首页> 外文期刊>Journal of pharmaceutical sciences. >Solid state mechanochemical simultaneous activation of the constituents of the Silybum marianum phytocomplex with crosslinked polymers.
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Solid state mechanochemical simultaneous activation of the constituents of the Silybum marianum phytocomplex with crosslinked polymers.

机译:固态机械化学同时活化交联聚合物中的水飞蓟植物复合物的成分。

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Simultaneous improvement of solubilization kinetics of main flavolignans of Silybum marianum extract was obtained cogrinding with two crosslinked polymers: micronized crospovidone, PVP-CL(R) and sodium carboxymethylcellulose, Ac-Di-Sol(R) in the 1:3 active-to-polymer weight ratio. By this process it was assessed that the main extract components lost its crystalline structure, and the powder surface area was increased by 2.1- and 1.7-fold in the coground products with Ac-Di-Sol(R) and PVP-CL(R), respectively. This activated status of the dry extract remained stable over a period of 2 years. Solubilization kinetics resulted ameliorated both in terms of entire dry extract and in terms of single components. When the 1/3 coground systems with PVP-CL(R) and Ac-Di-Sol(R) were dissolved in saturated conditions they gave a concentration improvement compared to the native product of 8 and 31 times of silybin A, 7 and 27 times of silybin B, whereas in the case of silychristin a double concentration was obtained only using Ac-Di-Sol(R). The in vivo studies on rats confirmed that this solubilization improvement corresponded to an effective oral bioavailability enhancement. The highest bioavailability improvement was obtained with Ac-Di-Sol(R), with a relative bioavailability of 88.6, 17.96, and 16.4 compared to the extract for silybin A, silybine B, and silychristine, respectively.
机译:与两种交联的聚合物:微粉化的交联聚维酮,PVP-CL(R)和羧甲基纤维素钠,1:3活性溶液中的Ac-Di-Sol(R)共研磨,可同时改善水飞蓟提取物中主要黄酮的溶解动力学。聚合物重量比。通过这一过程,可以评估出主要提取物成分失去了晶体结构,在与Ac-Di-Sol®和PVP-CL®共研磨的产品中,粉末表面积增加了2.1倍和1.7倍。 , 分别。干提取物的这种活化状态在两年内保持稳定。整个干燥提取物和单一组分的溶解动力学均得到改善。当将具有PVP-CL(R)和Ac-Di-Sol(R)的1/3共研磨系统溶解在饱和条件下时,与天然产物的水飞蓟宾A,7和27相比,它们的浓度提高了8到31倍时间是水飞蓟宾B的两倍,而在水飞蓟素的情况下,仅使用Ac-Di-Sol可获得双倍浓度。对大鼠的体内研究证实,这种溶解性改善对应于有效的口服生物利用度提高。与水飞蓟宾A,水飞蓟宾B和水飞蓟素的提取物相比,使用Ac-Di-Sol?可获得最高的生物利用度改进,相对生物利用度分别为88.6、17.96和16.4。

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