Endocrine System in Sports and Exercise. Kraaemer WJ, Rogol AD (Eds). Blackwell Publishing, Oxford, UK, 578, 584–593 (2005).
  • Tsigo C, Chrousos GP. Hypothalamic–pituitary–adrenal axis, neuroendocrine factors and stress. J. Psychosom. Res.53, 865–871 (2002).
  • Rogero MM, Mendes RR, Tirapegui J. Aspectos neuroendocrinos e nutricionais em atletas com overtraining. Arq. Bras. Endocrinol. Metabol..49(3), 359–368 (2005).
  • Barron G, Noakes T, Levy W, Smidt C, Millar R. Hypothalamic dysfunction in overtrained athletes. J. Clin. Endocrinol. Metab.60, 803–806 (1995).
  • Smith LL. Tissue trauma: the underlying cause of the overtraining syndrome? J. Strength Cond. Res.18(30), 185–193 (2004).
  • Petersen AMW, Pedersen BK. The anti-inflammatory effect of exercise. J. Appl. Physiol.98, 1154–1162 (2005).
  • Febbraio MA, Pedersen BK. Contraction-induced myokine production and release: is skeletal muscle an endocrine organ? Exerc. Sport Sci. Rev.33(3), 114–119 (2005).
  • Mastorakos G, Pavlatou M, Diamanti-Kandaraki E, Chrousos GP. Exercise and the stress system. Hormones (Athens)4(2), 73–89 (2005).
  • Hackney AC. Exercise as a stressor to the human neuroendocrine system. Medicina42(10), 788–796 (2006).

Website

  • Tsigos C, Kyrou I, Chrousos G (2006). Stress, endocrine physiology and patho-physiology www.endotext.com/adrenal/

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