Int J Sports Med 2003; 24(3): 212-216
DOI: 10.1055/s-2003-39094
Immunology
© Georg Thieme Verlag Stuttgart · New York

Plasma Zinc and Immune Markers in Runners in Response to a Moderate Increase in Training Volume

J. M.  Peake1 , D. F.  Gerrard2 , J. F. T.  Griffin3
  • 1 School of Human Movement Studies, University of Queensland, QLD 4072, Australia
  • 2 School of Medicine, University of Otago, Dunedin, New Zealand
  • 3 Department of Microbiology, University of Otago, Dunedin, New Zealand
Further Information

Publication History



Accepted after revision: September 10, 2002

Publication Date:
12 May 2003 (online)

Abstract

Changes in plasma zinc concentration and markers of immune function were examined in a group of 10 male runners (n = 10) following a moderate increase in training over four weeks. Seven sedentary males acted as controls. Fasting blood samples were taken at rest, before (T0) and after (T4) four weeks of increased (+ 16 %) training and after two weeks of reduced (-31 %) training (T6). Blood was analysed for plasma zinc concentration, differential leucocyte counts, lymphocyte subpopulations and lymphocyte proliferation using incorporation of 3H-thymidine. The runners increased their training volume by 16 % over the four weeks. When compared with the nonathletes, the runners had lower concentrations of plasma zinc (p = 0.012), CD3+ (p = 0.042) and CD19+ lymphocytes (p = 0.010) over the four weeks. Lymphocyte proliferation in response to Concanavalin A stimulation was greater in the runners (p = 0.0090). Plasma zinc concentration and immune markers remained constant during the study. Plasma zinc concentration correlated with total leucocyte counts in the athletes at T6 (r = -0.72, p < 0.05) and with Pokeweed mitogen stimulation in the nonathletes at T6 (r = -0.92, p < 0.05). Therefore, athletes are unlikely to benefit from zinc supplementation during periods of moderately increased training volume.

