一种利用槟榔生物聚合物速率控制柔性薄膜横向递送纳米奥氮平的智能方法

N. Madhav, Bhavana Singh
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引用次数: 2

摘要

本研究的目的是利用从番贝鲜叶中分离的新型生物赋形剂(生物赋形剂P)制备和表征纳米级载药生物弹性膜,并探索唇皮作为一种新型横向给药系统的潜力。该生物赋形剂采用简化的经济工艺制备,并进行了各种理化评价以及光谱分析,包括UV, FT-IR, SEM, Mass和1H NMR。用该新型生物赋形剂配制的纳米生物弹性膜对其功能特性进行了筛选,包括成膜性。以生物赋形剂P为成膜剂,葡萄糖为柔韧剂,制备了负载奥氮平的纳米生物柔韧膜。对制备的纳米生物纤维薄膜进行了厚度、折叠耐力、溶胀指数和体外释放度等测试。纳米粒子的大小为100纳米。体外释放实验证实,纳米奥氮平的释放维持在48 h以上。结果表明,该生物聚合物具有良好的成膜性和生物粘附性。所制备的纳米级生物弹性膜可用于奥氮平的横向给药和首过代谢药物。
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A smart spproach for delivering of nanosized olanzapine using piper betel biopolymer rate controlling flexi films for transvermillion delivery
The aim of the study was to prepare and characterize the nanosize drug loaded bio-flexi films using the novel bioexcipient isolated from the fresh leaves of the piper betle (bioexcipient P) and to explore the potentiality of the lip skin as a novel transvermillion drug delivery system. The bioexcipient prepared using a simplified economical process and was subjected to various physiochemical evaluations along with the spectral analysis including UV, FT-IR, SEM, Mass and 1H NMR. The nanosized bioflexi film formulated with the novel bioexcipient was screened for its functional properties, such as including filmability. Nanosized olanzapine loaded bioflexi films were formulated by using bioexcipient P as a film former and dextrose as a flexicizer. The formulated nanosized bioflexi films were subjected to various tests such as evaluating the, thickness, folding endurance, swelling index and in vitro release. The size of the nanoparticle was found to be 100 nm. The release of the nanosized olanzapine was maintained over 48 h, which was confirmed in in vitro release experiment. The results revealed that this biopolymer had a promising filmability and bioadhesivity. The formulated nanosized bioflexi films are feasible for delivering the olanzapine by transvermillion administration and for drugs that undergo first-pass metabolism.
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