Rola witaminy D w zachowaniu zdrowia i zdolnościach wysiłkowych sportowca

GLOSA LUB KOMENTARZ PRAWNICZY

Rola witaminy D w zachowaniu zdrowia i zdolnościach wysiłkowych sportowca

Marta Stachowicz 1 , Anna Lebiedzińska 1

1. Chair and Department of Bromatology of Medical University of Gdańsk

Opublikowany: 2016-01-04
DOI: 10.5604/17322693.1205363
GICID: 01.3001.0009.6843
Dostępne wersje językowe: pl en
Wydanie: Postepy Hig Med Dosw 2016; 70 : 637-643

 

Abstrakt

Przypisy

  • 1. Andersson A.M., Carlsen E., Petersen J.H., Skakkebaek N.E.: Variationin levels of serum inhibin B, testosterone, estradiol, lutheinizinghormone, follicle-stimulating hormone, and sex hormone–binding globulin in monthly samples from healthy men during a17-month period: possible effects of seasons. J. Clin. Endocrinol.Metab., 2003; 88: 932-937
    Google Scholar
  • 2. Bischoff-Ferrari H.A., Dawson-Hughes B., Staehelin H.B., Orav J.E.,Stuck A.E., Theiler R., Wong J.B., Egli A., Kiel D.P., Henschkowski J.:Fall prevention with supplemental and active forms of vitamin D: Ametaanalysis of randomized controlled trials. BMJ, 2009; 339: b3692
    Google Scholar
  • 3. Blomberg Jensen M.: Vitamin D metabolism, sex hormones, andmale reproductive function. Reproduction, 2012; 144: 135-152
    Google Scholar
  • 4. Blomberg Jensen M.: Vitamin D and male reproduction. Nat. Rev.Endocrinol., 2014, 10: 175-186
    Google Scholar
  • 5. Bouillon R.: Vitamin D: from photosynthesis, metabolism, andaction to clinical applications. In: Endocrinology, Ed.: DeGroot L.J.,Jameson J.L., W.B. Saunders, Philadelphia, 2001, 1009-1028
    Google Scholar
  • 6. Bouillon R., Gielen E., Vanderschueren D.: Vitamin D receptorand vitamin D action in muscle. Endocrinology, 2014; 155: 3210-3213
    Google Scholar
  • 7. Cannell J.J., Hollis B.W., Sorenson M.B., Taft T.N., Anderson J.J.:Athletic performance and vitamin D. Med. Sci. Sports Exerc., 2009;41: 1102-1110
    Google Scholar
  • 8. Chatterjee S., Mondal S., Borman A.S., Konar A.: Vitamin D, optimalhealth and athletic performance: a review study. Int. J. Nutr.Food Sci., 2014; 3: 526-533
    Google Scholar
  • 9. Chiu K.C., Chu A., Go V.L., Saad M.F.: Hypovitaminosis D is associatedwith insulin resistance and β cell dysfunction. Am. J. Clin.Nutr., 2004; 79: 820-825
    Google Scholar
  • 10. Constantini N.W., Arieli R., Chodick G., Dubnov-Raz G.: Highprevalence of vitamin D insufficiency in athletes and dancers. Clin.J. Sport Med., 2010; 20: 368-371
    Google Scholar
  • 11. Darling A.L., Hart K.H., Gibbs M.A., Gossiel F., Kantermann T.,Horton K., Johnsen S., Berry J.L., Skene D.I., Eastell R., Vieth R., Lanham-NewS.A.: Greater seasonal cycling of 25-hydroxyvitamin D is associated with increased parathyroid hormone and bone resorption.Osteoporos. Int., 2014; 25: 933-941
    Google Scholar
  • 12. Dziak A: Urazy i uszkodzenia sportowe. Acta Clin., 2001; 1: 105-110
    Google Scholar
  • 13. Enjuanes A., Garcia-Giralt N., Supervia A., Nogués X., Ruiz-GaspaS., Bustamante M., Mellibovsky L., Grinberg D., Balcells S., Diez–Pérez A.: Functional analysis of the I.3, I.6, pII and I.4 promotersof CYP19 (aromatase) gene in human osteoblasts and their role invitamin D and dexamethasone stimulation. Eur. J. Endocrinol., 2005,153: 981-988
    Google Scholar
  • 14. Farrokhyar F., Tabasinejad R., Dao D., Peterson D., Ayeni O.R.,Hadioonzadeh R., Bhandari M.: Prevalence of vitamin D inadequacyin athletes: a systematic – review and meta-analysis. Sports Med.,2015; 45: 365-378
