Singh Bramah N
Cardiology Division, VA Greater Los Angeles Healthcare System, 11301 Wilshire Boulevard, West Los Angeles, CA 90073, USA.
Curr Cardiol Rep. 2006 Sep;8(5):349-55. doi: 10.1007/s11886-006-0074-2.
Synthesized as an antianginal compound 40 years ago, amiodarone has emerged as a uniquely effective antiarrhythmic compound in recent years. It has numerous properties, the most prominent being the ability to lengthen repolarization in the atria and ventricles associated with bradycardia without the significant potential for torsades de pointes. Amiodarone effectively controls a wide spectrum of atrial and ventricular antiarrhythmic disorders, but its limiting side effects, such as thyroid dysfunction, pulmonary fibrosis, and dermatologic changes, may limit its long-term use in some patients. What aspects of the multiplicity of the properties of amiodarone are relevant to its unusual efficacy is not known. Deiodination and other structural changes in the amiodarone molecule have has led to a the loss of thyroid and pulmonary effects in the resulting derivative, dronedarone, which is in advanced clinical development.
胺碘酮40年前作为一种抗心绞痛化合物合成,近年来已成为一种独特有效的抗心律失常化合物。它具有多种特性,最显著的是能够延长心房和心室的复极并伴有心动过缓,且发生尖端扭转型室速的可能性不大。胺碘酮能有效控制广泛的心房和心室抗心律失常疾病,但其局限性副作用,如甲状腺功能障碍、肺纤维化和皮肤改变,可能会限制其在一些患者中的长期使用。胺碘酮多种特性中哪些方面与其非凡疗效相关尚不清楚。胺碘酮分子的脱碘及其他结构变化导致其衍生物决奈达隆失去了甲状腺和肺部效应,决奈达隆正处于临床开发后期。