Boland L M, Brown T A, Dingledine R
Curriculum in Neurobiology, University of North Carolina, Chapel Hill 27599.
Brain Res. 1991 Nov 1;563(1-2):142-50. doi: 10.1016/0006-8993(91)91527-8.
The selectivity of block of voltage-activated barium (Ba2+) currents by lanthanide ions was studied in a rat dorsal root ganglion (DRG) cell line (F11-B9), rat and frog peripheral neurons, and rat cardiac myocytes using the whole-cell patch clamp technique. Gadolinium (Gd3+) produced a dose-dependent and complete inhibition of whole-cell Ba2+ current in all cells studied, including cells expressing identified dihydropyridine-sensitive L-type currents and omega-conotoxin-sensitive N-type currents. Like Gd3+, lutetium (Lu3+) and lanthanum (La3+) blocked all Ba2+ current with little selectivity for different components of the whole-cell current. Gd3+ block of Ba2+ currents was incomplete, however, when sodium bicarbonate (5-22.6 mM) was added to the standard HEPES-buffered external Ba2+ solution. In rat DRG neurons and F11-B9 cells, a fraction of the whole-cell Ba2+ current recorded in the presence of bicarbonate was resistant to block by saturating concentrations of Gd3+ (50-100 microM). The resistant current inactivated more rapidly than the original current giving the appearance that, under these conditions, Gd3+ block is more selective for the slowly inactivating component of the whole-cell current. Bicarbonate modification of Gd3+ block occurred both before and after omega-conotoxin block of N-type currents in rat DRG neurons, suggesting that even in the presence of bicarbonate, Gd3+ block was not selective for N-type currents.
利用全细胞膜片钳技术,在大鼠背根神经节(DRG)细胞系(F11-B9)、大鼠和青蛙外周神经元以及大鼠心肌细胞中研究了镧系离子对电压激活钡(Ba2+)电流的阻断选择性。钆(Gd3+)对所有研究细胞中的全细胞Ba2+电流产生剂量依赖性的完全抑制,包括表达已鉴定的二氢吡啶敏感L型电流和ω-芋螺毒素敏感N型电流的细胞。与Gd3+一样,镥(Lu3+)和镧(La3+)阻断所有Ba2+电流,对全细胞电流的不同成分几乎没有选择性。然而,当向标准的HEPES缓冲细胞外Ba2+溶液中加入碳酸氢钠(5-22.6 mM)时,Gd3+对Ba2+电流的阻断并不完全。在大鼠DRG神经元和F11-B9细胞中,在存在碳酸氢盐的情况下记录的全细胞Ba2+电流的一部分对饱和浓度的Gd3+(50-100μM)的阻断具有抗性。抗性电流比原始电流更快地失活,这使得在这些条件下,Gd3+阻断对全细胞电流中缓慢失活成分的选择性更高。在大鼠DRG神经元中,Gd3+阻断的碳酸氢盐修饰发生在ω-芋螺毒素阻断N型电流之前和之后,这表明即使在存在碳酸氢盐的情况下,Gd3+阻断对N型电流也没有选择性。