[The effect of nerve tissue growth factor on the structural-functional state of the sympathetic neurons after cutting their axons].

O N Zhuk
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Abstract

Under study was the influence of the nerve growth factor on morpho-functional and cytometrical characteristics of sympathetic neurons after cutting their axons. The work was carried out in albino rats which were subjected to dissection of the external and internal carotid nerves of the cranial cervical ganglion. This operation resulted in death of about 50% of the neurons of the node in question, in 30 and 60% in reduction of the intensity of fluorescence of the neuron body catecholamines within 7 and 14 days. The cause of these changes might be the cessation of entrance of the nerve growth factor from target tissues by means of retrograde transport. After 6-10 exogenous administrations of the latter (10-20 mkg/g of the body weight) 14 days after operation the amount of neurons in the cranial cervical ganglion did not practically differ from that in the group of intact rats. Seven and fourteen days later specific luminescence of the neuron body catecholamines was 24-22% greater than the values found in the operated animals given the isotonic solution of sodium chloride. Parallel stimulation of the formation of a powerful network of collateral branches by injured axons was performed resulting in more considerable (3-fold) increase of the ganglion mass than in the operated animals (2-fold) not treated with a neuro-growth protein. The newly formed fibers had not only an intercellular but also subcapsular arrangement which spoke of higher reparative--regenerative potencies of the neuron.

神经组织生长因子对切断轴突后交感神经元结构功能状态的影响。
研究了神经生长因子对切断交感神经元轴突后交感神经元形态功能和细胞计量特征的影响。这项工作是在白化大鼠身上进行的,这些大鼠被解剖了颅颈神经节的颈外和颈内神经。该手术在7天和14天内导致有关淋巴结约50%的神经元死亡,30%和60%的神经元体儿茶酚胺的荧光强度降低。这些变化的原因可能是神经生长因子停止从靶组织通过逆行运输进入。术后14天外源性给药6-10次(体重的10-20毫克/克)后,颅颈神经节内神经元的数量与未受损伤的大鼠组没有实际差异。7天和14天后,神经元体儿茶酚胺的特异发光比给予等渗氯化钠溶液的手术动物的值高24-22%。损伤的轴突平行刺激形成强大的侧支网络,导致神经节质量比未使用神经生长蛋白的手术动物(2倍)增加更大(3倍)。新形成的纤维不仅具有细胞间排列,而且具有包膜下排列,说明神经元具有较高的修复再生能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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