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首页> 外文期刊>RSC Advances >Enhanced dissolution and oral bioavailability of lurasidone hydrochloride nanosuspensions prepared by antisolvent precipitation-ultrasonication method
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Enhanced dissolution and oral bioavailability of lurasidone hydrochloride nanosuspensions prepared by antisolvent precipitation-ultrasonication method

机译:通过抗溶解沉淀 - 超声法制备LuraAnidone盐酸盐纳米杆菌的增强溶解和口服生物利用度

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摘要

In order to improve the dissolution rate and oral bioavailability of lurasidone hydrochloride (LH), LH nanosuspensions (LH-NSP) were prepared by an antisolvent precipitation-ultrasonication method and characterized in this study. Three important formulation factors including the concentration of LH in the solvent, the amount of sodium dodecyl sulfonate (SDS) and poloxamer 188 (F68) in the antisolvent were optimized by the central composite design response surface methodology. Besides, the impacts of three important process parameters, namely the precipitation temperature, the power input and the duration of ultrasonication, on the particle size and polydispersity index (PDI) of LH-NSP were also investigated. The optimal values of these formulation factors were 0.21% (w/v) LH, 0.06% (w/v) SDS and 0.16% (w/v) F68, respectively, while for the process parameters, the precipitation temperature, power input and duration of ultrasonication were 5 degrees C, 100 W and 10 min, respectively. The particle size and PDI of the optimized LH-NSP were 124.6 +/- 11.9 nm and 0.097 +/- 0.0024, respectively. There was no crystalline change in the LH-NSP compared with LH raw material on the basis of powder X-ray diffraction (PXRD) and differential scanning calorimetry (DSC) analysis results. With the reduced particle size, the solubility and in vitro dissolution rate of LH in the LH-NSP were significantly improved. Pharmacokinetic studies showed that the C-max and AUC(0-24) of the group with oral administration of the LH-NSP were both 1.5 times higher than that of raw LH.
机译:为了提高盐酸盐酮(LH)的溶出速率和口服生物利用度,通过抗溶解沉淀 - 超声法制备LH纳米皂酮(LH-NSP)并在本研究中表征。通过中央复合设计响应面方法优化了包括溶剂中LH浓度的三种重要配方因子,磺基磺酸钠(SDS)和脱氧剂188(F68)的量进行了优化。此外,还研究了三个重要的工艺参数的影响,即沉淀温度,超声波的脉冲率,对LH-NSP的粒度和多分散指数(PDI)的影响。这些配方因子的最佳值分别为0.21%(w / v)lH,0.06%(w / v)sds和0.16%(w / v)f68,而用于工艺参数,降水温度,电源输入和超声持续时间分别为5℃,100W和10分钟。优化的LH-NSP的粒度和PDI分别为124.6 +/- 11.9nm和0.097 +/- 0.0024。在粉末X射线衍射(PXRD)和差示扫描量热法(DSC)分析结果,LH-NSP中没有结晶变化与LH原料相比。随着粒径降低,LH-NSP中LH的溶解度和体外溶解速率显着提高。药代动力学研究表明,具有LH-NSP的口服给药的组的C-MAX和AUC(0-24)比原料LH高1.5倍。

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  • 来源
    《RSC Advances》 |2016年第54期|共8页
  • 作者单位

    China Pharmaceut Univ Dept Pharmaceut 24 Tongjia Lane Nanjing 210009 Peoples R China;

    China Pharmaceut Univ Dept Pharmaceut 24 Tongjia Lane Nanjing 210009 Peoples R China;

    China Pharmaceut Univ Dept Pharmaceut 24 Tongjia Lane Nanjing 210009 Peoples R China;

    China Pharmaceut Univ Dept Pharmaceut 24 Tongjia Lane Nanjing 210009 Peoples R China;

    China Pharmaceut Univ Dept Pharmaceut 24 Tongjia Lane Nanjing 210009 Peoples R China;

    China Pharmaceut Univ Dept Pharmaceut 24 Tongjia Lane Nanjing 210009 Peoples R China;

    China Pharmaceut Univ Dept Pharmaceut 24 Tongjia Lane Nanjing 210009 Peoples R China;

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  • 正文语种 eng
  • 中图分类 化学;
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