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Glyceryl Monooleate/Poloxamer 407 Cubic Nanoparticles as Oral Drug Delivery Systems: I. In Vitro Evaluation and Enhanced Oral Bioavailability of the Poorly Water-Soluble Drug Simvastatin

机译:甘油单油酸酯/泊洛沙姆407立方纳米颗粒作为口服药物输送系统:I.水溶性较差的药物辛伐他汀的体外评估和口服生物利用度的提高

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摘要

Glyceryl monooleate (GMO)/poloxamer 407 cubic nanoparticles were investigated as potential oral drug delivery systems to enhance the bioavailability of the water-insoluble model drug simvastatin. The simvastatin-loaded cubic nanoparticles were prepared through fragmentation of the GMO/poloxamer 407 bulk cubic-phase gel using high-pressure homogenization. The internal structure of the cubic nanoparticles was identified by cryo-transmission electron microscopy. The mean diameter of the cubic nanoparticles varied within the range of 100–150 nm, and both GMO/poloxamer 407 ratio and theoretical drug loading had no significant effect on particle size and distribution. Almost complete entrapment with efficiency over 98% was achieved due to the high affinity of simvastatin to the hydrophobic regions of the cubic phase. Release of simvastatin from the cubic nanoparticles was limited both in 0.1 M hydrochloride solution containing 0.2% sodium lauryl sulfate and fasted-state simulated intestinal fluid with a total release of <3.0% at 10 h. Pharmacokinetic profiles in beagle dogs showed sustained plasma levels of simvastatin for cubic nanoparticles over 12 h. The relative oral bioavailability of simvastatin cubic nanoparticles calculated on the basis of area under the curve was 241% compared to simvastatin crystal powder. The enhancement of simvastatin bioavailability was possibly attributable to facilitated absorption by lipids in the formulation rather than improved release.
机译:研究了甘油单油酸酯(GMO)/泊洛沙姆407立方纳米颗粒作为潜在的口服药物递送系统,以提高非水溶性模型药物辛伐他汀的生物利用度。载有辛伐他汀的立方纳米粒子是通过使用高压均质化GMO /泊洛沙姆407本体立方相凝胶而制备的。立方纳米粒子的内部结构通过低温透射电子显微镜鉴定。立方纳米粒子的平均直径在100-150 nm范围内变化,并且GMO /泊洛沙姆407的比例和理论载药量对粒径和分布均无显着影响。由于辛伐他汀对立方相的疏水区具有高度亲和力,因此几乎可以完全包埋,效率超过98%。辛伐他汀从立方纳米颗粒中的释放在含0.2%月桂基硫酸钠的0.1 M盐酸盐溶液和禁食状态的模拟肠液中均受到限制,在10 h时的总释放率<3.0%。比格犬的药代动力学曲线显示,在12小时内,立方纳米颗粒的辛伐他汀血浆水平持续升高。与辛伐他汀晶体粉末相比,基于曲线下面积计算的辛伐他汀立方纳米颗粒的相对口服生物利用度为241%。辛伐他汀生物利用度的提高可能归因于脂质在制剂中的吸收促进而不是释放的改善。

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  • 来源
    《AAPS PharmSciTech》 |2009年第3期|960-966|共7页
  • 作者单位

    Department of Pharmaceutics West China School of Pharmacy Sichuan University Chengdu 610041 China;

    School of Pharmacy Second Military Medical University Shanghai 200433 China;

    Department of Pharmaceutics School of Pharmacy Fudan University Shanghai 201203 China;

    School of Pharmacy Second Military Medical University Shanghai 200433 China;

    School of Pharmacy Zhejiang University Hangzhou 310058 China;

    Department of Pharmaceutics West China School of Pharmacy Sichuan University Chengdu 610041 China;

    Department of Pharmaceutics School of Pharmacy Fudan University Shanghai 201203 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    cubic nanoparticles; glyceryl monooleate; oral bioavailability; poloxamer 407; simvastatin;

    机译:立方纳米颗粒;单油酸甘油酯;口服生物利用度;泊洛沙姆407;辛伐他汀;

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