通过给药核苷酸加速神经和肌肉再生——电子神经生理学和形态计量学研究。

Acta histochemica. Supplementband Pub Date : 1992-01-01
B Wattig, G Schalow, M Madauss, F Heydenreich, R Warzok, J Cervós-Navarro
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引用次数: 0

摘要

采用形态计量学技术研究了核苷酸对大鼠坐骨神经挤压损伤后髓鞘神经纤维再生的影响。此外,在不同时间进行腓肌和腓骨肌的形态测量研究。右坐骨神经局部挤压损伤后,大鼠每日分别给予单磷酸尿苷(UM) 3.0 mg/kg体、单磷酸胞苷(CMP) 2.5 mg/kg体或UMP + CMP 3.0 + 2.5 mg/kg体的核苷酸。在腓总神经再生20、40和60天后进行观察,并与年龄匹配的粉碎或未手术对照进行比较。每天服用UMP/CMP后40 d,所有II型传入的单纤维传导速度均显著加快。平均纤维面积增加的趋势与髓鞘面积增加有关。II型肌纤维平均直径增大。60 d后,UMP/CMP组单传入纤维传导速度有增加的趋势。在同一组中,自动形态测量显示神经纤维面积、髓鞘面积和轴突面积显著增加。此时,在所有动物组中均发现I型和/或II型肌纤维增加。目前的结果表明,再生神经纤维和再生肌纤维的轴突(神经元)和髓鞘(雪旺细胞)都受到核苷酸给药的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Acceleration of nerve and muscle regeneration by administration of nucleotides--electroneurophysiological and morphometrical investigations.

The effect of nucleotide administration on the regeneration of myelinated nerve fibres following crush injury to the sciatic nerve of the rat was studied using morphometric techniques. In addition morphometrical investigations of peroneal and soleal muscles were performed at different times. After a localized crush lesion of the right sciatic nerve, rats were given nucleotides daily at a dosage of 3.0 mg/kg body wt uridine monophosphate (UM), 2.5 mg/kg body wt cytidine monophosphate (CMP) or 3.0 plus 2.5 mg/kg body wt UMP plus CMP, respectively. Observations were made after 20, 40 and 60 days of common peroneal nerve regeneration for comparison with age-matched crushed or nonoperated controls. Forty days after daily UMP/CMP administration the single fibre conduction velocity of all type II afferents was significantly accelerated. There was a trend towards increased mean fibre area related to increased myelin area. Mean diameter of type II muscle fibres was increased. After 60 days, there was a trend to increase of single afferent fibre conduction velocity in the UMP/CMP group. In the same group automated morphometry revealed a significant increase of nerve fibre area, myelin area and axon area. At this time an increase was found of type I and/or type II muscle fibres in all animal groups. The present results suggest that both axons (neurons) and myelin sheaths (Schwann cells) of regenerating nerve fibres and regenerating muscle fibres are influenced by nucleotide administration.

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