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首页> 外文期刊>American Journal of Physiology >A model-based approach to investigating the pathophysiological mechanisms of hypertension and response to antihypertensive therapies: extending the Guyton model
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A model-based approach to investigating the pathophysiological mechanisms of hypertension and response to antihypertensive therapies: extending the Guyton model

机译:一种基于模型的方法来调查高血压病理生理机制和对抗高血压治疗的反应:扩展圭顿模型

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摘要

Reproducibly differential responses to different classes of antihypertensive agents are observed among hypertensive patients and may be due to interindi-vidual differences in hypertension pathology. Computational models provide a tool for investigating the impact of underlying disease mechanisms on the response to antihypertensive therapies with different mechanisms of action. We present the development, calibration, validation, and application of an extension of the Guyton/Karaaslan model of blood pressure regulation. The model incorporates a detailed submodel of the renin-angiotensm-aldosterone system (RAAS), allowing therapies that target different parts of this pathway to be distinguished. Literature data on RAAS biomarker and blood pressure responses to different classes of therapies were used to refine the physiological actions of ANG II and aldosterone on renin secretion, renal vascular resistance, and sodium reabsorption. The calibrated model was able to accurately reproduce the RAAS biomarker and blood pressure responses to combinations of dual-RAAS agents, as well as RAAS therapies in combination with diuretics or calcium channel blockers. The final model was used to explore the impact of underlying mechanisms of hypertension on the blood pressure response to different classes of antihypertensive agents. Simulations indicate that the underlying etiology of hypertension can impact the magnitude of response to a given class of therapy, making a patient more sensitive to one class and less sensitive others. Given that hypertension is usually the result of multiple mechanisms, rather than a single factor, these findings yield insight into why combination therapy is often required to adequately control blood pressure.
机译:在高血压患者中观察到对不同类抗高血压药物的可重复差异反应,并且可能是由于高血压病理学中的internimi-vidual差异。计算模型提供了一种研究潜在的疾病机制对具有不同作用机制的抗高血压疗法的影响的工具。我们介绍了突托/卡拉斯兰血压调节模型的延伸的开发,校准,验证和应用。该模型包含肾素 - 血管紧张素体 - 醛固酮系统(RAA)的详细子模型,允许区分该途径的不同部位的疗法。 RAAS生物标志物的文献数据和对不同类别的疗法的血压反应用于优化Ang II和醛固酮对肾素分泌,肾血管抗性和钠重吸收的生理作用。校准模型能够准确地再现RAAS生物标志物和血压反应对双RAAS剂的组合,以及与利尿剂或钙通道阻滞剂组合的RAA疗法。最终模型用于探讨高血压潜在机制对不同类别的抗高血压药物血压反应的影响。仿真表明,高血压的潜在病因可以影响对给定疗法的反应的程度,使患者对一个类和较少敏感的患者更敏感。鉴于高血压通常是多种机制的结果,而不是单一因素,这些发现会欣赏到为什么通常需要组合治疗来充分控制血压。

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