Ecker Phillip M, Lin Chu-Chuan, Powers Jennifer, Kobilka Brian K, Dubin Anne M, Bernstein Daniel
Dept. of Pediatrics, Stanford University, Stanford, California, USA.
Am J Physiol Heart Circ Physiol. 2006 Jan;290(1):H192-9. doi: 10.1152/ajpheart.00032.2005. Epub 2005 Aug 19.
Beta-adrenergic receptors (beta-ARs) play a major role in regulating heart rate (HR) and contractility in the intact cardiovascular system. Three subtypes (beta1, beta2, and beta3) are expressed in heart tissue, and the role of each subtype in regulating cardiac function has previously been determined by using both pharmacological and gene-targeting approaches. However, previous studies have only examined the role of beta-ARs in the macrolevel regulation of HR. We employed three knockout (KO) mouse lines, beta1-KO, beta2-KO, and beta1/beta2 double KO (DL-KO), to examine the role that beta-AR subtypes play in HR variability (HRV) and in the sympathetic and parasympathetic inputs into HR control. Fast Fourier transformation (FFT) in frequency domain methods of ECG spectral analysis was used to resolve HRV into high- and low-frequency (HF and LF) powers. Resting HR (in beats/min) was decreased in beta1-KO [488 (SD 27)] and DL-KO [495 (SD 12)] mice compared with wild-type [WT; 638 (SD 30)] or beta2-KO [656 (SD 51)] (P < 0.0005) mice. Mice lacking beta1-ARs (beta1-KO and DL-KO) had increased HRV (as illustrated by the standard deviation of normal R-R intervals) and increased normalized HF and LF powers compared with mice with intact beta1-ARs (WT and beta2-KO). These results demonstrate the differential role of beta-AR subtypes in regulating autonomic signaling.
β-肾上腺素能受体(β-ARs)在完整的心血管系统中对心率(HR)和心肌收缩力的调节起着重要作用。心脏组织中表达三种亚型(β1、β2和β3),先前已通过药理学和基因靶向方法确定了每种亚型在调节心脏功能中的作用。然而,先前的研究仅考察了β-ARs在心率宏观调节中的作用。我们使用三种基因敲除(KO)小鼠品系,即β1-KO、β2-KO和β1/β2双基因敲除(DL-KO),来研究β-AR亚型在心率变异性(HRV)以及心率控制中的交感神经和副交感神经输入方面所起的作用。采用心电图频谱分析频域方法中的快速傅里叶变换(FFT),将HRV分解为高频和低频(HF和LF)功率。与野生型[WT;638(标准差30)]或β2-KO[656(标准差51)]小鼠相比,β1-KO[488(标准差27)]和DL-KO[495(标准差12)]小鼠的静息心率(次/分钟)降低(P<0.0005)。与具有完整β1-ARs的小鼠(WT和β2-KO)相比,缺乏β1-ARs的小鼠(β1-KO和DL-KO)的HRV增加(以正常R-R间期的标准差表示),且标准化HF和LF功率增加。这些结果证明了β-AR亚型在调节自主神经信号方面的不同作用。