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表达钙通透性AMPA受体的神经元在脊髓背角浅层的分布。

The distribution of neurons expressing calcium-permeable AMPA receptors in the superficial laminae of the spinal cord dorsal horn.

作者信息

Engelman H S, Allen T B, MacDermott A B

机构信息

Department of Physiology and Cellular Biophysics and the Center for Neurobiology and Behavior, Columbia University, New York, New York 10032, USA.

出版信息

J Neurosci. 1999 Mar 15;19(6):2081-9. doi: 10.1523/JNEUROSCI.19-06-02081.1999.

Abstract

The superficial dorsal horn is a major site of termination of nociceptive primary afferents. Fast excitatory synaptic transmission in this region is mediated mainly by release of glutamate onto postsynaptic AMPA and NMDA receptors. NMDA receptors are known to be Ca2+-permeable and to provide synaptically localized Ca2+ signals that mediate short-term and long-term changes in synaptic strength. Less well known is a subpopulation of AMPA receptors that is Ca2+-permeable and has been shown to be synaptically localized on dorsal horn neurons in culture (Gu et al., 1996) and expressed by dorsal horn neurons in situ (Nagy et al., 1994; Engelman et al., 1997). We used kainate-induced cobalt uptake as a functional marker of neurons expressing Ca2+-permeable AMPA receptors and combined this with markers of nociceptive primary afferents in the postnatal rat dorsal horn. We have shown that cobalt-positive neurons are located in lamina I and outer lamina II, a region strongly innervated by nociceptors. These cobalt-positive neurons colocalize with afferents labeled by LD2, and with the most dorsal region of capsaicin-sensitive and IB4- and LA4-positive afferents. In contrast, inner lamina II has a sparser distribution of cobalt-positive neurons. Some lamina I neurons expressing the NK1 receptor, the receptor for substance P, are also cobalt positive. These neurons are likely to be projection neurons in the nociceptive pathway. On the basis of all of these observations, we propose that Ca2+-permeable AMPA receptors are localized to mediate transmission of nociceptive information.

摘要

浅表背角是伤害性初级传入纤维的主要终止部位。该区域的快速兴奋性突触传递主要由谷氨酸释放到突触后AMPA和NMDA受体上介导。已知NMDA受体可通透Ca2+,并提供突触局部的Ca2+信号,介导突触强度的短期和长期变化。鲜为人知的是,有一类AMPA受体亚群可通透Ca2+,已证明其在培养的背角神经元上定位于突触(Gu等人,1996年),并在背角神经元原位表达(Nagy等人,1994年;Engelman等人,1997年)。我们使用海人酸诱导的钴摄取作为表达可通透Ca2+的AMPA受体的神经元的功能标记,并将其与新生大鼠背角中伤害性初级传入纤维的标记相结合。我们已经表明,钴阳性神经元位于I层和II层外侧,这是一个受伤害感受器强烈支配的区域。这些钴阳性神经元与LD2标记的传入纤维以及辣椒素敏感、IB4和LA4阳性传入纤维的最背侧区域共定位。相比之下,II层内侧钴阳性神经元的分布较稀疏。一些表达NK1受体(P物质的受体)的I层神经元也是钴阳性。这些神经元可能是伤害性通路中的投射神经元。基于所有这些观察结果,我们提出可通透Ca2+的AMPA受体定位于介导伤害性信息的传递。

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