Mizuno Ju, Yoshiya Ikuto, Yokoyama Takeshi, Yamada Yoshitsugu, Arita Hideko, Hanaoka Kazuo
Departrment of Anesthesiology, Faculty of Medicine, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo, 113-8655, Japan.
Eur J Clin Pharmacol. 2007 Mar;63(3):243-52. doi: 10.1007/s00228-006-0249-1. Epub 2007 Jan 9.
Landiolol hydrochloride is a new ultra-short-acting beta(1)-adrenergic receptor blocking agent that is used for patients with tachycardia during general anesthesia. The hemodynamic response to a beta-adrenergic receptor blocking agent is generally dependent on the subject. In the present investigation we investigated the effects of age and sex on the hemodynamic response to different doses of landiolol.
Following a persistence of tachycardia for more than 1 min, landiolol was infused at 0.03125, 0.0625 and 0.125 mg kg(-1) min(-1) for 1 min followed by 0.01, 0.02 and 0.04 mg kg(-1)min(-1) for 10 min in groups L, M and H, respectively. Heart rate (HR), systolic (sBP) and diastolic blood pressure (dBP) were recorded each minute during the procedure. The respective changes were evaluated using logistic analysis with the equation Y(t) = p + (q - p)/[1 + exp {4m/(q - p))(k - t)}], where p, q, m and k indicate the upper asymptote, lower asymptote, maximum slope and time at the maximum slope.
Parameters q and k for HR in group H were smaller than those in group L, whereas the parameters for sBP and dBP were unchanged among the three groups. Parameter q for HR in group H decreased with age of the patient. There was no significant difference in the landiolol-induced change in HR between males and females.
The hemodynamic response to landiolol is reliably modeled by the logistic function, especially in terms of HR. Landiolol causes a rapid and dose-dependent decrease in HR, whereas landiolol-induced changes in sBP and dBP are independent of dose. The landiolol-induced decrease in HR becomes larger with aging, but shows no sex difference. The logistic model may be useful for studying hemodynamic responses to landiolol based on age and sex differences, and may allow development of an improved monitoring system.
The logistic function reliably represents the hemodynamic responses to landiolol. Landiolol reduces HR rapidly and in a dose-dependent manner whereas landiolol-induced changes in sBP and dBP are independent of dose. A larger decrease in HR is caused by landiolol in elderly patients, but there is no sex difference in the landiolol-induced change in HR.
盐酸兰地洛尔是一种新型超短效β₁肾上腺素能受体阻滞剂,用于全身麻醉期间心动过速的患者。β肾上腺素能受体阻滞剂的血流动力学反应通常因个体而异。在本研究中,我们研究了年龄和性别对不同剂量兰地洛尔血流动力学反应的影响。
在心动过速持续超过1分钟后,L组、M组和H组分别以0.03125、0.0625和0.125mg·kg⁻¹·min⁻¹的剂量输注兰地洛尔1分钟,随后分别以0.01、0.02和0.04mg·kg⁻¹·min⁻¹的剂量输注10分钟。在操作过程中每分钟记录心率(HR)、收缩压(sBP)和舒张压(dBP)。使用逻辑分析,通过方程Y(t) = p + (q - p)/[1 + exp {4m/(q - p))(k - t)}]评估各自的变化,其中p、q、m和k分别表示上渐近线、下渐近线、最大斜率和最大斜率时的时间。
H组HR的参数q和k小于L组,而三组间sBP和dBP的参数无变化。H组HR的参数q随患者年龄降低。男性和女性兰地洛尔引起的HR变化无显著差异。
逻辑函数能可靠地模拟兰地洛尔的血流动力学反应,尤其是在HR方面。兰地洛尔可使HR迅速且剂量依赖性降低,而兰地洛尔引起的sBP和dBP变化与剂量无关。兰地洛尔引起的HR降低随年龄增长而增大,但无性别差异。逻辑模型可能有助于基于年龄和性别差异研究兰地洛尔的血流动力学反应,并可能有助于开发改进的监测系统。
逻辑函数能可靠地代表对兰地洛尔的血流动力学反应。兰地洛尔能迅速且剂量依赖性地降低HR,而兰地洛尔引起的sBP和dBP变化与剂量无关。老年患者中兰地洛尔引起的HR降低幅度更大,但兰地洛尔引起的HR变化无性别差异。