ангиотензин II 抗剂在心房动中防止电气重塑
H Nakashima1, K Kumagai, H Urata
1Second Department of Internal Medicine, School of Medicine, Fukuoka University, Fukuoka, Japan. kxk@fukuoka-u.ac.jp
Circulation
|June 7, 2000
概括
ангиотензин II (Ang II) 阻塞通过抑制心房有效耐火期缩短来防止心房电力改造. 这表明Ang II阻塞可能是心房动的治疗策略.
科学领域:
- 心血管生理学心血管生理学
- 电力生理学 电力生理学
背景情况:
- 阻断 ангиотензин II (Ang II) 的形成提供了心血管保护.
- 在心房电力改造中Ang II的具体作用尚不清楚.
研究的目的:
- 为了研究德沙坦和卡波普利尔对心房电力改造的影响.
- 为了确定Ang II是否会在快速节奏过程中影响心房有效耐火期 (AERP).
主要方法:
- 狗进行了快速的心房节奏 (800次每分钟180分钟).
- 两组接受了盐水,坎德沙坦,卡波普利尔或Ang II输液.
- 在节奏前和之后测量了心房有效耐火期 (AERP).
主要成果:
- 盐水和Ang II组显示出显著的AERP缩短.
- 坎德萨坦和卡普托普里尔完全抑制了AERP缩短.
- 康德沙坦和卡普托普里尔的AERP适应率保持不变.
结论:
- 内源性Ang II抑制可以防止在快速心房节奏时AERP缩短.
- 安格II与心房电力改造机制有关.
- 阻断Ang II可能为人类心房动提供治疗益处.
相关概念视频
Antihypertensive Drugs: Angiotensin-Converting Enzyme Inhibitors
Angiotensin-converting enzyme (ACE), a vital component of the renin-angiotensin-aldosterone system, is abundant in lung endothelial cells. ACE converts the inactive decapeptide, angiotensin I, into the active octapeptide, angiotensin II. This potent vasoconstrictor narrows blood vessels, increasing resistance to blood flow and elevating blood pressure. Angiotensin II also stimulates aldosterone production, encouraging kidney cells to reabsorb more sodium and water from urine, thereby increasing...
Antihypertensive Drugs: Angiotensin II Receptor Blockers
In the renin-angiotensin-aldosterone system, a hormone called angiotensin II plays a crucial role. It binds to the AT1 receptors in vascular smooth muscles coupled with Gq proteins. The activation of these receptors activates an enzyme called phospholipase C, which releases two molecules: inositol trisphosphate and diacylglycerol. These molecules cause a chain reaction that leads to the phosphorylation of myosin light chains and promotes interaction between actin and myosin, leading to smooth...
Antihypertensive Drugs: Direct Renin Inhibitors
The renin-angiotensin-aldosterone system (RAAS) is an intricate physiological pathway involving numerous enzymes and hormones, including renin, angiotensin-converting enzyme (ACE), angiotensin I and II, and aldosterone. Imbalances within this system increase the production of angiotensin II and aldosterone. Increased angiotensin II levels promote vasoconstriction and blood pressure elevation. Concurrently, higher aldosterone levels stimulate sodium and water reabsorption in the kidneys,...
Antiarrhythmic Drugs: Class II Agents as β-Adrenergic Blockers
Adrenergic stimulation generally impacts cardiac rate and rhythm. Specifically, stimulation of the β-adrenoceptors triggers an increase in intracellular calcium ion influx and pacemaker currents, which may cause arrhythmias. Catecholamines like adrenaline also demonstrate β2-adrenoceptor-mediated hypokalemia, impacting cardiac action potential and disrupting the normal cardiac rhythm. Class II antiarrhythmic drugs are β-adrenoceptor antagonists or β-blockers, which indirectly block calcium...
Heart Failure Drugs: Inhibitors of Renin-Angiotensin System
The activation of the sympathetic nervous system and the renin-angiotensin-aldosterone system (RAAS) contributes to cardiac remodeling, and inhibiting the RAAS is a pharmacological target in heart failure management. As a result, neurohumoral modulation is a crucial treatment principle for managing heart failure. This approach involves using medications like ACE inhibitors (ACEIs), angiotensin receptor blockers (ARBs), β-blockers, mineralocorticoid receptor antagonists (MRAs), and neutral...
Aortic Regurgitation III: Medical Management
Aortic regurgitation (AR) is when the aortic valve does not close or seal properly, leading to backward blood circulation from the aorta into the left ventricle during diastole. Common causes of AR include rheumatic heart disease, congenital valve defects, and aortic root dilation. Managing AR requires a multifaceted approach to alleviate symptoms, preserve left ventricular function, and address the underlying cause of the regurgitation. Patients with symptomatic AR or significant left...


