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首页> 外文期刊>Experimental Neurology >Nerve growth factor (NGF) and diabetic neuropathy in the rat: morphological investigations of the sural nerve, dorsal root ganglion, and spinal cord.
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Nerve growth factor (NGF) and diabetic neuropathy in the rat: morphological investigations of the sural nerve, dorsal root ganglion, and spinal cord.

机译:大鼠中的神经生长因子(NGF)和糖尿病性神经病变:腓肠神经,背根神经节和脊髓的形态学研究。

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摘要

A number of functions for nerve growth factor (NGF) have been described over the past years, including its role for neuronal function and regeneration during toxic or metabolic neuropathies. In order to further assess the effects of NGF on the somatosensory system in diabetic neuropathy, the sural nerve, dorsal root ganglia (DRG), and dorsal horn of the spinal cord were investigated by morphological and quantitative methods in rats after 12 weeks of uncontrolled streptozotocin-induced diabetes mellitus. The results from our study suggest a twofold effect of NGF: (1) In sural nerve treatment with NGF (0.1 or 0.5 mg/kg) for 12 weeks was able to reverse distinct diabetes-related alterations in myelinated nerve fiber morphology, such as myelin thickness. These changes occurred in the entire myelinated population of sensory nerves and were not restricted to nociceptive nerve fibers. (2) The NGF effect on neurotransmitters of the sensory, nociceptive system was reflected by increased CGRP and substance P content in the DRG and in the dorsal horn of the spinal cord. No change of trkA receptor immunostaining was seen in DRGs of diabetic rats; however, a reduction of trkA immunoreactivity of DRG neurons was noted after long-term NGF treatment of healthy controls. The data demonstrate that NGF regulates a number of neuronal parameters along peripheral and central parts of the somatosensory pathway in the adult. This neurotrophic support may be essential for inducing functionally significant regenerative mechanisms in diabetic neuropathy. Copyright 1998 Academic Press.
机译:在过去的几年中,已经描述了神经生长因子(NGF)的许多功能,包括其在毒性或代谢性神经病中对神经元功能和再生的作用。为了进一步评估NGF对糖尿病性神经病中体感系统的影响,通过形态学和定量方法研究了12周未控制的链脲佐菌素后大鼠的腓肠神经,脊髓背根神经节和脊髓背角诱发的糖尿病。我们的研究结果表明,NGF具有双重作用:(1)在经腓肠神经处理的NGF(0.1或0.5 mg / kg)治疗12周后,能够逆转与糖尿病相关的髓鞘神经纤维形态的明显改变,例如髓磷脂厚度。这些变化发生在整个感觉神经的有髓神经,并不仅限于伤害性神经纤维。 (2)DRG和脊髓背角中CGRP和P物质含量的增加反映了NGF对感觉,伤害感受系统神经递质的作用。糖尿病大鼠的DRG中未见trkA受体免疫染色的改变;然而,在健康对照组长期NGF治疗后,DRG神经元的trkA免疫反应性降低。数据表明,NGF调节成年人体感通路周围和中央部分的许多神经元参数。这种神经营养支持对于诱导糖尿病性神经病中功能上重要的再生机制可能是必不可少的。版权所有1998学术出版社。

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