首页> 外文期刊>The Journal of Physiology >Both Ca~2+-permeable and -impermeable AMPA receptors contribute to primary synaptic drive onto rat dorsal horn neurons
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Both Ca~2+-permeable and -impermeable AMPA receptors contribute to primary synaptic drive onto rat dorsal horn neurons

机译:Ca〜2 +渗透性和非渗透性AMPA受体均参与大鼠背角神经元的初级突触驱动

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Blockade of Ca~2+-permeable AMPA receptors in the rat spinal cord diminishes the development of hyperalgesia and allodynia associated with peripheral injury. Cobalt uptake studies reveal that Ca~2+-permeable AMPA receptors are expressed by some substance P receptor-expressing (NKlR+) neurons in lamina I, as well as other neurons throughout the superficial dorsal horn. Selective elimination of NK1R+ neurons in lamina I and lamina III/IV of the dorsal horn also suppresses development of hyperalgesia and allodynia. These observations raise the possibility that Ca~2+-permeable AMPA receptors contribute to excitatory synaptic drive onto the NK1R+ neurons associated with allodynia and hyperalgesia. The first synapse in the pain pathway is the glutamatergic excitatory drive from the primary afferent fibres onto dorsal horn neurons. Therefore, we tested whether Ca~2+-permeable AMPA receptors are located on lamina I and lamina III/IV NK1R+ neurons postsynaptic to primary afferent fibres, using inward rectification and polyamine toxins for receptor identification. We examined three different populations of dorsal horn neurons; lamina I NK1R+ neurons, including projection neurons, and non-NKlR+ (NK1R-) neurons including interneurons, and lamina III/IV NK1R+ neurons, believed to contribute to the low-threshold mechanosensory pathway. The majority of synapses in all three groups had rectification indices less than 1.0 and greater than 0.4, indicating that the AMPA receptors at these synapses are a mixture of Ca~2+-permeable and -impermeable forms. Lamina III/IV NK1R+ neurons and lamina I NK1R- neurons have a significantly higher proportion of postsynaptic Ca~2+-permeable AMPA receptors than lamina I NK1R+ neurons. Thus synaptically positioned Ca~2+-permeable AMPA receptors directly contribute to low-threshold sensory afferent drive into the dorsal horn, and can mediate afferent input onto interneurons such as GABAergic neurons. These receptors also contribute to high-threshold primary afferent drive onto NK1R+ neurons in the superficial dorsal horn, but do so less consistently.
机译:阻断大鼠脊髓中的Ca〜2 +渗透性AMPA受体可减少与周围损伤相关的痛觉过敏和异常性疼痛的发生。钴吸收研究表明,Ca〜2 +渗透性AMPA受体由层I中某些P受体表达(NKlR +)神经元以及整个浅背角的其他神经元表达。选择性消除背角I层和III / IV层NK1R +神经元也抑制痛觉过敏和异常性疼痛的发展。这些发现增加了Ca〜2 +渗透性AMPA受体促进与异常性疼痛和痛觉过敏相关的NK1R +神经元兴奋性突触驱动的可能性。疼痛途径中的第一个突触是谷氨酸能从初级传入纤维到背角神经元的兴奋性驱动。因此,我们使用向内整流和多胺毒素进行受体鉴定,测试了Ca〜2 +渗透性AMPA受体是否位于初生传入纤维突触后的I型和III / IV型NK1R +神经元上。我们检查了三种不同的背角神经元种群。层I NK1R +神经元(包括投射神经元)和非NK1R +(NK1R-)神经元(包括中间神经元)和层III / IV NK1R +神经元被认为有助于低阈值机械感觉通路。在所有三个组中,大多数突触的整流指数均小于1.0且大于0.4,表明这些突触处的AMPA受体是Ca〜2 +渗透性和-I渗透性形式的混合物。层III / IV NK1R +神经元和层I NK1R-神经元具有比层I NK1R +神经元明显更高的突触后Ca〜2 +渗透性AMPA受体比例。因此,突触定位的Ca〜2 +渗透性AMPA受体直接有助于低阈值的感觉传入驱动进入背角,并且可以介导传入输入到诸如GABA能神经元的中间神经元上。这些受体也有助于浅阈背角的NK1R +神经元的高阈值初级传入驱动。

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