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早期社会隔离会引发成年雄性大鼠皮肤感觉神经的电生理和结构变化。

Early social isolation provokes electrophysiological and structural changes in cutaneous sensory nerves of adult male rats.

作者信息

Segura Bertha, Melo Angel I, Fleming Alison S, Mendoza-Garrido Maria Eugenia, González del Pliego Margarita, Aguirre-Benitez Elsa L, Hernández-Falcón Jesús, Jiménez-Estrada Ismael

机构信息

Department of Biology, FES Iztacala, UNAM. Av. de los Barrios 1 Col. Los Reyes Iztacala, Tlanepantla de Baz, Estado de México, CP 54090, México.

出版信息

Dev Neurobiol. 2014 Dec;74(12):1184-93. doi: 10.1002/dneu.22197. Epub 2014 Jun 17.

Abstract

Sensory and social deprivation from the mother and littermates during early life disturbs the development of the central nervous system, but little is known about its effect on the development of the peripheral nervous system. To assess peripheral effects of early isolation, male rat pups were reared artificially in complete social isolation (AR); reared artificially with two same-age conspecifics (AR-Social); or reared by their mothers and with littermates (MR). As adults, the electrophysiological properties of the sensory sural (SU) nerve were recorded. We found that the amplitude and normalized area (with respect to body weight) of the compound action potential (CAP) response provoked by single electrical pulses of graded intensity in the SU nerves of AR animals were shorter than the CAP recorded in SU nerves from MR and AR-Social animals. The slope of the stimulus-response curve of AR SU nerves was smaller than that of the other nerves. The histological characterization of axons in the SU nerves was made and showed that the myelin thickness of axons in AR SU nerves was significant lower (2-7µm) than that of the axons in the other nerves. Furthermore, the area and axon diameter of SU nerves of both AR and AR-Social animals were significant lower than in MR animals. This is the first report to show that maternal and littermate deprivation by AR disturbs the development of the myelination and electrophysiological properties of axons in the SU nerve; the replacement of social cues prevents most of the effects.

摘要

生命早期与母亲和同窝幼崽的感觉和社交剥夺会干扰中枢神经系统的发育,但关于其对周围神经系统发育的影响却知之甚少。为了评估早期隔离对周围神经系统的影响,将雄性大鼠幼崽人工饲养在完全社会隔离环境中(AR);与两只同龄同种个体一起人工饲养(AR-社交组);或由它们的母亲和同窝幼崽饲养(MR)。成年后,记录了腓肠感觉神经(SU)的电生理特性。我们发现,在AR组动物的SU神经中,由不同强度单电脉冲激发的复合动作电位(CAP)反应的幅度和标准化面积(相对于体重)比在MR组和AR-社交组动物的SU神经中记录的CAP要短。AR组SU神经的刺激-反应曲线斜率小于其他神经。对SU神经中的轴突进行了组织学特征分析,结果显示AR组SU神经中轴突的髓鞘厚度显著更低(2-7μm),低于其他神经中的轴突。此外,AR组和AR-社交组动物的SU神经面积和轴突直径均显著低于MR组动物。这是第一份报告表明,AR造成的母体和同窝幼崽剥夺会干扰SU神经中轴突的髓鞘形成和电生理特性的发育;社交线索的替代可防止大部分影响。

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