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Study of Mucoadhesive Microspheres Based on Pregelatinized Cassava Starch Succinate as a New Carrier for Drug Delivery

机译:基于预糊化木薯淀粉琥珀酸酯作为新型药物载体的粘膜粘附微球的研究

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The objective of this research is to study the application of Pregelatinized Cassava Starch Succinate (PCSS), a physically and chemically modified starch and the combinations with Carbopol 974P and hydroxypropylmethyl cellulose (HPMC) for preparing mucoadhesive microspheres by the spray-drying technique. The obtained-microspheres were characterized, including: morphology, particle size distribution, entrapment efficiency and mucoadhesive strength on the stomach and intestinal of rats. In addition, the in vitro drug release from the microspheres was performed in pH 1.2 and 7.2. The results showed that the produced microspheres of PCSS and its combination with HPMC and Carbopol 974P were irregular shape with a rough surface morphology and have particles sizes range of 2.5-28 μm. Propanolol hydrochloride (PH) was incorporated into the microspheres with an efficiency of range between 84-100%. On gastric mucosa, the microspheres of PCSS, HPMC and PCSS-HPMC were more mucoadhesive than the microspheres of Carbopol 974P and PCSS-Carbopol 974P. On the other hand, all kinds of the microspheres show good mucoadhesive properties on intestinal mucosa. Furthermore, the drug release from the microspheres produced pH-dependent extended-release in pH 1.2 HCl and pH 7.2 phosphate medium. During 8 h in vitro release study, the release of propanolol hydrochloride from the microspheres of PCSS-HPMC and PCSS-Carbopol 974P in pH 7.2 was slower than that in pH 1.2. The findings obtained revealed that PCSS microspheres have good mucoadhesive property on both of gastric and intestinal mucosa. Moreover, the addition of HPMC and Carbopol 974P to PCSS hydrophilic matrix significantly extended the drug release.
机译:这项研究的目的是研究预糊化木薯淀粉琥珀酸酯(PCSS),一种物理和化学改性的淀粉以及与Carbopol 974P和羟丙基甲基纤维素(HPMC)的组合通过喷雾干燥技术制备粘膜粘附性微球的应用。获得的微球的特征包括:大鼠的胃和肠的形态,粒度分布,包封率和粘膜粘附强度。此外,在pH 1.2和7.2下进行了微球的体外药物释放。结果表明,所生产的PCSS微球及其与HPMC和Carbopol 974P的组合为不规则形状,具有粗糙的表面形态,粒径范围为2.5-28μm。盐酸异丙醇(PH)以84-100%的效率掺入微球。在胃粘膜上,PCSS,HPMC和PCSS-HPMC的微球比Carbopol 974P和PCSS-Carbopol 974P的微球更具粘膜粘附性。另一方面,各种微球在肠粘膜上显示出良好的粘膜粘附特性​​。此外,药物从微球的释放在pH 1.2 HCl和pH 7.2磷酸盐介质中产生了pH依赖性的缓释。在8小时的体外释放研究中,在pH 7.2下,盐酸丙醇从PCSS-HPMC和PCSS-Carbopol 974P微球的释放比在pH 1.2下的释放慢。获得的发现表明,PCSS微球在胃和肠粘膜上均具有良好的粘膜粘附特性​​。此外,在PCSS亲水性基质中添加HPMC和Carbopol 974P可以显着延长药物释放。

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