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Rhythmic Activity of Murine Neuromuscular Junctions upon Activation of Release of Stored Calcium in the Presence of a Calcium Buffer

机译:在钙缓冲液存在下激活钙离子释放后鼠神经肌肉接头的节律活动

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Using a two-electrode voltage-clamp technique, we recorded end-plate currents (EPCs) in neuromuscular synaptic junctions of the murine diaphragm upon rhythmic stimulation of the n. phrenicus with frequencies of 7, 20, 50, 70, and 100 sec?1. Parameters of EPC series were analyzed against the background of the action of a mobilizer of intracellular calcium, ryanodine (0.5 μM), after the loading of terminals by 1.2 mM BAPTA (calcium buffer with rapid dynamics of binding of calcium), and upon the action of ryanodine in the presence of BAPTA. Under the action of ryanodine, the amplitude and quantum content of EPC within the plateau phase increased by 100 to 150% (P < 0.05). Loading with BAPTA evoked sharp decreases in the quantum content of unitary EPCs, the intensity of the initial facilitation, and the level of the EPC plateau in series within the entire range of stimulation frequencies used. Against the background of the action of BAPTA, the facilitatory effect of ryanodine increased; inhibitory effects of BAPTA with respect to the amplitude of unitary EPC and the level of the initial facilitation were completely compensated, whereas the level of EPC at the plateau stage increased to levels exceeding the control values by 50 to 70%. The ability of ryanodine to facilitate the transmitter (acetylcholine) release, which was enhanced in the presence of BAPTA, was completely neutralized by a blocker of L-type calcium channels, verapamil (5 μM). In the absence of BAPTA, verapamil did not influence the effects of ryanodine. We hypothesize that in the presence of BAPTA calcium channels of L type whose activity is resistive to the buffer action of BAPTA are disinhibited. The calcium current through L-type channels, perhaps, is capable of stimulating calcium release from the stores of nerve terminals and, as a consequence, of intensifying the facilitatory effect of ryanodine on the release of acetylcholine. After verapamil-induced blockade of this current, BAPTA demonstrates the ability to prevent the facilitatory effect of ryanodine on the transmitter release.
机译:使用两电极电压钳技术,我们在有节奏地刺激n的情况下,在鼠diaphragm膜的神经肌肉突触连接处记录了终板电流(EPC)。频率为7、20、50、70和100秒的phrenicus?1。在末端装载1.2 mM BAPTA(具有快速结合钙的动力学的钙缓冲液)和作用后,以细胞内钙,ryanodine(0.5μM)的动员剂作用为背景,分析了EPC系列的参数BAPTA存在的情况下,使用ryanodine。在ryanodine的作用下,高原期EPC的振幅和量子含量增加了100%至150%(P <0.05)。在使用的整个刺激频率范围内,BAPTA的加载引起整体EPC的量子含量,初始促进强度以及EPC平稳水平的急剧下降。在BAPTA行动的背景下,ryanodine的促进作用增强了。完全抵消了BAPTA对单一EPC幅度和初始促进水平的抑制作用,而在平稳期EPC的水平增加到超过对照值50%至70%。 ryanodine促进递质(乙酰胆碱)释放的能力(在BAPTA存在下得到增强)被L型钙通道阻滞剂维拉帕米(5μM)完全中和。在没有BAPTA的情况下,维拉帕米不影响ryanodine的作用。我们假设在存在BAPTA的情况下,L型钙通道的活性会受到抑制,而L型的钙通道的活性可抵抗BAPTA的缓冲作用。通过L型通道的钙电流也许能够刺激钙从神经末梢的储库释放,并因此增强了ryanodine对乙酰胆碱释放的促进作用。在维拉帕米诱导的电流阻断后,BAPTA证明了有能力预防ryanodine对变送器释放的促进作用。

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