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用于改善抗癌染料木黄酮口服递送的自乳化磷脂预浓缩物(SEPPs):开发、评估及体外肠道渗透

Self-emulsifying phospholipid pre-concentrates (SEPPs) for improved oral delivery of the anti-cancer genistein: Development, appraisal and ex-vivo intestinal permeation.

作者信息

Shehata Eman M M, Elnaggar Yosra S R, Galal Saly, Abdallah Ossama Y

机构信息

Department of Pharmaceutics, Faculty of Pharmacy, Alexandria University, Egypt.

Department of Pharmaceutics, Faculty of Pharmacy, Alexandria University, Egypt; Department of Pharmaceutics, Faculty of Pharmacy and Drug Manufacturing, Pharos University in Alexandria, Egypt.

出版信息

Int J Pharm. 2016 Sep 25;511(2):745-56. doi: 10.1016/j.ijpharm.2016.07.078. Epub 2016 Aug 1.

Abstract

Genistein (GEN), a potent anticancer agent, suffers from scanty oral bioavailability due to poor solubility and extensive metabolism. This work endeavored to enhance GEN solubility and intestinal permeability via fabrication of self-emulsifying phospholipid pre-concentrates (SEPPs) using some bioactive surfactants. Moreover, the potential of surfactant-free SEPP to address GEN obstacles was investigated. SEPPs were prepared from Phosal(®) 53MCT, oil/phosphatidylcholine mixture, alone or with only 30% of different surfactant/co-surfactant mixture (S/CO). In-vitro characterization encompassed globule size analysis, zeta potential (ZP), transmission electron microscopy, and in-vitro release. Ex-vivo intestinal permeation study was performed using non-everted rat intestinal sac technique. Upon aqueous dilution, SEPPs were easily dispersed with spherical globules within a nano-range size (from 165±15 to 425±20nm) and adequate negative ZP (>-30mV). SEPPs demonstrated a significant enhancement in GEN release compared to drug suspension without superior effect due to added S/CO. Permeation study revealed that at least 12.13% free GEN was permeated after 120min from SEPPs compared to only 3.7% from drug suspension. Among different SEPPs, SEPP containing 30% Tween 80/Transcutol HP mixture showed the highest GEN permeation (18.54%). Conclusively, SEPP might be a promising nanocarrier that enhances GEN bioavailability via improving dissolution and inhibition of pre-systemic clearance.

摘要

染料木黄酮(GEN)是一种有效的抗癌药物,但由于溶解度差和广泛的代谢作用,其口服生物利用度很低。这项工作致力于通过使用一些生物活性表面活性剂制备自乳化磷脂预浓缩物(SEPPs)来提高GEN的溶解度和肠道通透性。此外,还研究了无表面活性剂的SEPP解决GEN相关障碍的潜力。SEPPs由Phosal(®) 53MCT(油/磷脂酰胆碱混合物)单独制备,或仅与30%的不同表面活性剂/助表面活性剂混合物(S/CO)一起制备。体外表征包括球粒大小分析、zeta电位(ZP)、透射电子显微镜和体外释放。使用未翻转的大鼠肠囊技术进行离体肠道渗透研究。用水稀释后,SEPPs很容易分散成纳米级大小的球形球粒(165±15至425±20nm),并具有足够的负ZP(>-30mV)。与未添加S/CO的药物悬浮液相比,SEPPs显示出GEN释放的显著增强,但没有产生优越的效果。渗透研究表明,120分钟后,SEPPs中至少有12.13%的游离GEN渗透,而药物悬浮液中只有3.7%。在不同的SEPPs中,含有30%吐温80/二甲基亚砜混合物的SEPP显示出最高的GEN渗透率(18.54%)。总之,SEPP可能是一种有前途的纳米载体,通过改善溶解和抑制全身前清除来提高GEN的生物利用度。

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