Wang Y X, Quastel D M
Department of Pharmacology and Therapeutics, Faculty of Medicine, University of British Columbia, Vancouver, Canada.
Pflugers Arch. 1991 Oct;419(3-4):274-80. doi: 10.1007/BF00371107.
The actions of lead (Pb2+) on transmitter release were studied at neuromuscular junctions in mouse diaphragm in vitro. The quantal content of end-plate potentials (EPPs) was reduced by Pb2+ in a dose-related manner consistent with inhibition of Ca2+ entry into nerve terminals, with a half-maximal effect at 1.4 microM (in 0.5 mM Ca2+ and 2 mM Mg2+). Pb2+ also inhibited the increased frequency of MEPPs (fMEPP where MEPPs denotes miniature EPPs) produced by Ba2+ in the presence of raised K+, blocking the calculated Ba2+ entry half-maximally at 170 microM. However, at concentrations of 50-200 nM, Pb2+ often increased fMEPP in 20 mM K+ in the presence of Ca2+ and acted to promote the irreversible effect of lanthanum (La3+) to raise fMEPP. In nominally Ca(2+)-free solution with 20 mM K+, brief (1 min) application of Pb2+ (20-320 microM) caused rapid dose-dependent reversible rises in fMEPP. With prolonged exposure to Pb2+, fMEPP rose and then slowly declined; after removal of Pb2+, once fMEPP had fallen to low levels, fMEPP responded nearly normally to Ca2+ or ethanol, but not to Pb2+ itself. In 5 mM K+, 0 mM Ca2+ and varied [Pb2+] (where [] denotes concentration), nerve stimulation caused no EPPs, but prolonged tetanic stimulation produced increases in fMEPP graded with [Pb2+] that persisted as a "tail"; results were consistent with growth of fMEPP with the 4th power of intracellular Pb2+ and removal of intracellular Pb2+ with a time constant of about 30 s.(ABSTRACT TRUNCATED AT 250 WORDS)
在体外对小鼠膈神经肌肉接头处铅(Pb2+)对递质释放的作用进行了研究。终板电位(EPPs)的量子含量随Pb2+剂量增加而降低,这与抑制Ca2+进入神经末梢一致,在1.4微摩尔(在0.5毫摩尔Ca2+和2毫摩尔Mg2+中)时达到半数最大效应。Pb2+还抑制了在高钾存在下Ba2+引起的微小终板电位(MEPPs,fMEPP)频率增加,在170微摩尔时半数最大程度地阻断了计算得出的Ba2+内流。然而,在50 - 200纳摩尔浓度下,Pb2+在Ca2+存在时的20毫摩尔钾中常增加fMEPP,并促进镧(La3+)升高fMEPP的不可逆作用。在含20毫摩尔钾的无钙名义溶液中,短暂(1分钟)施加Pb2+(20 - 320微摩尔)导致fMEPP快速剂量依赖性可逆升高。长时间暴露于Pb2+时,fMEPP先升高然后缓慢下降;去除Pb2+后,一旦fMEPP降至低水平,fMEPP对Ca2+或乙醇反应几乎正常,但对Pb2+本身无反应。在5毫摩尔钾、0毫摩尔Ca2+和不同[Pb2+]([ ]表示浓度)条件下,神经刺激不产生EPPs,但长时间强直刺激使fMEPP随[Pb2+]分级增加并以“尾”的形式持续;结果与fMEPP随细胞内Pb2+的四次方增长以及细胞内Pb2+以约30秒的时间常数去除一致。(摘要截断于250字)