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The structure of vitamin K and its significance in medicine

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Identyfikatory
Warianty tytułu
PL
Struktura witaminy K i jej znaczenie w medycynie
Języki publikacji
EN
Abstrakty
EN
Quinones and their derivative - vitamin K are well known in medicine. The chemical structure, configurational isomerism of vitamin K and the differences in its biological activity are shown in this paper.
PL
Chinony i ich pochodne (witamina K) są dobrze znanymi cząsteczkami w medycynie. W niniejszym artykule przedstawiono strukturę chemiczną, izomerię konfiguracyjną witaminy K i różnice w aktywności biologiczne jej izomerów.
Czasopismo
Rocznik
Tom
Strony
5--15
Opis fizyczny
Bibliogr. 25 poz., rys., tab.
Twórcy
  • Department of Physics and Medical Engineering, The Faculty of Mathematics and Applied Physics, Rzeszow University of Technology, al. Powstańców Warszawy 6, 35-959 Rzeszów, Poland
  • Department of Physics and Medical Engineering, The Faculty of Mathematics and Applied Physics, Rzeszow University of Technology, al. Powstańców Warszawy 6, 35-959 Rzeszów, Poland
autor
  • Technical College, State Academy of Applied Science in Przemyśl, Książąt Lubomirskich 6, 37-700 Przemyśl, Poland
Bibliografia
  • [1] Ivanowa D., Zheleva Z., Getsovc P., Nikolova B., Ichia A., Tatsuya H., Bakalova R.: Vitamin K: Redox - modulation, prevention of mitochondrial dysfunction and anti-cancer effect Redox Biology 16 (2018) 352-358
  • [2] Kaźmierczak-Barańska J.: Vitamin K Contribution to DNA Damage - Advantage or Disadvantage? A Human Health Response,Nutrients 2022,14(20), 4219; https://doi.org/10.3390/nu14204219
  • [3] Petersen J, Stehlik D, Gast P, Thurnauer M.: Photosynth, Comparison of the electron spin 53r spectrum found in plant photosystem I and in iron-depleted bacterial reaction centres with time -resolved K-band EPR; evidence that the photosystem I acceptor A1 is a quinone. Res. 1987 Jan;14(1):15 -30. doi: 10.1007/BF00019589.
  • [4] Niklas J., Epel B., Antonkine M.L., Sinnecker S., Pandelia M.E., Lubitz W.: Electronic Structure of the Quinone Radical Anion A1- of Photosystem I Investigated by Advanced Pulse EPR and ENDOR Techniques . J. Phys. Chem. 8 (2009) 113
  • [5] Szterk A., Zmysłowski A., Bus K.: Identification of cis/trans isomers of menaquinone-7 in food as exemplified by dietary supplements. Food Chem. 2018 Mar 15;243:403-409. doi: 10.1016/j.foodchem.2017.10.001. Epub 2017 Oct 3. PMID: 29146356.
  • [6] Sitkowski J., Bocian W., Szterk A.: The application of multidimensional NMR analysis to cis/trans isomers study of menaquinone - 7 (vitamin K2MK -7), identification of the (E,Z3,E2,ω)-menaquinone - 7 isomer in dietary supplements, Journal of Molecular Structure, Volume 1171, 2018, Pages 449-457, ISSN 0022-2860, https://doi.org/10.1016/j.molstruc.2018.06.029.
  • [7] Lal N., Berenjian A.: Cis and trans isomers of the vitamin menaquinoneM.E., Lubitz W.: Electronic Structure of the Quinone Radical Anion A 1•−of Photosystem I Investigated by Advanced Pulse EPR and ENDOR Techniques . J. Phys. Chem. 8 (2009) 113
  • [8] Booth S.L., Vitamin K: food composition and dietary intakes, Food & Nutrition Research, Vitamin Supplement, 56, (2012), 5505.
  • [9] Weber P., Vitamin K and bone health, Nutrition, 17 (10), (2001), s. 880-887.
