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Beta-Cryptoxanthin and Bone Metabolism: The Preventive Role in Osteoporosis

机译:β-隐黄质和骨代谢:在骨质疏松症中的预防作用。

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摘要

Bone loss with aging induces osteoporosis. The most dramatic expression of the disease is represented by fractures of the proximal femur. Pharmacologic and nutritional factors may play a role in the prevention of bone loss with aging. Beta-Cryptoxanthin, a kind of carotenoid, is abundant in Satsuma mandarin orange (Citrus unshiu MARC). Amoung various carotenoids including beta-cryptoxanthin, lutein, lycopene, beta-carotene, astaxanthin, and rutin, beta-cryptoxanthin has been found to have a unique anabolic effect on bone calcification in vitro. Hesperidin, which is contained in Satsuma mandarin orange, did not have an anabolic effect on bone calcification in vitro. Beta-Cryptoxanthin has stimulatory effects on osteoblastic bone formation and inhibitory effects on osteoclastic bone resorption in vitro, thereby increasing bone mass. Beta-Cryptoxanthin has an effect on the gene expression of various proteins which are related to osteoblastic bone formation and mineralization in vitro. Beta-Cryptoxanthin has inhibitory effects on enzyme activity which is related to osteoclastic bone resororption, and the carotenoid induces apoptosis of mature osteoclastic cells in vitro. Oral administration of beta-cryptoxanthin has been shown to have the anabolic effects on bone components in young and aged rats, and the administration has the preventive effects on bone loss in streptozotocin-diabetic rats and ovariectomized rats in vivo. Moreover, the intake of beta-cryptoxanthin-reinforced juice for longer periods has been shown to have both stimulatory effects on bone formation and inhibitory effects on bone resorption in healthy human or postmenopausal women in evaluating with serum biochemical markers of bone metabolism in vivo. Thus the intake of dietary beta-cryptoxanthin may have a preventive effect on osteoporosis due to stimulating bone formation and due to inhibiting bone resorption. Moreover, epidemiological studies suggest the potential role of beta-cryptoxanthin as a sustainable nutritional approach to improving bone health of human subjects. Beta-Cryptoxanthin is an important food factor in maintaining bone healthy and in preventing osteoporosis.
机译:衰老引起的骨质流失会诱发骨质疏松症。该病最明显的表现是股骨近端骨折。药理和营养因素可能在预防衰老引起的骨质流失中起作用。 β-隐黄质,一种类胡萝卜素,在萨摩柑桔(Citrus unshiu MARC)中含量丰富。在各种类胡萝卜素中,包括β-隐黄质,叶黄素,番茄红素,β-胡萝卜素,虾青素和芦丁,人们发现β-隐黄质对体外骨骼钙化具有独特的合成代谢作用。萨摩柑桔中所含的橙皮苷对体外钙化没有合成代谢作用。 β-隐黄质在体外对成骨细胞的骨形成有刺激作用,对破骨细胞的骨吸收具有抑制作用,从而增加了骨量。 β-隐黄质对多种蛋白的基因表达有影响,这些蛋白与体外成骨细胞的形成和矿化有关。 β-隐黄质对酶活性具有抑制作用,这与破骨细胞的骨吸收有关,并且类胡萝卜素在体外诱导成熟破骨细胞的凋亡。口服β-隐黄质已显示对年轻和老年大鼠的骨成分具有合成代谢作用,并且在体内对链脲佐菌素-糖尿病大鼠和去卵巢的大鼠具有预防骨损失的作用。此外,在体内用血清生化标志物进行体内评估时,长期摄入β-隐黄质增强汁对健康人或绝经后妇女的骨形成有刺激作用,对骨吸收有抑制作用。因此,由于刺激骨形成和抑制骨吸收,饮食中β-隐黄质的摄入可能对骨质疏松症具有预防作用。此外,流行病学研究表明,β-隐黄质作为改善人类受试者骨骼健康的可持续营养方法具有潜在作用。 β-隐黄质是维持骨骼健康和预防骨质疏松症的重要食物因素。

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