首页> 外文期刊>International Journal of Nanomedicine >Controlled release and angiotensin-converting enzyme inhibition properties of an antihypertensive drug based on a perindopril erbumine-layered double hydroxide nanocomposite
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Controlled release and angiotensin-converting enzyme inhibition properties of an antihypertensive drug based on a perindopril erbumine-layered double hydroxide nanocomposite

机译:基于培哚普利精蛋白层双层氢氧化物纳米复合材料的降压药的控释和血管紧张素转换酶抑制特性

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Background: The intercalation of perindopril erbumine into Zn/Al-NO3-layered double hydroxide resulted in the formation of a host-guest type of material. By virtue of the ion-exchange properties of layered double hydroxide, perindopril erbumine was released in a sustained manner. Therefore, this intercalated material can be used as a controlled-release formulation.Results: Perindopril was intercalated into the interlayers and formed a well ordered, layered organic-inorganic nanocomposite. The basal spacing of the products was expanded to 21.7 ? and 19.9 ? by the ion-exchange and coprecipitation methods, respectively, in a bilayer and a monolayer arrangement, respectively. The release of perindopril from the nanocomposite synthesized by the coprecipitation method was slower than that of its counterpart synthesized by the ion-exchange method. The rate of release was governed by pseudo-second order kinetics. An in vitro antihypertensive assay showed that the intercalation process results in effectiveness similar to that of the antihypertensive properties of perindopril.Conclusion: Intercalated perindopril showed better thermal stability than its free counterpart. The resulting material showed sustained-release properties and can therefore be used as a controlled-release formulation.
机译:背景:培哚普利精油嵌入到Zn / Al-NO3层的双氢氧化物中,导致形成客体型材料。借助于层状双氢氧化物的离子交换特性,培哚普利特丁胺持续释放。因此,这种插层材料可以用作控释制剂。结果:培哚普利被插层到中间层中,形成了有序的层状有机无机纳米复合材料。产品的基础间距扩大到21.7?和19.9?通过离子交换和共沉淀方法分别以双层和单层排列方式进行。培哚普利从通过共沉淀法合成的纳米复合物中的释放比通过离子交换法合成的对应物的释放慢。释放速率由拟二级动力学控制。体外降压试验表明,插层过程与培哚普利的降压性能相似。结论:插层培哚普利的热稳定性优于游离培哚普利。所得物质显示出缓释性质,因此可以用作控释制剂。

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