Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmacy, Port Said University, Port Said, Egypt.
Department of Biotechnology, Faculty of Sciences, Taif University, Taif, Saudi Arabia.
Drug Deliv. 2021 Dec;28(1):1150-1165. doi: 10.1080/10717544.2021.1934190.
The objective of this paper is to confine piperine, a poor oral bioavailable herbal drug into bile salt based nano vesicles for improving its aqueous solubility, hence, its therapeutic activity. Piperine-loaded bilosomes were fabricated adopting thin film hydration technique according to 3.2 full factorial design to investigate the impact of different formulation variables on the characters of bilosomes: entrapment efficiency (EE%), particle size, and % of drug released post 8 h (Q8hr). The selected optimum formula was F2 (enclosing 1% bile salt, brij72 as a surfactant, and ratio of surfactant:cholesterol was 9:1) with desirability value 0.801, exhibiting high EE% (97.2 ± 0.8%) nanosized spherical vesicles (220.2 ± 20.5 nm) and Q8hr (88.2%±5.6). The superiority of the optimized formula (F2) over the drug suspension was revealed via permeation study, also pharmacokinetic study denoted to the boosted oral bioavailability of piperine-loaded bilosome compared to piperine suspension. Moreover, antiviral activity and safety margin of F2 was significantly higher than that of the drug suspension. The ability of piperine to interact with the key amino acids in the receptor binding domain 4L3N as indicated by its docking configuration, rationalized its observed activity. Furthermore, F2 significantly reduce oxidant markers, inflammatory cytokines in MERS-CoV-infected mice. Hence, bilosomes can be considered as a carrier of choice for piperine with potential antiviral and anti-inflammatory activities.
本文的目的是将生物利用度较差的草药药物胡椒碱限制在胆汁盐纳米囊泡中,以提高其水溶解度,从而提高其治疗活性。采用薄膜水化技术,根据 3.2 全因子设计,制备载胡椒碱的双层囊泡,以研究不同制剂变量对双层囊泡特性的影响:包封率(EE%)、粒径和 8 小时后药物释放的百分比(Q8hr)。选择的最佳配方是 F2(含有 1%胆汁盐、Brij72 作为表面活性剂,表面活性剂:胆固醇的比例为 9:1),其理想值为 0.801,表现出高 EE%(97.2±0.8%)的纳米球形囊泡(220.2±20.5nm)和 Q8hr(88.2%±5.6%)。通过渗透研究揭示了优化配方(F2)优于药物混悬剂,药代动力学研究也表明,与胡椒碱混悬剂相比,胡椒碱双层囊泡的口服生物利用度得到了提高。此外,F2 的抗病毒活性和安全边际明显高于药物混悬剂。胡椒碱与受体结合域 4L3N 中关键氨基酸相互作用的能力,如其对接构象所示,合理说明了其观察到的活性。此外,F2 显著降低了 MERS-CoV 感染小鼠的氧化标志物和炎症细胞因子。因此,双层囊泡可以被认为是具有潜在抗病毒和抗炎活性的胡椒碱的首选载体。