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首页> 外文期刊>International Journal of Pharmaceutics >A candidate drug administered subcutaneously to rodents as drug particles showing hepatic recirculation which influenced the sustained release process
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A candidate drug administered subcutaneously to rodents as drug particles showing hepatic recirculation which influenced the sustained release process

机译:作为药物颗粒皮下给予啮齿动物的候选药物,显示肝再循环,影响持续释放过程

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摘要

The aim of the present study was to evaluate and interpret the pharmacokinetic profiles after subcutaneous (s.c.) administration of crystalline AZ'72 nano- and microsuspensions to rodents. Both formulations were injected at 1.5 and 150 mg/kg to rats. For the lower dose, the profiles were similar after s.c. injection but extended as compared to oral administration. The overall exposure was higher for nanoparticles compared with microparticles during the investigated period. For the higher dose, injection of both suspensions resulted in maintained plateaus caused by the drug depots but, unexpectedly, at similar exposure levels. After addition of a further stabilizer, pluronic F127, nanosuspensions showed improved exposure with dose and higher exposure compared to larger particles in mice. Obviously, a stabilizer mixture that suits one delivery route is not necessarily optimal for another one. The differences in peak concentration (C-max) between nano- and microparticles were mainly ascribed to differences in dissolution rate. Plasma profiles in mice showed curves with secondary absorption peaks after intravenous and oral administration, suggesting hepatic recirculation following both administration routes. This process, together with the depot formulation, complicates the analysis of absorption from s.c. administration, i.e. multiple processes were driving the plasma profile of AZ'72.
机译:本研究的目的是评估和解释皮下(S.C.)在将结晶AZ'72纳米和微量稳定剂施用至啮齿动物的药代动力学谱。将两种配方以1.5和150mg / kg注入大鼠。对于较低剂量,在S.C之后,曲线相似。与口服给药相比,注射但延长。在研究期间,纳米颗粒的整体暴露较高。对于较高剂量,两种悬浮液注射导致由药物仓库引起的维持平稳,但出乎意料地,在类似的暴露水平下。在加入另外的稳定剂后,与小鼠中的较大颗粒相比,纳米杆子与剂量和更高的曝光显示出改善的暴露。显然,适合一个递送途径的稳定剂混合物不一定对另一个交付路线最佳。纳米和微粒之间的峰浓度(C-MAX)的差异主要归因于溶出速率的差异。小鼠中的血浆谱显示静脉内和口服给药后具有二次吸收峰的曲线,暗示两种给药途径后的肝再循环。该方法与仓库配方一起使S.C的吸收分析复杂化。管理,即多个过程正在推动AZ'72的等离子体曲线。

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