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In vivo performance evaluation and establishment of IVIVC for osmotic pump based extended release formulation of milnacipran HCl

机译:盐酸米那普仑基于渗透泵的缓释制剂的体内性能评估和IVIVC的建立

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摘要

The objective of the present study was to carry out a pharmacokinetics evaluation of an oral modified release formulation [Aquarius EKX 19102 SRX-2 based osmotic pump (OP)] containing highly soluble milnacipran HCl (MH) as a model drug. It was also aimed at developing an in vitro-in vivo correlation (IVIVC) model for a developed OP. In vivo plasma concentration data were obtained from six healthy male New Zealand albino rabbits after administration of immediate-release milnacipran HCl solution (IRMHSOL) and milnacipran HCl osmotic pump (MHOP). In vitro samples were analysed using an in house developed spectrophotometry method and in vivo samples were analysed using a RP-HPLC method developed by the author. A deconvolution based Level A model was attempted through a correlation of the percent in vivo input obtained through deconvolution and the percent in vitro dissolution obtained experimentally. A good correlation between the percentages dissolved vs absorbed (R2 = 0.978) was obtained using level A correlation. Evaluation of the internal predictability of level A correlation was calculated in terms of the percent prediction error, which was found to be below 15%. In a nutshell, the success of the present study warrants further studies in patient volunteers to assess the ability of the MHOP to provide an effective therapy for depression.
机译:本研究的目的是对包含高度溶解的米那普仑HCl(MH)作为模型药物的口服调释制剂[基于Aquarius EKX 19102 SRX-2的渗透泵(OP)]进行药代动力学评估。它还旨在为已开发的OP开发体外-体内相关性(IVIVC)模型。在施用速释米那普仑HCl溶液(IRMHSOL)和米那普仑HCl渗透泵(MHOP)后,从六只健康的雄性新西兰白化兔子中获得了体内血浆浓度数据。使用内部开发的分光光度法分析体外样品,使用作者开发的RP-HPLC方法分析体内样品。通过将通过反卷积获得的体内输入百分比与通过实验获得的体外溶出百分比相关联,尝试基于反卷积的A级模型。使用水平A相关性,可以得到溶解百分比与吸收百分比之间的良好相关性(R2 = 0.978)。根据预测误差的百分比计算内部A级相关性的可评估性,发现该误差低于15%。简而言之,本研究的成功值得在患者志愿者中进行进一步研究,以评估MHOP为抑郁症提供有效治疗的能力。

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