    Google Scholar
  • 15. Foo L.H., Zhang Q., Zhu K., Ma G., Trube A., Greenfield H., FraserD.R.: Relationship between vitamin D status, body compostionand physical exercise of adolescent girls in Beijing. Osteoporos. Int.,2009; 20: 417-425
    Google Scholar
  • 16. Gröber U.: Profile mikroskładników odżywczych. In: Mikroskładnikiodżywcze. Tuning metaboliczny. Profilaktyka. Leczenie.Ed.: Gröber U., MedPharm Polska, Wrocław, 2009
    Google Scholar
  • 17. Halliday T.M., Peterson N.J., Thomas J.J., Kleppinger K., HollisB.W., Larson-Meyer D.E.: Vitamin D status relative to diet, lifestyle,injury, and illness in college athletes. Med. Sci. Sports Exerc., 2011;43: 335-343
    Google Scholar
  • 18. Hammound A.O., Meikle A.W., Peterson C.M., Stanford J., GibsonM., Carrell D.T.: Association of 25-hydroxy-vitamin D levels with semenand hormonal parameters. Asian J. Androl., 2012, 14: 855-859
    Google Scholar
  • 19. He C.S., Handzlik M., Fraser W.D., Muhamad A., Preston H., RichardsonA., Gleeson M.: Influence of vitamin D status on respiratoryinfection incidence and immune function during 4 months ofwinter training in endurance sport athletes. Exerc. Immunol. Rev.,2013; 19: 86-101
    Google Scholar
  • 20. Heller J.E., Thomas J.J., Hollis B.W., Larson-Meyer D.E.: Relationbetween vitamin D status and body composition in collegiate athletes.Int. J. Sport Nutr. Exerc. Metab., 2015; 25: 128-135
    Google Scholar
  • 21. Holick M.F.: Resurrection of vitamin D deficiency and rickets. J.Clin. Invest., 2006; 116: 2062-2072
    Google Scholar
  • 22. Holick M.F.: Vitamin D deficiency. N. Engl. J. Med., 2007; 357:266-281
    Google Scholar
  • 23. Holick M.F., Garabedian M.: Vitamin D: photobiology, metabolism,mechanism of action and clinical applications. In: Primer onthe metabolic bone diseases and disorders of mineral metabolism,Ed.: Favus M.J., American Society for Bone and Mineral Research,Washington, 2006, 129-137
    Google Scholar
  • 24. Juby A.G., Hanley D.A., Davis C.M., Cree M.: The association betweenmuscle strength, bone density and vitamin D status in elderlyCanadian nursing home residents. Age Ageing, 2014; 43 (Suppl.2): ii12
    Google Scholar
  • 25. Kinuta K., Tanaka H., Moriwake T., Aya K., Kato S., Seino Y.: VitaminD is an important factor in estrogen biosynthesis of both femaleand male gonads. Endocrinology, 2000; 141: 1317-1324
    Google Scholar
  • 26. Kopff B.: Aktywność fizyczna w profilaktyce chorób cywilizacyjnych,In: Choroby społeczne i cywilizacyjne – wybrane zagadnienia.,Ed.: Bąk-Romaniszyn L., Wydawnictwo Uniwersytetu Medycznegow Łodzi, Łódź, 2013, 7-25
    Google Scholar
  • 27. Lam N.N., Triliana R., Sawyer R.K., Atkins G.J., Morris H.A., O’LoughlinP.D., Anderson P.H: Vitamin D receptor overexpression inosteoblasts and osteocytes prevents bone loss during vitamin D-deficiency.J. Steroid Biochem. Mol. Biol., 2014; 144(A): 128-131
    Google Scholar
  • 28. Lebiedzińska A., Rypina M., Czaja J., Szefer P.: Analysis of chosenmacronutrients and vitamin D in daily food rations of elderly menand women in the context of calcium-phosphorus homeostasis. J.Element., 2013; 18: 649-658
    Google Scholar
  • 29. Lee D.M., Tajar A., Pye S.R., Boonen S., Vanderschueren D., BouillonR., O’Neill T.W., Bartfai G., Casanueva F.F., Finn J.D., Forti G.,Giwercman A., Han T.S., Huhtaniemi I.T., Kula K., et al.: Association ofhypogonadism with vitaminum D status: the European Male AgeingStudy. Eur. J. Endocrinol., 2012; 166: 77-85
