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胡椒碱固体自纳米乳化药物递送系统的研制:优化、体外、离体和体内评价

Development of Piperine-Loaded Solid Self-Nanoemulsifying Drug Delivery System: Optimization, In-Vitro, Ex-Vivo, and In-Vivo Evaluation.

作者信息

Zafar Ameeduzzafar, Imam Syed Sarim, Alruwaili Nabil K, Alsaidan Omar Awad, Elkomy Mohammed H, Ghoneim Mohammed M, Alshehri Sultan, Ali Ahmed Mahmoud Abdelhaleem, Alharbi Khalid Saad, Yasir Mohd, Noorulla Kaveripakkam M, Alzarea Sami I, Alanazi Abdullah S

机构信息

Department of Pharmaceutics, College of Pharmacy, Jouf University, Sakaka 72341, Al-Jouf, Saudi Arabia.

Department of Pharmaceutics, College of Pharmacy, King Saud University, Riyadh 11451, Saudi Arabia.

出版信息

Nanomaterials (Basel). 2021 Oct 31;11(11):2920. doi: 10.3390/nano11112920.

Abstract

Hypertension is a cardiovascular disease that needs long-term medication. Oral delivery is the most common route for the administration of drugs. The present research is to develop piperine self-nanoemulsifying drug delivery system (PE-SNEDDS) using glyceryl monolinoleate (GML), poloxamer 188, and transcutol HP as oil, surfactant, and co-surfactant, respectively. The formulation was optimized by three-factor, three-level Box-Behnken design. PE-SNEDDs were characterized for globule size, emulsification time, stability, in-vitro release, and ex-vivo intestinal permeation study. The optimized PE-SNEDDS (OF3) showed the globule size of 70.34 ± 3.27 nm, percentage transmittance of 99.02 ± 2.02%, and emulsification time of 53 ± 2 s Finally, the formulation OF3 was transformed into solid PE-SNEDDS (S-PE-SNEDDS) using avicel PH-101 as adsorbent. The reconstituted SOF3 showed a globule size of 73.56 ± 3.54 nm, PDI of 0.35 ± 0.03, and zeta potential of -28.12 ± 2.54 mV. SEM image exhibited the PE-SNEDDS completely adsorbed on avicel. Thermal analysis showed the drug was solubilized in oil, surfactant, and co-surfactant. S-PE-SNEDDS formulation showed a more significant ( < 0.05) release (97.87 ± 4.89% in 1 h) than pure PE (27.87 ± 2.65% in 1 h). It also exhibited better antimicrobial activity against and and antioxidant activity as compared to PE dispersion. The in vivo activity in rats exhibited better ( < 0.05) antihypertensive activity as well as 4.92-fold higher relative bioavailability than pure PE dispersion. Finally, from the results it can be concluded that S-PE-SNEDDS might be a better approach for the oral delivery to improve the absorption and therapeutic activity.

摘要

高血压是一种需要长期药物治疗的心血管疾病。口服给药是最常见的药物给药途径。本研究旨在分别以单亚油酸甘油酯(GML)、泊洛沙姆188和二乙二醇单乙基醚醋酸酯(Transcutol HP)作为油相、表面活性剂和助表面活性剂,开发胡椒碱自纳米乳化药物递送系统(PE-SNEDDS)。通过三因素三水平的Box-Behnken设计对制剂进行优化。对PE-SNEDDS进行了粒径、乳化时间、稳定性、体外释放和离体肠道渗透研究等表征。优化后的PE-SNEDDS(OF3)的粒径为70.34±3.27nm,透光率为99.02±2.02%,乳化时间为53±2秒。最后,以微晶纤维素PH-101为吸附剂,将制剂OF3转化为固体PE-SNEDDS(S-PE-SNEDDS)。重构后的SOF3的粒径为73.56±3.54nm,多分散指数(PDI)为0.35±0.03,zeta电位为-28.12±2.54mV。扫描电子显微镜(SEM)图像显示PE-SNEDDS完全吸附在微晶纤维素上。热分析表明药物溶解在油相、表面活性剂和助表面活性剂中。S-PE-SNEDDS制剂在1小时内的释放率(97.87±4.89%)比纯PE(1小时内为27.87±2.65%)更显著(P<0.05)。与PE分散体相比,它还表现出更好的抗 和 抗菌活性以及抗氧化活性。在大鼠体内的活性表现出更好的(P<0.05)降压活性,相对生物利用度比纯PE分散体高4.92倍。最后,从结果可以得出结论,S-PE-SNEDDS可能是一种更好的口服给药方法,可提高吸收和治疗活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/190e/8624913/0db5155c944e/nanomaterials-11-02920-g001.jpg

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