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Studies on action of menaquinone-7 in regulation of bone metabolism and its preventive role of osteoporosis

机译:甲萘醌7在调节骨代谢中的作用及其对骨质疏松的预防作用的研究

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摘要

The effect of menaquinone-7 (MK-7) on bone components and bone resorbing factors induced-bone resorption using the femoral-diaphyseal and-metaphyseal tissues obtained from elderly female rats in vitro were examined. Calcium content, alkaline phosphatase activity and deoxyribonucleic acid (DNA) in the diaphyseal and metaphyseal tissues in elderly females rats were significantly decreased as compared with that of young rats, indicating that aging causes a deterioration of bone formation. The presence of MK-7 (10~(-6)-10~(-5) M) caused a significant prevention of reduction of biochemical components. On the other hand, the bone-resorbing factor, parathyroid hormone (1-34) (PTH; 10~(-7) M) and prostaglandin E_2 (PGE_2; 10~(-5) M) caused a significant decrease in calcium content in the diaphyseal and metaphyseal tissues. This decreases was completely inhibited in the presence of MK-7 (10~(-7)-10~(-5) M). In addition, MK-7 (10~(-7)-10~(-5) M) completely prevented the PTH (10~(-7) M) or PGE_2 (10~(-5) M) induced increases in medium glucose consumption and lactic acid production by bone tissues, Furthermore, the effect of the prolonged intake of dietary MK-7 on bone loss in ovariectomized rats was investigated. As a result, it was found that the intake of experimental diets containing the fermented soybean (natto) with supplemental MK-7 caused significant elevations of MK-7 and γ-carboxylated osteocalcin concentration, a bio marker of bone formation, in the serum of both ovariectomized rats and normal subjects, suggesting that MK-7 may play an important role in the prevention of age-related bone loss.
机译:研究了甲萘醌7(MK-7)对使用老年雌性大鼠的股骨干dia端和干met端组织在体外产生的骨成分和骨吸收因子诱导的骨吸收的影响。与年幼的大鼠相比,老年雌性大鼠的骨干和干phy端组织中的钙含量,碱性磷酸酶活性和脱氧核糖核酸(DNA)显着降低,这表明衰老会导致骨形成恶化。 MK-7(10〜(-6)-10〜(-5)M)的存在显着防止了生化成分的减少。另一方面,骨吸收因子,甲状旁腺激素(1-34)(PTH; 10〜(-7)M)和前列腺素E_2(PGE_2; 10〜(-5)M)导致钙含量显着下降。在骨干和干phy端组织中。在MK-7(10〜(-7)-10〜(-5)M)的存在下,这种降低被完全抑制。此外,MK-7(10〜(-7)-10〜(-5)M)完全阻止了PTH(10〜(-7)M)或PGE_2(10〜(-5)M)诱导的培养基中的增加此外,还研究了延长饮食饮食MK-7对去卵巢大鼠骨丢失的影响。结果发现,摄取含有补充MK-7的发酵大豆(纳豆)的实验饮食会导致MK-7和γ-羧化骨钙素浓度(一种骨骼形成的生物标志物)的浓度显着升高。切除卵巢的大鼠和正常受试者均表明,MK-7可能在预防与年龄有关的骨质流失中起重要作用。

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