References

  • 1 Anderson R A, Bryden N A, Polansky M M, Deuster P A. Acute exercise effects on urinary losses and serum concentrations of copper and zinc of moderately trained and untrained men consuming a controlled diet.  Analyst. 1995;  120 867-870
  • 2 Baj Z, Kantorski J, Majewska E, Zeman K, Pokoca L, Fornalczyk E, Tchorzewski H, Sulowska Z, Lewicki R. Immunological status of competitive cyclists before and after the training season.  Int J Sports Med. 1994;  15 319-324
  • 3 Baum M, Liesen H, Enneper J. Leucocytes, lymphocytes, activation parameters and cell adhesion molecules in middle distance runners under different training conditions.  International Journal of Sports Medicine. 1994;  15 S122-S126
  • 4 Bordin D, Sartorelli L, Bonanni G, Mastrogiacomo I, Scalco E. High intensity physical exercise induced effects on plasma levels of copper and zinc.  Biol Trace Elem Res. 1993;  36 129-134
  • 5 Brun J F, Dieu-Cambrezy C, Charpiat A, Fons C, Fedou C, Micallef J P, Fussellier M, Bardet L, Orsetti A. Serum zinc in highly trained adolescent gymnasts.  Biol Trace Elem Res. 1995;  47 273-278
  • 6 Deuster P A, Day B A, Singh A, Douglass L, Moser-Veillon P B. Zinc status of highly trained women runners and untrained women.  Am J Clin Nutr. 1989;  49 1295-1301
  • 7 Deuster P A, Kyle S B, Moser P B, Vigersky R A, Singh A, Schoomaker E B. Nutritional survey of highly trained women runners.  Am J Clin Nutr. 1986;  44 954-962
  • 8 Dolev E, Burstein R, Lubin F, Wishnizer R, Chetrit A, Shefi M, Deuster P A. Interpretation of zinc status indicators in a strenuously exercising population.  J Am Diet Assoc. 1995;  95 482-484
  • 9 Dressendorfer R, Sockolov R. Hypozincemia in runners.  The Physician and Sports Medicine. 1980;  8 97-100
  • 10 Endre L, Katona Z, Gyurkovits K. Letter: Zinc deficiency and cellular immune deficiency in acrodermatitis enteropathica.  Lancet. 1975;  1 1196
  • 11 Frost P, Chen J C, Rabbani I, Smith J, Prasad A S. The effect of zinc deficiency on the immune response.  Prog Clin Biol Res. 1977;  14 143-153
  • 12 Gleeson M, McDonald W A, Cripps A W, Pyne D B, Clancy R L, Fricker P A. The effect on immunity of long-term intensive training in elite swimmers.  Clin Exp Immunol. 1995;  102 210-216
  • 13 Haralambie G. Serum zinc in athletes in training.  Int J Sports Med. 1981;  2 135-138
  • 14 Konig D, Weinstock C, Keul J, Northoff H, Berg A. Zinc, iron, and magnesium status in athletes-influence on the regulation of exercise-induced stress and immune function.  Exerc Immunol Rev. 1998;  4 2-21
  • 15 Lehmann M, Mann H, Gastmann U, Keul J, Vetter D, Steinacker J M, Haussinger D. Unaccustomed high-mileage vs. intensity training-related changes in performance and serum amino acid levels.  Int J Sports Med. 1996;  17 187-192
  • 16 Lukaski H C, Bolonchuk W W, Klevay L M, Milne D B, Sandstead H H. Changes in plasma zinc content after exercise in men fed a low-zinc diet.  Am J Physiol. 1984;  247 88-93
  • 17 Miyamura J B, McNutt S W, Lichton I J, Wenkam N S. Altered zinc status of soldiers under field conditions.  J Am Diet Assoc. 1987;  87 595-597
  • 18 Monteiro C P, Varela A, Pinto M, Neves J, Felisberto G M, Vaz C, Bicho M P, Laires M J. Effect of an aerobic training on magnesium, trace elements and antioxidant systems in a Down syndrome population.  Magnes Res. 1997;  10 65-71
  • 19 Mueller O, Villiger B, O’Callaghan B, Simon H U. Immunological effects of competitive versus recreational sports in cross-country skiing.  Int J Sports Med. 2001;  22 52-59
  • 20 Mundie T G, Hare B. Effects of resistance exercise on plasma, erythrocyte, and urine Zn.  Biol Trace Elem Res. 2001;  79 23-28
  • 21 Ndon J A, Snyder A C, Foster C, Wehrenberg W B. Effects of chronic intense exercise training on the leukocyte response to acute exercise.  Int J Sports Med. 1992;  13 176-182
  • 22 Nieman D C, Nehlsen-Cannarella S L, Fagoaga O R, Henson D A, Shannon M, Hjertman J ME, Schmitt R L, Bolton M R, Austin M D, Schilling B K, Thorpe R. Immune function in female elite rowers and non-athletes.  Br J Sports Med. 2000;  34 181-187
  • 23 Nishiyama S, Inomoto T, Nakamura T, Higashi A, Matsuda I. Zinc status relates to hematological deficits in women endurance runners.  J Am Coll Nutr. 1996;  15 359-363
  • 24 Nosaka K, Clarkson P M. Changes in plasma zinc following high force eccentric exercise.  Int J Sport Nutr. 1992;  2 175-184
  • 25 Nova E, Montero A, Lopez-Varela S, Marcos A. Are elite gymnasts really malnourished? Evaluation of diet, anthropometry and immunocompetence.  Nutr Res. 2001;  21 15-29
  • 26 Ohno H, Yamashita K, Doi R, Yamamura K, Kondo T, Taniguchi N. Exercise-induced changes in blood zinc and related proteins in humans.  J Appl Physiol. 1985;  58 1453-1458
  • 27 Oleske J M, Westphal M L, Shore S, Gorden D, Bogden J D, Nahmias A. Zinc therapy of depressed cellular immunity in acrodermatitis enteropathica. Its correction.  Am J Dis Child. 1979;  133 915-918
  • 28 Singh A, Day B A, DeBolt J E, Trostmann U H, Bernier L L, Deuster P A. Magnesium, zinc, and copper status of US Navy SEAL trainees.  Am J Clin Nutr. 1989;  49 695-700
  • 29 Singh A, Deuster P A, Moser P B. Zinc and copper status in women by physical activity and menstrual status.  J Sports Med Phys Fitness. 1990;  30 29-36
  • 30 Singh A, Failla M L, Deuster P A. Exercise-induced changes in immune function: effects of zinc supplementation.  J Appl Physiol. 1994;  76 2298-2303
  • 31 Singh A, Smoak B L, Patterson K Y, LeMay L G, Veillon C, Deuster P A. Biochemical indices of selected trace minerals in men: effect of stress.  Am J Clin Nutr. 1991;  53 126-131
  • 32 Thompson R P. Assessment of zinc status.  Proc Nutr Soc. 1991;  50 19-28
  • 33 Tvede N, Pedersen B, Hansen T, Bendix T, Christensen L, Galbo H, Halkjaer-Kristensen J. Effect of physical exercise on blood mononuclear cell subpopulations and in vitro proliferative responses.  Scand J Immunol. 1989;  29 383-389
  • 34 Verde T, Thomas S, Shephard R J. Potential markers of heavy training in highly trained distance runners.  Br J Sports Med. 1992;  26 167-175
  • 35 Weston W L, Huff J C, Humbert J R, Hambidge K M, Neldner K H, Walravens P A. Zinc correction of defective chemotaxis in acrodermatitis enteropathica.  Arch Dermatol. 1977;  113 422-425

J. Peake

School of Human Movement Studies · University of Queensland

St Lucia · QLD 4072 · Australia ·

Phone: +61 7 3365-6983

Fax: +61 7 3365-6877

Email: jpeake@hms.uq.edu.au

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