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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Design and evaluation of polymer coated carvedilol loaded solid lipid nanoparticles to improve the oral bioavailability: A novel strategy to avoid intraduodenal administration
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Design and evaluation of polymer coated carvedilol loaded solid lipid nanoparticles to improve the oral bioavailability: A novel strategy to avoid intraduodenal administration

机译:设计和评估聚合物包衣卡维地洛的固体脂质纳米粒,以改善口服生物利用度:避免十二指肠内给药的新策略

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Solid lipid nanoparticles are most promising delivery systems for the enhancement of bioavailability of highly lipophilic drugs those prone to the first pass metabolism. But burst release of drug from solid lipid nanoparticles in acidic environment such as gastric milieu precludes its usage as oral delivery system. Studies on SLN revealed intraduodenal administration as an alternative route for SLN administration. But clinically it is an inappropriate route for repeated administration of drugs to patients. Hence, we prepared N-carboxymethyl chitosan (MCC) coated carvedilol loaded SLN to protect the rapid release of carvedilol in acidic environment. Positively charged carvedilol loaded SLN were developed using monoglyceride as lipid and soya lecithin and poloxamer 188 as surfactants and stearylamine as charge modifier. These SLN were characterized for particle size, zeta potential, entrapment efficiency, crystallinity and stability studies. Further these SLN were coated with N-carboxymethyl chitosan and confirmed by change in zetapotential and X-ray Photon Spectroscopic analysis. Effect of polymer coating on drug release profiles were studied simulated gastric and intestinal fluids. Effect of polymer coating on oral bioavailability of carvedilol loaded SLN were studied in rats after oral administration. MCC coated SLN improved the bioavailability of carvedilol compared uncoated SLN after oral administration. Insignificant difference in bioavailability was observed compared to intraduodenal administration of SLN. Hence, MCC coated SLN is a novel strategy to avoid intrduodenal administration.
机译:固体脂质纳米颗粒是最有前途的递送系统,用于增强易首过代谢的高度亲脂性药物的生物利用度。但是,在酸性环境(例如胃环境)中从固体脂质纳米颗粒中突然释放药物,使其无法用作口服递送系统。对SLN的研究表明十二指肠内给药是SLN给药的替代途径。但是在临床上,这是向患者重复给药的不适当途径。因此,我们制备了负载有N-羧甲基壳聚糖(MCC)的卡维地洛涂层SLN,以保护卡维地洛在酸性环境中的快速释放。使用甘油单酸酯作为脂质,大豆卵磷脂和泊洛沙姆188作为表面活性剂,十八烷基胺作为电荷改性剂,开发了带正电荷的卡维地洛负载SLN。这些SLN的特征在于粒度,ζ电势,截留效率,结晶度和稳定性研究。此外,将这些SLN涂有N-羧甲基壳聚糖,并通过电势变化和X射线光子光谱分析进行了确认。模拟了胃和肠液,研究了聚合物包衣对药物释放曲线的影响。在口服后,研究了聚合物涂层对载有卡维地洛的SLN口服生物利用度的影响。 MCC涂层的SLN与口服给药后未涂层的SLN相比提高了卡维地洛的生物利用度。与十二指肠内给药SLN相比,观察到的生物利用度无明显差异。因此,MCC涂层SLN是避免十二指肠内给药的新策略。

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