Vitamin K – sources, physiological role, kinetics, deficiency, detection, therapeutic use, and toxicity
Витамин K — источники, физиологическая роль, кинетика, дефицит, выявление, терапевтическое применение и токсичность
2021-07-09
SCID: 54.1/axsa2b3r
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blood coagulationmenaquinonesphylloquinonevascular calcificationvitamin K
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Abstract (AI)
Vitamin K is traditionally connected with blood coagulation, since it is needed for the posttranslational modification of 7 proteins involved in this cascade. However, it is also involved in the maturation of another 11 or 12 proteins that play different roles, encompassing in particular the modulation of the calcification of connective tissues. Since this process is physiologically needed in bones, but is pathological in arteries, a great deal of research has been devoted to finding a possible link between vitamin K and the prevention of osteoporosis and cardiovascular diseases. Unfortunately, the current knowledge does not allow us to make a decisive conclusion about such a link. One possible explanation for this is the diversity of the biological activity of vitamin K, which is not a single compound but a general term covering natural plant and animal forms of vitamin K (K1 and K2) as well as their synthetic congeners (K3 and K4). Vitamin K1 (phylloquinone) is found in several vegetables. Menaquinones (MK4-MK13, a series of compounds known as vitamin K2) are mostly of a bacterial origin and are introduced into the human diet mainly through fermented cheeses. Current knowledge about the kinetics of different forms of vitamin K, their detection, and their toxicity are discussed in this review.
Key Findings
1
Current evidence is insufficient to establish a decisive link between vitamin K and prevention of osteoporosis or cardiovascular disease.
2
Vitamin K comprises multiple compounds: plant-derived phylloquinone (K1), bacterial menaquinones (K2; MK4–MK13), and synthetic congeners K3 and K4.
3
Vitamin K is required for posttranslational modification of seven coagulation proteins and maturation of 11–12 additional proteins with diverse functions.
4
Vitamin K-dependent proteins regulate connective-tissue calcification, supporting physiological bone mineralization but potentially influencing pathological arterial calcification.
5
Vitamin K1 occurs in several vegetables, whereas dietary menaquinones are obtained mainly from fermented cheeses; the review examines their kinetics, detection, and toxicity.
Research Object
Vitamin K forms (K1, K2, K3, and K4) in human physiology and nutrition
Research Subject
The physiological roles, kinetics, deficiency, detection, therapeutic potential, and toxicity of vitamin K, including its effects on blood coagulation and connective-tissue calcification
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2021-07-09
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