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Matti Narkia

Vitamin K2 and coronary plaque - Wellsphere - 0 views

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    The vitamin K2 story, though still preliminary, is becoming increasingly interesting from the perspective of CT heart score reduction. The origin of this concept came from some unexpected observations. One, the observation that osteoporosis (lack of bone calcium that leads to fractures) arises from deficiency of vitamin K2. Two, deficiency of K2 leads to unrestrained calcium deposition in animal models, leading to heart attack in just weeks.
Matti Narkia

High dietary menaquinone intake is associated with reduced coronary calcification.- Sci... - 0 views

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    High dietary menaquinone intake is associated with reduced coronary calcification.\nBeulens JW, Bots ML, Atsma F, Bartelink ML, Prokop M, Geleijnse JM, Witteman JC, Grobbee DE, van der Schouw YT.\nAtherosclerosis. 2008 Jul 19. [Epub ahead of print]\nPMID: 18722618 \ndoi:10.1016/j.atherosclerosis.2008.07.010 \n
Matti Narkia

Dietary supplementation with fermented soybeans suppresses intimal thickening. - [Nutri... - 0 views

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    Dietary supplementation with fermented soybeans suppresses intimal thickening. Suzuki Y, Kondo K, Ichise H, Tsukamoto Y, Urano T, Umemura K. Nutrition. 2003 Mar;19(3):261-4. PMID: 12620531
Matti Narkia

Promotion of bone formation by fermented soybean (Natto) intake in premenopausal women.... - 0 views

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    Promotion of bone formation by fermented soybean (Natto) intake in premenopausal women.\nKatsuyama H, Ideguchi S, Fukunaga M, Fukunaga T, Saijoh K, Sunami S.\nJ Nutr Sci Vitaminol (Tokyo). 2004 Apr;50(2):114-20.\nPMID: 15242015
Matti Narkia

Vitamin K in the treatment and prevention of osteoporosis and arterial calcification. -... - 0 views

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    Vitamin K in the treatment and prevention of osteoporosis and arterial calcification.\nAdams J, Pepping J.\nAm J Health Syst Pharm. 2005 Aug 1;62(15):1574-81. Review.\nPMID: 16030366
Matti Narkia

Dietary intake of menaquinone is associated with a reduced risk of coronary heart disea... - 0 views

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    Dietary intake of menaquinone is associated with a reduced risk of coronary heart disease: the Rotterdam Study.\nGeleijnse JM, Vermeer C, Grobbee DE, Schurgers LJ, Knapen MH, van der Meer IM, Hofman A, Witteman JC.\nJ Nutr. 2004 Nov;134(11):3100-5.\nPMID: 15514282
Matti Narkia

Dietary intake of vitamin K and risk of prostate cancer in the Heidelberg cohort of the... - 0 views

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    Dietary intake of vitamin K and risk of prostate cancer in the Heidelberg cohort of the European Prospective Investigation into Cancer and Nutrition (EPIC-Heidelberg).\nNimptsch K, Rohrmann S, Linseisen J.\nAm J Clin Nutr. 2008 Apr;87(4):985-92.\nPMID: 18400723
Matti Narkia

Vitamin K2 Linked to Lower Prostate Cancer Risk - Drugs.com MedNews - 0 views

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    LYSAKER, Norway, April 11, 2008-An increased intake of vitamin K2 may reduce the risk of prostate cancer by 35 per cent, suggest results from the European Prospective Investigation into Cancer and Nutrition (EPIC). The findings, based on dietary intake from 11,319 men taking part in the EPIC Heidelberg cohort, are published in this month's issue of the American Journal of Clinical Nutrition.
Matti Narkia

The Heart Scan Blog: Cheese and vitamin K2 - 0 views

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    If you've been following the Track Your Plaque conversation, you know that, contrary to prevailing opinion among many cardiologists, there is an emerging notion that coronary calcification is an active process, a true part of the disease. Vitamin D3 is an important aspect of this question. So is vitamin K2. Not to be confused with K1 that plays a role in blood coagulation, K2 has an important role in calcium metabolism. Thus, vitmain K2 deficiency is related to osteoporosis and to coronary calcification.
Matti Narkia

The Heart Scan Blog: Food sources of vitamin K2 - 0 views

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    Vitamin K2 is emerging as an exciting player in the control and possible regression of coronary atherosclerotic plaque. Only about 10% of dietary vitamin K intake is in the K2 form, the other 90% being the more common K1.
Matti Narkia

A high menaquinone reduces the incidence of coronary heart disease in women - 0 views

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    A high menaquinone reduces the incidence of coronary heart disease in women.\nGast GC, de Roos NM, Sluijs I, Bots ML, Beulens JW, Geleijnse JM, Witteman JC, Grobbee DE, Peeters PH, van der Schouw YT.\nNutr Metab Cardiovasc Dis. 2009 Jan 27. [Epub ahead of print]\nPMID: 19179058 \ndoi: 10.1016/j.numecd.2008.10.004\n
Matti Narkia

Vitamin K2, but not K1, effective for heart health benefits: Study - 0 views

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    Increased intakes of vitamin K2, but not vitamin K1, may decrease the risk of coronary heart disease in postmenopausal women, says a new study.\nFor every 10 microgram increase in the amount of vitamin K2 consumed, researchers from the Netherlands report a 9 per cent reduction in the risk of developing coronary heart disease (CHD).
Matti Narkia

Vitamin K - Linus Pauling Institute at Oregon State University - 0 views

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    Vitamin K is a fat-soluble vitamin. The "K" is derived from the German word "koagulation." Coagulation refers to the process of blood clot formation. Vitamin K is essential for the functioning of several proteins involved in blood clotting (1). There are two naturally occurring forms of vitamin K
Matti Narkia

Vitamin K help for diabetes? - 0 views

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    The vitamin K dependant protein osteocalcin may have a positive effect on reducing obesity and diabetes, suggests a new study with mice.\nResearchers writing in the journal Cells studied the effect bone cells have in energy regulation, and found that osteocalcin plays a key role in regulating insulin activity.
Matti Narkia

VitaminK2.org - 0 views

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    Vitamin K has been known as the coagulation vitamin, because of its role in the blood-clotting process. However, research over the last few decades has shown that the role of K Vitamins - and natural Vitamin K2, the menaquinones, in particular - has been greatly expanded. Of note, K Vitamins activity outside the liver is required for calcium utilization, the key factor in maintaining both bone and cardiovascular health.\n\nVitamin K2 helps to activate vitamin K-dependent proteins responsible for healthy tissues. In bone, it activates osteocalcin, a protein required to bind calcium to the mineral matrix, thus strengthening the skeleton. In circulation, Vitamin K2 participates in carboxylation of Matrix Gla Protein (MGP), the most potent inhibitor of arterial calcification known, lowering the risk of vascular damage.
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