in vitro/ class='italic'>in vivo approach, we tested the ability of botanical extracts to influence biomarkers associated with bone resorption and bone formation. P'/> Hydrolysis of phytate and formation of inositol phosphate isomers without or with supplemented phytases in different segments of the digestive tract of broilers
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Hydrolysis of phytate and formation of inositol phosphate isomers without or with supplemented phytases in different segments of the digestive tract of broilers

机译:肉仔鸡消化道不同部位中肌醇六磷酸的水解和肌醇磷酸酯异构体的形成,无或有肌醇六磷酸酶的补充

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Using a sequential class='italic'>in vitro/ class='italic'>in vivo approach, we tested the ability of botanical extracts to influence biomarkers associated with bone resorption and bone formation. Pomegranate fruit and grape seed extracts were found to exhibit anti-resorptive activity by inhibiting receptor activator of nuclear factor-κB ligand (RANKL) expression in MG-63 cells and to reduce IL-1β-stimulated calvarial class='sup'>45Ca loss. A combination of pomegranate fruit and grape seed extracts were shown to be effective at inhibiting bone loss in ovariectomised rats as demonstrated by standard histomorphometry, biomechanical and bone mineral density measurements. Quercetin and licorice extract exhibited bone formation activity as measured by bone morphogenetic protein-2 (BMP-2) promoter activation, increased expression of BMP-2 mRNA and protein levels, and promotion of bone growth in cultured mouse calvariae. A combination of quercetin and licorice extract demonstrated a potential for increasing bone mineral density in an intact female rat model as compared with controls. The results from this sequential class='italic'>in vitro/ class='italic'>in vivo research model yielded botanical extract formulas that demonstrate significant potential benefits for bone health.
机译:使用顺序的 class ='italic'>体外 / class ='italic'>体内方法,我们测试了植物提取物影响与骨吸收和骨相关的生物标志物的能力。编队。发现石榴果实和葡萄籽提取物通过抑制MG-63细胞中核因子-κB配体的受体激活剂(RANKL)的表达并降低IL-1β刺激的颅盖膜来表现出抗再吸收活性。 45 钙损失。通过标准组织形态计量学,生物力学和骨矿物质密度测量表明,石榴果实和葡萄籽提取物的组合可有效抑制卵巢切除大鼠的骨质流失。槲皮素和甘草提取物具有骨形成活性,可以通过骨形态发生蛋白2(BMP-2)启动子的活化来测定,BMP-2 mRNA和蛋白水平的表达增加,并且可以促进培养的小鼠颅骨中骨的生长。槲皮素和甘草提取物的组合与对照组相比,在完整的雌性大鼠模型中显示出增加骨矿物质密度的潜力。该连续的 class ='italic'>体外 / class ='italic'>体内研究模型的结果产生了植物提取物配方,这些配方对骨骼健康具有显着的潜在益处。

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