首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Voltage-gated calcium channels are not involved in generation and propagation of spreading depression (SD) in the brainstem of immature rats.
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Voltage-gated calcium channels are not involved in generation and propagation of spreading depression (SD) in the brainstem of immature rats.

机译:电压门控钙通道不参与未成熟大鼠脑干中扩散性抑郁症(SD)的产生和传播。

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Spreading depression (SD) can be elicited in the brainstem of rats younger than 13 days when excitability is enhanced by acetate superfusion [F. Richter, S. Rupprecht, A. Lehmenkuhler, H.-G. Schaible, Spreading depression can be elicited in brain stem in immature but not adult rats, J. Neurophysiol. 90 (2003) 2163--2170]. To investigate whether voltage-gated calcium channels (VGCCs) modify initiation and propagation of SD in this type of tissue, we applied specific blockers to L-, T-, P/Q-, and N-type VGCCs locally or systemically. SD-related d.c. potentials and concomitant increases in extracellular potassium concentration ([K(+)](e)) were unaffected by the L- and T-type VGCC blocker flunarizine that was applied either systemically (up to 2mg/kg body weight) or by superfusion onto the brainstem (40 microM). In addition, local application of the P/Q-type VGCC blocker omega-agatoxin (1 microM) or of the N-type VGCC blocker omega-conotoxin (1 microM) to the brainstem surface did not influence SD. The results indicate that VGCCs do not modify the generation or propagation of SDs in the brainstem of the immature rat. Blockade of N-type VGCCs disturbed the normal breathing rhythm. Application of alpha-amino-3-hydroxy-5-methyl-4-isoxazole propionic acid (AMPA) (250-1000 microM) that elicited SD in the immature cortex, failed to elicit SD in the immature brainstem. In summary, it is likely that K(+) initiates and propagates brainstem SDs.
机译:当醋酸盐灌注增强兴奋性时,可在年龄小于13天的大鼠脑干中诱发传播性抑郁症(SD)。里希特(Richter),S.Rupprecht,A。莱曼库勒(H.G. J. Neurophysiol,未成年大鼠脑干可引起广泛的抑郁情绪,但未成年大鼠。 90(2003)2163--2170]。为了研究电压门控钙通道(VGCC)是否会在此类组织中改变SD的起始和传播,我们对L型,T型,P / Q型和N型VGCC局部或全身应用了特定的阻滞剂。与SD有关的直流电电位和随之而来的细胞外钾浓度([K(+)](e))的增加不受L型和T型VGCC受体阻滞剂氟那利嗪的影响,后者可全身应用(最高2mg / kg体重)或通过超负荷应用脑干(40 microM)。此外,在脑干表面局部应用P / Q型VGCC阻滞剂ω-agatoxin(1 microM)或N型VGCC阻滞剂ω-芋螺毒素(1 microM)不会影响SD。结果表明,VGCC不会改变未成熟大鼠脑干中SD的生成或传播。 N型VGCC的阻滞干扰了正常的呼吸节奏。 α-氨基-3-羟基-5-甲基-4-异恶唑丙酸(AMPA)(250-1000 microM)的应用导致未成熟皮质中的SD,但未引起未成熟脑干中的SD。总之,K(+)可能启动并传播脑干SD。

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