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长效胰淀素类似物对能量摄入和体重影响的建模。

Modeling energy intake and body weight effects of a long-acting amylin analogue.

机构信息

Drug Discovery Sciences, Boehringer Ingelheim Pharma GmbH & Co KG, 88397, Biberach, Germany.

Zealand Pharma A/S, Glostrup, 2600, Copenhagen, Denmark.

出版信息

J Pharmacokinet Pharmacodyn. 2018 Apr;45(2):215-233. doi: 10.1007/s10928-017-9557-6. Epub 2017 Nov 23.

Abstract

The inhibitory effect of anti-obesity drugs on energy intake (EI) is counter-acted by feedback regulation of the appetite control circuit leading to drug tolerance. This complicates the design and interpretation of EI studies in rodents that are used for anti-obesity drug development. Here, we investigated a synthetic long-acting analogue of the appetite-suppressing peptide hormone amylin (LAMY) in lean and diet-induced obese (DIO) rats. EI and body weight (BW) were measured daily and LAMY concentrations in plasma were assessed using defined time points following subcutaneous administration of the LAMY at different dosing regimens. Overall, 6 pharmacodynamic (PD) studies including a total of 173 rats were considered in this evaluation. Treatment caused a dose-dependent reduction in EI and BW, although multiple dosing indicated the development of tolerance over time. This behavior could be adequately described by a population model including homeostatic feedback of EI and a turnover model describing the relationship between EI and BW. The model was evaluated by testing its ability to predict BW loss in a toxicology study and was utilized to improve the understanding of dosing regimens for obesity therapy. As such, the model proved to be a valuable tool for the design and interpretation of rodent studies used in anti-obesity drug development.

摘要

抗肥胖药物对能量摄入 (EI) 的抑制作用会被食欲控制回路的反馈调节所抵消,从而导致药物耐受性。这使得用于抗肥胖药物开发的啮齿类动物 EI 研究的设计和解释变得复杂。在这里,我们研究了一种合成长效的胰淀素(amylin)类似物(LAMY)在瘦鼠和饮食诱导肥胖(DIO)大鼠中的作用。通过皮下给予不同剂量方案的 LAMY 后,使用特定时间点评估血浆中 LAMY 的浓度,并每天测量 EI 和体重 (BW)。总的来说,这项评估共考虑了包括 173 只大鼠在内的 6 项药效学(PD)研究。治疗导致 EI 和 BW 呈剂量依赖性下降,尽管多次给药表明随着时间的推移会产生耐受性。该行为可以通过一个包含 EI 体内平衡反馈的群体模型和一个描述 EI 与 BW 之间关系的周转率模型来充分描述。通过测试该模型在毒理学研究中预测 BW 损失的能力来评估该模型,并利用该模型来更好地理解肥胖症治疗的给药方案。因此,该模型被证明是用于抗肥胖药物开发的啮齿动物研究的设计和解释的有用工具。

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