体外脂解对替米沙坦SMEDDS药物释放的影响

Q2 Pharmacology, Toxicology and Pharmaceutics Drug Delivery Letters Pub Date : 2019-11-30 DOI:10.2174/2210303109666190614120556
R. Kaushik
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引用次数: 5

摘要

本研究的目的是系统优化和开发微乳预浓缩物,以获得更好的溶解度,从而利用D-最优混合物设计改善替米沙坦的口服生物利用度。为了开发液体SMEDDS,进行了在各种脂质成分中的溶解度研究和配方优化。D-最优混合物设计用于评估所需反应的相互作用性能(如药物累积释放百分比和球蛋白大小),并使用合意性方法进行优化。对优化批次的药物累积释放度和球大小性能进行了评估,以确定药物的溶出速率和口服生物利用度。优化的批次(F-8)含有10%的油(Capmul-MCM EP)、45%的表面活性剂(Labrasol)和45%的共表面活性剂。优化后的SMEDDS显示出良好的药物释放度拟合。稳定性研究表明,经优化的SMEDDS批次在40°C/75%RH下储存3个月后的稳定性以及API对照品中溶解速率的提高。优化后的SMEDDS体外脂解作用对药物释放无影响。开发和优化的SMEDDS与纯药物相比,体外溶出率和溶出度均有所提高。这些研究通过获得与非SMEDDS制剂同等的治疗效果,进一步证实了SMEDDS的剂量减少。这项研究工作成功地展示了SMEDDS在BCS-II类药物递送中的潜在用途。
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Development, Optimization, Characterization and Impact of In vitro Lipolysis on Drug Release of Telmisartan Loaded SMEDDS
The objective of the current research is systematic optimization and development of microemulsion preconcentrates to get better solubility that results in improvement of oral bioavailability profile of Telmisartan utilizing D-optimal mixture design. Solubility studies in a variety of lipidic ingredients and optimization of formulations were carried out for the development of liquid SMEDDS. D-optimal mixture design was utilized for assessing the interaction performance of desired responses (such as % cumulative drug release and globule size) and optimized using desirability approach. The optimized batch was evaluated for its % cumulative drug release and globule size performance for determining the dissolution rate and oral bioavailability of drug. The optimized batch (F-8), which contained 10% oil (Capmul MCM EP), 45% surfactant (Labrasol) and 45% co-surfactant (Transcutol HP) resulted in desired qualities of measured responses with 84.6nm globule size and 98.5% drug release within 15 minutes. Optimized SMEDDS showed brilliant goodness of fit between drug release. Stability studies indicated stability of the optimized SMEDDS batch over 3-month storage at 40°C/75% RH and improved dissolution rate in contrast to pure API. The optimized SMEDDS showed no impact of in vitro lipolysis on drug release. Developed and optimized SMEDDS showed improved in vitro dissolution rate and dissolution profile in contrast to pure drug. These investigations further confirm dose reduction in SMEDDS by gaining an equivalent therapeutic profile with non-SMEDDS formulation. This research work successfully shows the potential usage of SMEDDS for delivery of BCS-II class drugs.
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来源期刊
Drug Delivery Letters
Drug Delivery Letters Pharmacology, Toxicology and Pharmaceutics-Pharmacology, Toxicology and Pharmaceutics (miscellaneous)
CiteScore
1.70
自引率
0.00%
发文量
30
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