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首页> 外文期刊>Drug development and industrial pharmacy >Prediction of in vivo plasma concentration-time profile from in vitro release data of designed formulations of milnacipran using numerical convolution method
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Prediction of in vivo plasma concentration-time profile from in vitro release data of designed formulations of milnacipran using numerical convolution method

机译:使用数值卷积方法从米那普仑设计配方的体外释放数据预测体内血浆浓度-时间曲线

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The aim of this study was to predict the in vivo plasma drug level of milnacipran (MIL) from in vitro dissolution data of immediate release (IR 50 mg and IR 100 mg) and matrix based controlled release (CR 100 mg) formulations. Plasma drug concentrations of these formulations were predicted by numerical convolution method. The convolution method uses in vitro dissolution data to derive plasma drug levels using reported pharmacokinetic (PK) parameters of a test product. The bioavailability parameters (C-max and AUC) predicted from convolution method were found to be 106.90 ng/mL, 1138.96 ng/mL h for IR 50mg and 209.80 ng/mL, 2280.61 ng/mL h for IR 100mg which are similar to those reported in the literature. The calculated PK parameters were validated with percentage predication error (% PE). The % PE values for C-max and AUC were found to be 7.04 and -7.35 for IR 50mg and 11.10 and -8.21 for IR 100 mg formulations. The C-max, T-max, and AUC for CR 100mg were found to be 120 ng/mL, 10 h and 2112.60 ng/mL h, respectively. Predicted plasma profile of designed CR formulation compared with IR formulations which indicated that CR formulation can prolong the plasma concentration of MIL for 24 h. Thus, this convolution method is very useful for designing and selection of formulation before animal and human studies.
机译:这项研究的目的是根据速释(IR 50 mg和IR 100 mg)和基于基质的控释(CR 100 mg)制剂的体外溶出数据预测米那普仑(MIL)的体内血浆药物水平。通过数字卷积法预测这些制剂的血浆药物浓度。卷积方法使用体外溶出数据,通过报告的测试产品的药代动力学(PK)参数得出血浆药物水平。通过卷积法预测的生物利用度参数(C-max和AUC)被发现分别为IR 50mg为106.90 ng / mL,1138.96 ng / mL h和IR 100mg为209.80 ng / mL,2280.61 ng / mL h,与那些相似文献报道。计算的PK参数已通过百分比预测误差(%PE)进行了验证。发现对于IR 50mg,C-max和AUC的%PE值分别为7.04和-7.35,对于IR 100mg制剂,其PE值分别为11.10和-8.21。发现100 mg CR的C-max,T-max和AUC分别为120 ng / mL,10 h和2112.60 ng / mL h。与IR制剂相比,设计的CR制剂的预测血浆分布表明CR制剂可以将MIL的血浆浓度延长24小时。因此,这种卷积方法对于动物和人类研究之前的配方设计和选择非常有用。

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