  • [10] Scheiber D., Veulemans V., Horn P., Chatrou M.L., Potthoff S.A., Kelm M.,Schurgers L.J., Westenfeld R., High-Dose Menaquinone -7 Supplementation Reduces Cardiovascular Calcification in a Murine Model of Extraosseous Calcification, Nutrients, 7 (8), (2015), (6991-7011).
  • [11] Vermeer C., Vitamin K: the effect on health beyond coagulation -an overview, Food & Nutrition Research, Vitamin Supplement, 56, (2012), 5329.
  • [12] Schurgers L.J., Vermeer C., Determination of Phylloquinone and Menaquinones in Food, Pathophysiology of Haemostasis and Thrombosis, 30 (6), (2000), s. 298-307.
  • [13] Lal N., Berenjian A.: Cis and trans isomers of the vitamin menaquinone -7: which one is biologically significant? Appl. Microbiol. Biotechnol.2020 Apr;104(7):2765 -2776. doi: 10.1007/s00253 - 020-10409-1. Epub 2020 Feb 3. PMID: 32009201.
  • [14] Baj A., Witkowski S.: Witamina K2 (MK-7) - struktura, aktywność, synteza, Witaminy i inne substancje aktywne - przegląd i badania, TYGIELLublin 2018 (7-18) https://www.researchgate.net/profile/Anna-Piotrowska-10/publica-tion/325253507_Neuropsychiatric_side_effects_of_vitamin_A_derivatives_used_in_dermatological_treat-ment/links/5b3493c3a6fdcc8506d71e22/Neuropsychiatric -side-effects-of-vitamin-A-derivatives-used-in-dermatological-treatment.pdf
  • [15] El Asmar M.S., Naoum J.J., Arbid E.J.: Vitamin K Dependent Proteins and the Role of Vitamin K2 in the Modulation of Vascular Calcification: A Review, Oman Medical Journal, 29 (3), (2014), (172-177).
  • [16] Sato T., Schurgers L.J., Uenishi K., Comparison of menaquinone -4 and menaquinone-7 bioavailability in healthy women, Nutrition Journal, 11:93, (2012).
  • [17] Cranenburg E.C.M., Schurgers L.J., Vermeer C.: Vitamin K: the coagulation vitamin that became omnipotent, Thrombosis and Haemostasis, 98 (1), (2007), (120-125).
  • [18] Sato T., Vitamin K2 and Bone Quality, Vitamins & Trace Elements, S6: 001, (2013).
  • [19] Hamidi M.S., Gajic-Veljanoski O., Cheung A.M.: Vitamin K and bone health, Journal of Clinical Densitometry, 16 (4), (2013), (409-413).
  • [20] Knauer T.E., Siegfried C., Willingham A.K., Matschiner J.T., Metabolism and biological activity of cis-and trans-phylloquinone in the rat, J. Nutr., 105 (1975), (1519-1524).
  • [21].https://www.researchnester.com/reports/vitamin-k2-market/4278
  • [22] https://www.marketresearchfuture.com/reports/vitamin-k2-market-7495?utm.
  • [23] Leon J Schurgers 1,Kirsten J F Teunissen, Karly Hamulyák ,Marjo H J Knapen ,Hogne Vik, Cees Vermeer , Vitamin K - containing dietary supplements: comparison of synthetic vitamin K1 and natto-derived menaquinone -7Blood 109 ,2007 Apr ;109(8):3279 -83,doi: 10.1182/blood-2006-08-040709.Epub 2006 Dec 7.
  • [24]Sato T, Yamada Y, Ohtani Y, Mitsui N, Murasawa H, Araki S. Production of menaquinone (vitamin K2)-7 by Bacillus subtilis. J Biosci Bioeng. 2001;91(1):16-20, doi: 10.1263/jbb.91.16. PMID: 16232939.
  • [25] Chao Zhangab, Huixue Renab, Chuanqing Zhonga Economical production of vitamin K2 using wheat starch waste water, Journal of Cleaner Production 270,10 October 2020, 122486, doi.org/10.1016/j.jclepro.2020.122486
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-b37688c2-ff50-4dfa-b1e0-4947915040b8
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