达比加坦-依替沙坦酯包封固体过饱和自纳米乳化给药系统的配方、优化与评估

Q3 Medicine
Nithya Shanthi, Heena Mittal, Manish Kumar, Arun Mahato, Brahmeshwar Mishra
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引用次数: 0

摘要

本研究提出了达比加群酯固体超饱和自纳米乳化给药系统(固体 S-SNEDDS),以提高有效载荷、药物溶解度和溶解速率,并最大限度地减少药物沉淀。研究采用 Box-Behnken 设计对配方进行了优化。研究人员配制了由 Caprylic acid(32.9% w/w)、Cremophor EL(50.2% w/w)和 Transcutol HP(18.8% w/w)分别作为油、表面活性剂和辅助表面活性剂组成的最佳 SNEDDS,并对其粒度、PDI、Zeta 电位和饱和溶解度进行了评估。在制备过饱和 SNEDDS(S-SNEDDS)时,将 SNEDDS 与 PPIs 进一步结合,以增加制剂中的药物载量。通过吸附在多孔载体 Aerosil®200 上,S-SNEDDS 变成了固体 S-SNEDDS。SNEDDS的尺寸、PDI和Zeta电位分别为82nm、0.347和-10.50mV。SNEDDS使药物的饱和溶解度提高了93.65倍。在 PPIs 中,HPMC K4M 对配制 S-SNEDDS 的反应最为有效。S-SNEDDS 的载药量更大,使溶解度进一步提高,纯药的溶解度提高了 150 倍,SNEDDS 的溶解度提高了 16 倍。固体 S-SNEDDS 具有自由流动的特性。冲调后的固体 S-SNEDDS 具有可接受的尺寸、PDI 和 Zeta 电位,分别为 131.3 纳米、0.457 和 -11.3 mV。体外药物释放研究表明,与市售产品和纯药物相比,SNEDDS 的药物溶解度更高,药物预沉淀最小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Formulation, Optimization and Evaluation of Dabigartan Etexilate Encapsulated Solid Supersaturated Self-Nanoemulsifying Drug Delivery System
The present study proposed Dabigatran Etexilate loaded solid supersaturat-ed self-nanoemulsifying drug delivery system (solid S-SNEDDS) for enhancement of payload, drug solubility, dissolution rate as well as minimization of drug precipitation. The study involved formulation optimization using the Box-Behnken design. The op-timal SNEDDS consisting of Caprylic acid (32.9% w/w), Cremophor EL (50.2% w/w) and Transcutol HP (18.8% w/w) as Oil, Surfactant and Co-surfactant, respectively were formulated and evaluated for particle size, PDI, Zeta potential and saturation solubility. The SNEDDS was further incorporated with PPIs for the preparation of supersaturated SNEDDS (S-SNEDDS) to in-crease the drug payload in the formulation. S-SNEDDS was converted to solid S-SNEDDS by ad-sorption onto the porous carrier i.e., Aerosil®200. The in-vitro drug release study was also con-ducted for solid S-SNEDDS. SNEDDS had size, PDI, and Zeta potential of 82nm, 0.347, -10.50mV, respectively. SNEDDS enhanced the saturation solubility of the drug by 93.65-fold. Among PPIs, HPMC K4M showed the most effective response for the formulation of S-SNEDDS. The S-SNEDDS had a more substantial drug payload, which further increased the solubility by 150 times of pure drugs and 16 times of SNEDDS. Solid S-SNEDDS exhibited free-flowing properties. Reconstituted sol-id S-SNEDDS had acceptable size, PDI, and Zeta potential of 131.3nm, 0.457, and -11.3 mV, re-spectively. In-vitro drug release study revealed higher drug dissolution and minimized drug pre-cipitation by SNEDDS compared to marketed products and pure drugs. Proposed nano-formulation was found to efficiently improve the aqueous solubility of the drug and avoid the drug precipitation, thereby avoiding drug loss and improving drug bioa-vailability.
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来源期刊
Current Nanomedicine
Current Nanomedicine Medicine-Medicine (miscellaneous)
CiteScore
2.00
自引率
0.00%
发文量
15
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