Agoston S, Vandenbrom R H, Wierda J M
Research Group of Institute for Experimental Anesthesiology, University of Groningen, The Netherlands.
Clin Pharmacokinet. 1992 Feb;22(2):94-115. doi: 10.2165/00003088-199222020-00002.
Neuromuscular blocking agents provide muscle relaxation for a great variety of surgical procedures with light planes of general anaesthesia. Besides having a significant impact in the development of anaesthesia and surgery, these agents continue to play an important role as pharmacological tools in the elucidation of the physiological and pharmacological regulation of neuromuscular transmission and the morphofunctional organisation of the neuromuscular junction. In the daily practice of anaesthesia, muscle relaxants are considered to be safe drugs with predictable, straightforward pharmacological actions. However, the use of relaxants constitutes a deliberate encroachment on respiration, one of the most important physiological mechanisms. The pharmacokinetic behaviour of this class of agents is little influenced by age or anaesthetic agents; however, hepatic or renal disease may profoundly alter their excretion pattern, resulting in prolonged duration of neuromuscular blockade. Biotransformation plays an important role in the total elimination of recently introduced compounds. Consequently, knowledge of the disposition pharmacokinetics, excretion and biotransformation of this class of drugs is indispensable for their rational choice for various surgical procedures. In this review, the known pharmacokinetics of standard compounds (introduced before 1980) are briefly summarised and new information generated by the development of vecuronium, rocuronium, pipecuronium (steroidal agents) and atracurium, mivacurium, doxacurium (benzylisoquinolinium esters) is discussed in more detail.
神经肌肉阻滞剂可在浅全麻水平下为多种外科手术提供肌肉松弛作用。除了对麻醉和外科手术的发展产生重大影响外,这些药物作为药理学工具,在阐明神经肌肉传递的生理和药理调节以及神经肌肉接头的形态功能组织方面,继续发挥着重要作用。在麻醉的日常实践中,肌肉松弛剂被认为是具有可预测、直接药理作用的安全药物。然而,使用松弛剂构成了对呼吸这一最重要生理机制的蓄意侵犯。这类药物的药代动力学行为受年龄或麻醉剂的影响较小;然而,肝脏或肾脏疾病可能会深刻改变其排泄模式,导致神经肌肉阻滞时间延长。生物转化在最近引入的化合物的总消除中起着重要作用。因此,了解这类药物的处置药代动力学、排泄和生物转化对于在各种外科手术中合理选择它们是必不可少的。在这篇综述中,简要总结了标准化合物(1980年以前引入)的已知药代动力学,并更详细地讨论了维库溴铵、罗库溴铵、哌库溴铵(甾体类药物)以及阿曲库铵、米库氯铵、多库氯铵(苄基异喹啉酯)的发展所产生的新信息。