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一种用于分析乙酰胆碱和硝普钠离子电渗疗法期间药物转运和血流反应的时间响应模型。

A time-response model for analysis of drug transport and blood flow response during iontophoresis of acetylcholine and sodium nitroprusside.

作者信息

Tesselaar Erik, Henricson Joakim, Jonsson Susanne, Sjöberg Folke

机构信息

Department of Medicine and Care, Faculty of Health Sciences, Linköping University Hospital, Linköping, Sweden.

出版信息

J Vasc Res. 2009;46(4):270-7. doi: 10.1159/000176042. Epub 2008 Nov 25.

Abstract

BACKGROUND/AIMS: The analysis of blood flow responses to iontophoresis of vasoactive drugs is often limited to evaluation of maximum responses. In this study, a time-response model is proposed for the blood flow responses to vasoactive drugs applied by iontophoresis.

METHODS

The microvascular bed is represented as a single compartment with a zero-order influx of the drugs from the electrode and a first-order clearance due to diffusion and blood flow. The blood flow response to the local drug dose is described using the E(max) model.

RESULTS

The model accurately describes the blood flow responses to acetylcholine and sodium nitroprusside during a single iontophoretic current pulse. There is a significant clearance out of the microvascular bed during iontophoresis which depends on the type of drug administered.

CONCLUSION

The model enables an accurate estimation of response parameters such as ED50 and maximum response, even if the true maximum blood flow is not obtained. The results suggest that due to clearance from the microvascular bed, the local drug dose during a single pulse of current is not linearly proportional to current strength multiplied by pulse duration.

摘要

背景/目的:对血管活性药物离子电渗疗法血流反应的分析通常局限于最大反应的评估。在本研究中,提出了一种针对离子电渗疗法应用血管活性药物的血流反应的时间-反应模型。

方法

微血管床被表示为一个单室模型,药物从电极以零级方式流入,因扩散和血流以一级方式清除。使用E(max)模型描述对局部药物剂量的血流反应。

结果

该模型准确描述了在单个离子电渗电流脉冲期间对乙酰胆碱和硝普钠的血流反应。离子电渗期间微血管床有显著清除,这取决于所施用药物的类型。

结论

即使未获得真正的最大血流,该模型也能准确估计反应参数,如半数有效剂量(ED50)和最大反应。结果表明,由于微血管床的清除作用,单个电流脉冲期间的局部药物剂量与电流强度乘以脉冲持续时间并非线性相关。

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