    Google Scholar
  • 30. Liu P.T., Stenger S., Li H., Wenzel L., Tan B.H., Krutzik S.R., OchoaM.T., Schauber J., Wu K., Meinken C., Kamen D.L., Wagner M., BalsR., Steinmeyer A., Zügel U., et al.: Toll-like receptor triggering of avitamin D-mediated human antimicrobial response. Science, 2006;311: 1770-1773
    Google Scholar
  • 31. Lovell G.: Vitamin D status of females in an elite gymnasticsprogram. Clin. J. Sport Med., 2008; 18: 159-161
    Google Scholar
  • 32. Moyer V.A.: Prevention of falls in community-dwelling olderadults: U.S. Preventive Services Task Force recommendation statement.Ann. Intern. Med., 2012; 157: 197-204
    Google Scholar
  • 33. Nimptsch K., Platz E.A., Willett W.C., Giovannucci E.: Associationbetween plasma 25-OH vitamin D and testosterone levels in men.Clin. Andocrinol., 2012; 77: 106-112
    Google Scholar
  • 34. Ormsby R.T., Findlay D.M., Kogawa M., Anderson P.H., MorrisH.A., Atkins G.J.: Analysis of vitamin D metabolism gene expressionin human bone: evidence for autocrine control of bone remodelling.J. Steroid Biochem. Mol. Biol., 2014; 144(A): 110-113
    Google Scholar
  • 35. Peckenpaugh N.J.: Mikroskładniki w zbilansowanych posiłkach:witaminy, minerały i fitozwiązki. In: Podstawy żywienia i dietoterapia,ed. Peckenpaugh N.J., Elsevier Urban & Partner, Wrocław,2010, 93-95
    Google Scholar
  • 36. Penna G., Roncari A., Amuchastegui S., Daniel K.C., Berti E., ColonnaM., Adorini L.: Expression of the inhibitory receptor ILT3 ondendritic cells is dispensable for induction of CD4+Foxp3+ regulatoryT cells by 1,25-dihydroxyvitamin D3. Blood, 2005; 106: 3490-3497
    Google Scholar
  • 37. Pfeifer M., Begerow B., Minne H.W., Schlotthauer T., PospeschillM., Scholz M., Lazarescu A.D., Pollähne W.: Vitamin D status,trunk muscle strength, body sway, falls, and fractures among 237postmenopausal women with osteoporosis. Exp. Clin. Endocrinol.Diabetes, 2001; 109: 87-92
    Google Scholar
  • 38. Pilz S., Frisch S., Koertke H., Kuhn J., Dreier J., Obermayer-PietschB., Wehr E., Zittermann A.: Effect of vitamin D supplementation ontestosterone levels in men. Horm. Metab. Res., 2011; 43: 223-225
    Google Scholar
  • 39. Pino A.M., Rodriguez J.M., Rios S., Astudillo P., Leiva L., Seitz G.,Fernández M., Rodriguez J.P.: Aromatase activity of human mesenchymalstem cells is stimulated by early differentiation, vitamin Dand leptin. J. Endocrinol., 2006, 191: 715-725
    Google Scholar
  • 40. Pojednic R.M., Ceglia L.: The emerging biomolecular role ofvitamin D in skeletal muscle. Exerc. Sport Sci. Rev., 2014; 42: 76-81
    Google Scholar
  • 41. Powers S., Nelson W.B., Larson-Meyer E.: Antioxidant and vitaminD supplements for athletes: sense or nonsense? J. Sports Sci.,2011; 29 (Suppl. 1): S47-S55
    Google Scholar
  • 42. Ramlau-Hansen C.H., Moeller U.K., Bonde J.P., Olsen J., ThulstrupA.M.: Are serum levels of vitamin D associated with semen quality?Results from a cross-sectional study in young healthy men. Fertil.Steril., 2011; 95: 1000-1004
    Google Scholar
  • 43. Reid I.R., Bolland M.J., Grey A.: Effects of vitamin D supplementson bone mineral density: a systematic review and meta-analysis.Lancet, 2014; 383: 146-155
    Google Scholar
