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利用小鼠连续采血改善药物发现中的药代动力学和生物利用度支持。

Improved pharmacokinetic and bioavailability support of drug discovery using serial blood sampling in mice.

作者信息

Peng Sean X, Rockafellow Beth A, Skedzielewski Tina M, Huebert Norman D, Hageman William

机构信息

Johnson & Johnson Pharmaceutical Research & Development, Welsh & McKean Roads, Spring House, Pennsylvania 19477, USA.

出版信息

J Pharm Sci. 2009 May;98(5):1877-84. doi: 10.1002/jps.21533.

DOI:10.1002/jps.21533
PMID:18803263
Abstract

Pharmacokinetic studies in mice traditionally require one animal per time point, resulting in dosing and euthanizing a large number of animals and producing suboptimal quality of pharmacokinetic data due to inter-animal variability and dosing error. These studies are time-consuming and labor-intensive. To improve the throughput and quality of pharmacokinetic evaluation in mice, we have developed a serial blood sampling methodology using the lateral saphenous vein puncture technique. Two marketed drugs, indinavir and rosuvastatin, were selected for this validation study because of their distinctly different physicochemical and pharmacokinetic properties. Each compound was dosed orally and intravenously in mice using both discrete and serial blood sampling methods. The pharmacokinetic results from serial bleeding are in excellent agreement with those from discrete sampling for both compounds. Compared to the discrete sampling, the serial sampling procedure is a more humane method, allowing for rapid and repeated sampling from the same site without the need for anesthesia. The application of this new method has led to a remarkable reduction in animal and compound usage, a significant increase in throughput and speed, and a drastic improvement in pharmacokinetic data quality. This approach is especially useful for the first-tier in vivo pharmacokinetic screening of discovery compounds.

摘要

传统上,小鼠体内的药代动力学研究每个时间点都需要使用一只动物,这导致要对大量动物进行给药和安乐死,并且由于动物个体差异和给药误差,药代动力学数据的质量并不理想。这些研究既耗时又费力。为了提高小鼠药代动力学评估的通量和质量,我们开发了一种使用隐静脉外侧穿刺技术的连续采血方法。由于茚地那韦和瑞舒伐他汀这两种市售药物具有明显不同的理化性质和药代动力学特性,因此选择它们进行这项验证研究。每种化合物都通过离散采血和连续采血方法对小鼠进行口服和静脉给药。两种化合物连续采血得到的药代动力学结果与离散采血得到的结果高度一致。与离散采血相比,连续采血程序是一种更人道的方法,无需麻醉即可从同一部位快速重复采样。这种新方法的应用显著减少了动物和化合物的使用量,大幅提高了通量和速度,并极大地改善了药代动力学数据质量。这种方法对于发现化合物的一级体内药代动力学筛选特别有用。

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