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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Cell-cell coupling occurs in dorsal medullary neurons after minimizing anatomical-coupling artifacts.
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Cell-cell coupling occurs in dorsal medullary neurons after minimizing anatomical-coupling artifacts.

机译:最小化解剖耦合伪影后,在背髓神经元中发生细胞间耦合。

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摘要

Dye (Lucifer Yellow) and tracer (Biocytin) coupling, referred to collectively as anatomical coupling, were identified in 20% of the solitary complex neurons tested in medullary tissue slices (120-350 microm) prepared from rat, postnatal day 1-18, using a modified amphotericin B-perforated patch recording technique. Ten per cent of the neurons sampled in nuclei outside the solitary complex were anatomically coupled. Fifty-eight per cent of anatomically coupled neurons exhibited electrotonic postsynaptic potential-like activity, which had peak-to-peak amplitudes of < or = 7 mV, with the same polarity as action potentials; increased and decreased in frequency during depolarizing and hyperpolarizing current injection; was maintained during high Mg2+-low Ca2+ chemical synaptic blockade; and was measured only in anatomically coupled neurons. The high correlation between anatomical coupling and electrotonic postsynaptic potential-like activity suggests that Lucifer Yellow, Biocytin and ionic current used the same pathways of intercellular communication, which were presumed to be gap junctions. Anatomical coupling was attributed solely to the junctional transfer of Lucifer Yellow and Biocytin since potential sources of non-junctional staining were minimized. Specifically, combining 0.26 mM amphotericin B and 0.15-0.5% Lucifer Yellow produced a hydrophobic, viscous solution that did not leak from the pressurized pipette tip < or = 3 microm outer diameter) submerged in artificial cerebral spinal fluid. Moreover, unintentional contact of the pipette tip with adjacent neurons that resulted in accidental staining, another source of non-junctional staining, wits averted by continuously visualizing the tip prior to tight seal formation with infrared video microscopy, used here for the first time with Hoffman modulation contrast optics. During perforated patch recording which typically lasted for 1-3 h. Lucifer Yellow was confined to the pipette, indicating that the amphotericin B patch was intact. However, once the patchwas intentionally ruptured at the end of recording, the viscous, lipophilic solution entered the neuron resulting in double labeling. Placing a mixture of amphotericin B, Biocytin and Lucifer Yellow directly into the pipette tip did not compromise tight seal formation with an exposed, cleaned soma, and resulted in immediate (<1 min) steady-state perforation at 22-25 degrees C. This adaptation of conventional perforated patch recording was termed "rapid perforated patch recording". The possible functional implication of cell-cell coupling in the dorsal medulla oblongata in central CO2/H+ chemoreception for the cardiorespiratory control systems is discussed in the second paper of this set [Huang et al. (1997) Neuroscience 80, 41-57].
机译:在出生后第1至18天从大鼠制备的髓质组织切片(120-350微米)中测试的20%孤独复合神经元中,发现了染料(路西法黄)和示踪剂(生物胞素)耦合,统称为解剖耦合。使用改良的两性霉素B穿孔膜片记录技术。在孤立的复合体外部的细胞核中采样的神经元的百分之十在解剖上是耦合的。 58%的解剖学上耦合的神经元表现出类似突触后电位的活动,其峰峰幅度<或= 7 mV,且具有与动作电位相同的极性。在去极化和超极化电流注入过程中频率的增加和减少;在高Mg2 +-低Ca2 +化学突触阻断过程中保持稳定;并且仅在解剖上耦合的神经元中进行了测量。解剖耦合与突触后突触电位样活性之间的高度相关性表明,路西法·黄,生物素和离子电流使用相同的细胞间通讯途径,推测是间隙连接。解剖学耦合仅归因于路西法黄和生物半胱氨酸的结合转移,因为非结合染色的潜在来源被最小化。具体而言,将0.26 mM的两性霉素B和0.15-0.5%的荧光黄结合使用,可产生疏水性粘稠溶液,该溶液不会从浸没在人工脑脊髓液中的加压吸液管尖端泄漏(外径小于或等于3微米)。此外,移液管吸头与相邻神经元的无意接触导致意外染色,这是非结膜染色的另一种来源,通过在红外视频显微镜形成紧密密封之前连续观察吸头避免了目光,这是霍夫曼首次在此使用调制对比光学。在穿孔的补丁记录过程中,通常持续1-3小时。路西法·黄被限制在移液器中,表明两性霉素B斑块完好无损。但是,一旦在记录结束时故意使膜片破裂,则粘性的亲脂性溶液进入神经元,从而导致双重标记。将两性霉素B,Biocytin和Lucifer Yellow的混合物直接放入移液器吸头中,不会破坏密封的密封结构,使暴露的,经过清洁的体细胞处于正常状态,并导致在22-25摄氏度下立即(<1分钟)稳态穿孔。常规穿孔补丁记录的改编被称为“快速穿孔补丁记录”。在该组第二篇论文中讨论了在中心CO2 / H +化学感受中长圆形背髓中的细胞-细胞偶联对心肺控制系统的功能暗示[Huang et al.。 (1997)Neuroscience 80,41-57]。

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