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Sildenafil citrate as oral solid lipid nanoparticles: A novel formula with higher bioavailability and sustained action for treatment of erectile dysfunction

机译:枸酸西地那非作为口服固体脂质纳米粒:具有更高生物利用度和持续作用的新型配方,用于治疗勃起功能障碍

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Objective: The aim of this study was to prepare sildenafil citrate as solid lipid nanoparticles (SLNs), in order to find an innovative way for alleviating the disadvantages associated with commercially available sildenafil citrate tablets. These limitations include poor solubility and extensive first-pass metabolism, resulting in low (40%) bioavailability and short elimination half-life (4 h).Methods: SLNs were prepared by hot homogenization followed by ultrasonication. Solubility of sildenafil citrate in different solid lipids was measured, effect of process variables as surfactant type and concentration, homogenization time, ultrasonication time and charge-inducing agent on the particle size, zeta potential and encapsulation efficiency were also determined. Furthermore, in vitro drug release, stability and in vivo pharmacokinetics were studied in rabbitsResults: The best SLN formula consisted of 2% precirol ATO5, 0.5% phosphatidylcholine, 2.5% gelucire 44/14, 0.125% stearylamine, had an average particle size of 28.5 nm with 95.34% entrapment efficiency and demonstrated a controlled drug release over 24 h. An in vivo pharmacokinetic study revealed enhanced bioavailability by > 1.87 fold, and the mean residence time was longer than that for the commercially available tablet.Conclusion: SLN could be a promising carrier for sustained/prolonged sildenafil citrate release with enhanced oral bioavailability.
机译:目的:本研究的目的是制备柠檬酸西地那非固体脂质纳米粒(SLNs),以寻找减轻与柠檬酸西地那非片剂相关的缺点的创新方法。这些局限性包括溶解度差和首过代谢广泛,导致生物利用度低(40%)和消除半衰期短(4 h)。方法:通过热均质然后超声处理制备SLN。测量了枸den酸西地那非在不同固体脂质中的溶解度,测定了工艺变量如表面活性剂类型和浓度,均质时间,超声处理时间和电荷诱导剂对粒径,ζ电势和包封效率的影响。此外,还对兔进行了体外药物释放,稳定性和体内药代动力学的研究。结果:最佳的SLN配方由2%的precirol ATO5、0.5%的磷脂酰胆碱,2.5%的胶状蛋白44 / 14、0.125%的硬脂胺组成,平均粒径为28.5纳米具有95.34%的包封率,并且在24小时内显示出受控的药物释放。体内药代动力学研究显示,其生物利​​用度提高了> 1.87倍,并且平均停留时间比市售片剂更长。结论:SLN可能是维持/延长柠檬酸西地那非释放/提高口服生物利用度的有希望的载体。

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