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Predictive QSAR model confirms flavonoids in Chinese medicine can activate voltage-gated calcium (CaV) channel in osteogenesis

机译:预测性QSAR模型证实中医的黄酮类化合物可以激活骨内发生的电压门控钙(Cav)通道

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Flavonoids in Chinese Medicine have been proven in animal studies that could aid in osteogenesis and bone formation. However, there is no consented mechanism for how these phytochemicals action on the bone-forming osteoblasts, and henceforth the prediction model of chemical screening for this specific biochemical function has not been established. The purpose of this study was to develop a novel selection and effective approach of flavonoids on the prediction of bone-forming ability via osteoblastic voltage-gated calcium (CaV) activation and inhibition using molecular modelling technique. Quantitative structure–activity relationship (QSAR) in supervised maching-learning approach?is applied in this study to predict the behavioral manifestations of flavonoids in the CaV channels, and developing statistical correlation between the biochemical features and the behavioral manifestations of 24 compounds?(Training set: Kaempferol, Taxifolin, Daidzein, Morin, Scutellarein, Quercetin, Apigenin, Myricetin, Tamarixetin, Rutin, Genistein, 5,7,2′-Trihydroxyflavone, Baicalein, Luteolin, Galangin, Chrysin, Isorhamnetin, Naringin, 3-Methyl galangin, Resokaempferol; test set: 5-Hydroxyflavone, 3,6,4′-Trihydroxyflavone, 3,4′-Dihydroxyflavone and Naringenin). Based on statistical algorithm, QSAR provides a reasonable basis for establishing a predictive correlation model by a variety of molecular descriptors that are able to identify as well as analyse the biochemical features of flavonoids that engaged in activating or inhibiting the CaV channels for osteoblasts. The model has shown these flavonoids have high activating effects on CaV channel for osteogenesis. In addition, scutellarein was ranked the highest among the screened flavonoids, and other lower ranked compounds, such as daidzein, quercetin, genistein and naringin, have shown the same descending order as previous animal studies. This predictive?modelling study has confirmed and validated the biochemical activity of the flavonoids in the osteoblastic CaV activation.
机译:中医中的黄酮类药物在动物研究中已被证明可以有助于骨开发和骨形成。然而,没有共同的机制,这些植物化学物质在骨形成成骨细胞上的作用是如何确定这种特定生物化学功能的化学筛选预测模型。本研究的目的是在使用分子造型技术的通过骨细胞电压门控钙(CAV)活化和抑制来制定新的类黄酮的选择和有效方法。监督机械学习方法中的定量结构 - 活动关系(QSAR)?在该研究中应用了CAV通道中黄酮类化合物的行为表现,以及在生物化学特征与24种化合物的行为表现之间的统计相关性?(训练套装:Kaempferol,Taxifolin,Daidzeinin,Morin,Scutellarein,槲皮素,Apigenin,Myricetin,Tamarixetin,Rutin,Genistein,5,7,2'-Trihydroxyflavone,Baicaline,Luteolin,Galangin,Chrysin,Isorhamnetin,Naringin,3-甲基Galangin, Resokaempferol;试验组:5-羟基氟,3,6,4'-trihydroxyflavone,3,4'-二羟基氟和鼻腔)。基于统计算法,QSAR为通过各种能够识别的各种分子描述符建立预测相关模型的合理基础,并分析了从事活化或抑制成骨细胞的腔通道的黄酮类化合物的生物化学特征。该模型表明,这些黄酮类化合物对窦通道具有高激活效果,用于骨质发生。此外,Scutellarein在筛选的黄酮类化合物中排名最高,而其他较低的排名化合物,如Daidzein,槲皮素,甘氨酸和柚皮肽,则显示与之前的动物研究相同的下降令。这种预测性研究已经证实并验证了骨细胞型腔激活中黄酮类化合物的生化活性。

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