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首页> 外文期刊>ISRN Nanotechnology >Factorial Design Studies and Biopharmaceutical Evaluation of Simvastatin Loaded Solid Lipid Nanoparticles for Improving the Oral Bioavailability
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Factorial Design Studies and Biopharmaceutical Evaluation of Simvastatin Loaded Solid Lipid Nanoparticles for Improving the Oral Bioavailability

机译:辛伐他汀负载固体脂质纳米粒改善口服生物利用度的析因设计研究和生物药物评价

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Statins are HMG-CoA reductase inhibitors, which lower the cholesterol level through reversible and competitive inhibition; they are involved in the biosynthesis of cholesterol and other sterols. Simvastatin exhibits poor oral bioavailability (<5%) and undergoes extensive microsomal metabolism by CYP enzymes. CYP3A4 is the major metabolizing enzyme that metabolizes lactone form of simvastatin and significantly lowers intestinal uptake. The hydrophobic properties of simvastatin prevent complete dissolution of the drug in the intestinal fluid which also contributes to its lower bioavailability. SLNs are alternative carrier system to polymeric nanoparticles. SLNs are in submicron size range (1–1000?nm). To overcome the hepatic first pass metabolism and to enhance the bioavailability, intestinal lymphatic transport of drugs can be exploited. In the present study, attempt has been made to prepare solid lipid nanoparticles of simvastatin to improve the bioavailability. SLNs of simvastatin were prepared with Trimyristin by hot homogenization followed by ultrasonication method. The SLNs were characterized for various physicochemical properties and analytical techniques like PXRD, DSC to study thermal nature and morphology of formulation and excipients. Promising results of the study indicated the applicability of simvastatin solid lipid nanoparticles as potential tools for improvement of bioavailability of poorly soluble drugs.
机译:他汀类药物是HMG-CoA还原酶抑制剂,通过可逆和竞争性抑制作用降低胆固醇水平。它们参与胆固醇和其他固醇的生物合成。辛伐他汀的口服生物利用度差(<5%),并通过CYP酶进行广泛的微粒体代谢。 CYP3A4是主要的代谢酶,可代谢内酯形式的辛伐他汀并显着降低肠道吸收。辛伐他汀的疏水性质阻止药物在肠液中完全溶解,这也有助于降低其生物利用度。 SLN是聚合物纳米粒子的替代载体系统。 SLN的尺寸在亚微米范围内(1-1000?nm)。为了克服肝脏的首过代谢并提高生物利用度,可以利用药物通过肠内淋巴运输。在本研究中,已经尝试制备辛伐他汀的固体脂质纳米颗粒以提高生物利用度。辛伐他汀的前哨淋巴结是用曲霉菌素通过热均质后超声处理制备的。 SLNs具有多种理化特性和分析技术(如PXRD,DSC)的特征,可研究制剂和赋形剂的热性质和形态。有希望的研究结果表明,辛伐他汀固体脂质纳米粒可作为改善难溶性药物生物利用度的潜在工具。

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