首页> 外文期刊>Drug delivery. >Trans -resveratrol self-nano-emulsifying drug delivery system (SNEDDS) with enhanced bioavailability potential: optimization, pharmacokinetics and in situ single pass intestinal perfusion (SPIP) studies
【24h】

Trans -resveratrol self-nano-emulsifying drug delivery system (SNEDDS) with enhanced bioavailability potential: optimization, pharmacokinetics and in situ single pass intestinal perfusion (SPIP) studies

机译:具有提高的生物利用度潜力的反式白藜芦醇自纳米乳化药物递送系统(SNEDDS):优化,药代动力学和原位单程肠道灌注(SPIP)研究

获取原文
           

摘要

Trans-resveratrol (t-RVT) is a potent antioxidant. By virtue of extensive pre-systemic metabolism and existence of enterohepatic recirculation, t-RVT bioavailability is almost zero. The current study aimed to develop self-nanoemulsifying drug delivery systems (SNEDDS) using long-chain triglycerides (LCTs) of t-RVT in an attempt to circumvent such obstacles. Equilibrium solubility studies indicated the choice of Lauroglycol FCC as lipid, and of Labrasol and Transcutol P as surfactants, for formulating the SNEDDS. Ternary phase diagrams were constructed to select the areas of nanoemulsions, and the amounts of lipid (X1) and surfactant (X2) as the critical factor variables. The SNEDDS were optimized using 32 central composite design (CCD) and the optimized formulation (OPT) located using overlay plot. The nanometer size range and high negative values of zeta potential depicted non-coalescent nature of the SNEDDS. Optimized formulation indicated marked improvement in drug release profile vis-à-vis pure drug. Cloud point determination and accelerated stability studies ascertained the stability of OPT. Augmentation in the values of Ka (3.29-fold) and AUC (4.31-fold) indicated significant enhancement in the rate and extent of bioavailability by the OPT compared with pure drug. In situ perfusion (SPIP) studies in Wistar rats construed remarkable enhancement in the absorptivity and permeability parameters of SNEDDS vis-à-vis the pure drug. Successful establishment of level A of in vitro/in vivo correlation substantiated the judicious choice of the in vitro dissolution milieu for simulating the in vivo conditions. The present study, therefore, reports the successful development of SNEDDS with distinctly enhanced bioavailability of t-RVT.
机译:反式白藜芦醇(t-RVT)是有效的抗氧化剂。由于广泛的全身前代谢和肝肠循环的存在,t-RVT的生物利用度几乎为零。当前的研究旨在开发使用t-RVT的长链甘油三酸酯(LCT)的自纳米乳化药物递送系统(SNEDDS),以试图避免此类障碍。平衡溶解度研究表明,选择月桂醇FCC作为脂质,选择Labrasol和Transcutol P作为表面活性剂,可配制SNEDDS。建立三元相图,选择纳米乳液的面积,并以脂质(X 1 )和表面活性剂(X 2 )的量作为关键因素变量。使用3 2 中央复合设计(CCD)对SNEDDS进行了优化,并使用覆盖图确定了优化配方(OPT)。纳米尺寸范围和Zeta电位的高负值描述了SNEDDS的非聚结性质。优化的配方表明,与纯药物相比,药物释放曲线有明显改善。浊点测定和加速稳定性研究确定了OPT的稳定性。与纯药物相比,K a (3.29倍)和AUC(4.31倍)值的增加表明OPT的生物利用度和生物利用度显着提高。 Wistar大鼠的原位灌注(SPIP)研究表明SNEDDS相对于纯药物的吸收率和通透性参数显着提高。成功建立体外/体内相关性的A级证实了体外溶出环境用于模拟体内条件的明智选择。因此,本研究报告成功开发出具有明显增强的t-RVT生物利用度的SNEDDS。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号