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出生后发育期间,大鼠脊髓背角胶状质神经元通过C类传入纤维的突触输入变化。

Alteration in synaptic inputs through C-afferent fibers to substantia gelatinosa neurons of the rat spinal dorsal horn during postnatal development.

作者信息

Nakatsuka T, Ataka T, Kumamoto E, Tamaki T, Yoshimura M

机构信息

Department of Physiology, Saga Medical School, Nabeshima, 849-8501, Saga, Japan.

出版信息

Neuroscience. 2000;99(3):549-56. doi: 10.1016/s0306-4522(00)00224-4.

Abstract

The change in synaptic inputs through primary afferent C- and A-fibers during postnatal development was examined in substantia gelatinosa neurons of a rat spinal cord slice with an attached L5 dorsal root by use of the blind whole-cell patch-clamp technique; the synaptic responses were compared between the slices obtained from immature (postnatal days 21-23) and mature (postnatal days 56-60) male rats. The mono- and/or polysynaptic afferent inputs were monitored by recording glutamatergic excitatory postsynaptic currents and potentials evoked by stimulating C- and A-fibers, the identification of which was based on the values of threshold stimulus intensity and of the conduction velocity of the fibers, determined by intracellular recordings from dorsal root ganglion neurons. Immature substantia gelatinosa neurons received synaptic inputs through Abeta-, Adelta- and C-afferents, with proportions of 51%, 46% and 36%, respectively. In mature substantia gelatinosa neurons, C- and Adelta-afferent inputs were increased in number (to 84% and 86%, respectively), while Abeta-inputs were decreased to 9%. In both immature and mature rats, repetitive stimulation of C-afferents did not elicit any slow responses, which are longer in duration than the monosynaptic excitatory postsynaptic currents, although C-fibers are known to contain not only excitatory amino acids, but also neuropeptides such as substance P, which is thought to be involved in the production of slow responses. These results indicate that both C- and Adelta-afferents innervating substantia gelatinosa neurons are reorganized following maturation, accompanied by a withdrawal or elimination of Abeta-fibers from the substantia gelatinosa, probably due to a competition among the fibers during development. In spite of the developmental increase in C-fiber inputs, mature as well as immature substantia gelatinosa neurons did not display any slow synaptic responses, which appear to be mediated by transmitters other than excitatory amino acids.

摘要

利用盲法全细胞膜片钳技术,在带有L5背根的大鼠脊髓切片的胶状质神经元中,研究了出生后发育过程中通过初级传入C纤维和A纤维的突触输入变化;比较了从未成熟(出生后21 - 23天)和成熟(出生后56 - 60天)雄性大鼠获得的切片之间的突触反应。通过记录刺激C纤维和A纤维诱发的谷氨酸能兴奋性突触后电流和电位来监测单突触和/或多突触传入输入,纤维的识别基于阈值刺激强度值和纤维传导速度,这些值由背根神经节神经元的细胞内记录确定。未成熟的胶状质神经元通过Aβ、Aδ和C传入纤维接受突触输入,比例分别为51%、46%和36%。在成熟的胶状质神经元中,C纤维和Aδ传入输入的数量增加(分别增加到84%和86%),而Aβ传入输入减少到9%。在未成熟和成熟大鼠中,重复刺激C纤维均未引发任何慢反应,慢反应的持续时间比单突触兴奋性突触后电流长,尽管已知C纤维不仅含有兴奋性氨基酸,还含有神经肽,如P物质,而P物质被认为与慢反应的产生有关。这些结果表明,支配胶状质神经元的C纤维和Aδ传入纤维在成熟后都会发生重组,同时伴随着Aβ纤维从胶状质的撤出或消除,这可能是由于发育过程中纤维之间的竞争所致。尽管C纤维输入在发育过程中增加,但成熟和未成熟的胶状质神经元均未表现出任何慢突触反应,慢突触反应似乎由兴奋性氨基酸以外的递质介导。

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