Lehmann K
Psychiatr Neurol Med Psychol (Leipz). 1975 Dec;27(12):705-19.
A comprehensive consideration of biochemical and pharmacodynamic lithium (Li) effects enabled an explanation of the Li mechanism (Fig 1). According to this concept, Li might possibly affect the activity of membrane-bound ATPases in dependence on the initial situation, dose and duration of application. Research into Li-kinetics suggested the participation of active process in the transport of the ion through the organism. Li-kinetics describes distribution within a multiple-compartment system and, with the exception of the resorption phase, its independent of the anion used. The elimination (half-life time 22 to 25 hrs) is limited by backward flow form the tissue.
对锂(Li)的生化和药效学作用进行全面考虑,有助于解释锂的作用机制(图1)。根据这一概念,锂可能会根据初始情况、剂量和应用持续时间影响膜结合ATP酶的活性。锂动力学研究表明,离子在生物体内的转运过程中有主动过程参与。锂动力学描述了多室系统内的分布情况,除吸收阶段外,其与所用阴离子无关。消除过程(半衰期为22至25小时)受组织逆向流动的限制。