  • 44. Shanely R.A., Nieman D.C., Knab A.M., Gillitt N.D., Meaney M.P.,Jin F., Sha W., Cialdella-Kam L.: Influence of vitamin D mushroompowder supplementation on exercise-induced muscle damage invitamin D insufficient high school athletes. J. Sports Sci., 2014; 32:670-679
    Google Scholar
  • 45. Skłodowska Z.: Zdrowotne uwarunkowania turystyki, czyli o konsekwencjach pozostawania w bezruchu. Studia i Materiały CEPLw Rogowie, 2013; 15: 95-103
    Google Scholar
  • 46. Stein M.S., Wark J.D., Scherer S.C., Walton S.L., Chick P., Di CarlantonioM., Zajac J.D., Flicker L.: Falls relate to vitamin D and parathyroidhormone in an Australian nursing home and hostel. J. Am.Geriatr. Soc., 1999; 47: 1195-1201
    Google Scholar
  • 47. Tanaka S., Haji M., Takayanagi R., Tanaka S., Sugioka Y., NawataH.: 1,25- dihydroxyvitamin D3 enhances the enzymatic activity andexpression of the messenger ribonucleic acid for aromatase cytochromeP450 synergistically with dexamethasone depending on thevitamin D receptor level in cultured human osteoblasts. Endocrinology,1996, 137: 1860-1869
    Google Scholar
  • 48. Tota Ł., Pilch W., Hodur M., Sagalara A.: Assessment of diet ofyoung medium- and long- distance runners. Med. Sport., 2013; 17:18-23
    Google Scholar
  • 49. Tukaj C.: Właściwy poziom witaminy D warunkiem zachowaniazdrowia. Postępy Hig. Med. Dośw., 2008; 62: 502-510
    Google Scholar
  • 50. Välimäki V.V., Alfthan H., Ivaska K.K., Löyttyniemi E., PetterssonK., Stenman U.H., Välimäki M.J.: Serum estradiol, testosterone,and sex hormone-binding globulin as regulators of peak bone massand bone turnover rate in young Finnish men. J. Clin. Endocrinol.Metab., 2004; 89: 3785-3789
    Google Scholar
  • 51. Villacis D., Yi A., Jahn R., Kephart C.J., Charlton T., GamradtS.C., Romano R., Tibone J.E., Hatch G.F.3rd: Prevalence of abnormalvitamin D levels among division I NCAA athletes. Sports Health,2014; 6: 340-347
    Google Scholar
  • 52. Visser M., Deeg D.J.H., Lips P.; Longitudinal Aging Study Amsterdam.:Low vitamin D and high parathyroid hormone levels asdeterminants of loss of muscle strength and muscle mass (sarcopenia):the Longitudinal Aging Study Amsterdam. J. Clin. Endocrinol.Metab., 2003; 88: 5766-5772
    Google Scholar
  • 53. von Hurst P.R., Beck K.L.: Vitamin D and skeletal muscle functionin athletes. Curr. Op. Clin. Nutr. Metab. Care, 2014; 17: 539-545
    Google Scholar
  • 54. Walker N., Love T.D., Baker D.F., Healey P.B., Haszard J., EdwardsA.S., Black K.E.: Knowledge and attitudes to vitamin D and sun exposurein elite New Zealand athletes: a cross-sectional study. J. Int. Soc.Sports Nutr., 2014; 11: 47
    Google Scholar
  • 55. Ward K.A., Das G., Berry J.L., Roberts S.A., Rawer R., Adams J.E.,Mughal Z.: Vitamin D status and muscle function in post-menarchaladolescent girls. J. Clin. Endocrinol. Metab., 2009; 94: 559-563
    Google Scholar
  • 56. Wehr E., Pilz S., Boehm B.O., März W., Obermayer-Pietsch B.:Association of vitamin D status with serum androgen levels in men.Clin. Endocrinol., 2010, 73: 243-248
    Google Scholar
  • 57. Yague J.G., Garcia-Segura L.M., Azcoitia I.: Selective transcriptionalregulation of aromatase gene by vitamin D, dexamethasone,and mifepristone in human glioma cells. Endocrine, 2009, 35: 252-261
    Google Scholar
  • 58. Yanase T., Suzuki A., Goto K., Nomura M., Okabe T., TakayanagiR., Nawata H.: Aromatase in bone: roles of vitamin D3 and androgens.J. Steroid Biochem. Mol. Biol., 2003; 86: 393-397
    Google Scholar

Pełna treść artykułu

Przejdź do treści