首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Diversity of voltage-gated calcium currents in large diameter embryonic mouse sensory neurons.
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Diversity of voltage-gated calcium currents in large diameter embryonic mouse sensory neurons.

机译:大直径胚胎小鼠感觉神经元中电压门控钙电流的多样性。

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Voltage-gated Ca2+ currents were investigated in a subpopulation of dorsal root ganglion neurons (large diameter, neurofilament-positive) acutely isolated from 13-day-old mouse embryos and recorded using the whole-cell patch-clamp technique. Low- and high-voltage-activated calcium currents were recorded. These currents could be identified and separated by their distinct (i) threshold of activation, (ii) ability to run-up during the early phase of recording and (iii) decay kinetics using Ba2+ instead of Ca2+ as the charge carrier. Among high-voltage-activated currents, L-, N- and P-type Ca2+ currents were identified by their sensitivity to, respectively, the dihydropyridine agonist Bay K 8644 (5 microM) and antagonist nitrendipine (3 microM), omega-conotoxin GVIA (3 microM) and omega-agatoxin IVA (30 nM). In the combined presence of nitrendipine (3 microM), omega-conotoxin GVIA (3 microM) and omega-agatoxin IVA (30 nM), two additional high-voltage-activated components were detected. One, blocked by 500 nM omega-conotoxin MVIIC and 1 microM omega-agatoxin IVA, had properties similar to those of the Q-type Ca2+ current first reported in cerebellar granule cells. The other, defined by its resistance to saturating concentrations of all the blockers mentioned above applied in combination, resembles the R-type Ca2+ current also described in cerebellar granule cells. In conclusion, embryonic sensory neurons appear to express a large repertoire of voltage-activated Ca2+ currents with distinct pharmacological properties. This diversity suggests a great variety of pathways for Ca2+ signaling which may support different functions during development.
机译:从13天大的小鼠胚胎中急性分离出的背根神经节神经元(大直径,神经丝阳性)亚群中研究了电压门控的Ca2 +电流,并使用全细胞膜片钳技术进行了记录。记录了低压和高压激活的钙电流。这些电流可以通过其独特的(i)激活阈值,(ii)在记录早期阶段上升的能力和(iii)使用Ba2 +代替Ca2 +作为电荷载体的衰减动力学来识别和分离。在高压激活电流中,分别通过对二氢吡啶激动剂Bay K 8644(5 microM)和拮抗剂尼群地平(3 microM),ω-芋螺毒素GVIA的敏感性来识别L,N和P型Ca2 +电流。 (3 microM)和欧米伽-毒素IVA(30 nM)。在尼群地平(3 microM),ω-芋螺毒素GVIA(3 microM)和omega-agatoxin IVA(30 nM)的共同存在下,检测到另外两个高压激活成分。一种被500 nMω-芋螺毒素MVIIC和1 microMω-藻毒素IVA阻断,其性质与小脑颗粒细胞中首次报道的Q型Ca2 +相似。另一个是由其对上述所有阻滞剂的饱和浓度的抵抗力共同定义的,类似于小脑颗粒细胞中也描述的R型Ca2 +电流。总之,胚胎感觉神经元似乎表达具有不同药理特性的大量电压激活的Ca2 +电流。这种多样性提示了Ca2 +信号传导的多种途径,这些途径可能在发育过程中支持不同的功能。

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