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1Axonotmesis-evoked plantar vasodilatation as a novel assessment of C-fiber afferent function after sciatic nerve injury in rats显示文摘Quantitative assessment of the recovery of nerve function, especially sensory and autonomic nerve function, remains a challenge in the field of nerve regeneration research. We previously found that neural control of vasomotor activity could be potentially harnessed to evaluate nerve function. In the present study, five different models of left sciatic nerve injury in rats were established: nerve crush injury, nerve transection/ suturing, nerve defect/autografting, nerve defect/conduit repair, and nerve defect/non-regeneration. Laser Doppler perfusion imaging was used to analyze blood perfusion of the hind feet. The toe pinch test and walking track analysis were used to assess sensory and motor functions of the rat hind limb, respectively. Transmission electron microscopy was used to observe the density of unmyelinated axons in the injured sciatic nerve. Our results showed that axonotmesis-evoked vasodilatation in the foot 6 months after nerve injury/repair recovered to normal levels in the nerve crush injury group and partially in the other three repair groups;whereas the nerve defect/non-regeneration group exhibited no recovery in vasodilatation. Furthermore, the recovery index of axonotmesis-evoked vasodilatation was positively correlated with toe pinch reflex scores and the density of unmyelinated nerve fibers in the regenerated nerve. As C-fiber afferents are predominantly responsible for dilatation of the superficial vasculature in the glabrous skin in rats, the present findings indicate that axonotmesis-evoked vasodilatation can be used as a novel way to assess C-afferent function recovery after peripheral nerve injury. This study was approved by the Ethics Committee for Laboratory Animals of Nantong University of China (approval No. 20130410-006) on April 10, 2013.Xue-Song Wang Xue Chen Tian-Wen Gu Ya-Xian Wang Da-Guo Mi Wen Hu 2019Neural Regeneration Research2019,14,12:1
2小鼠神经缺损管式修复后长时程功能恢复与再生评价显示文摘目的了解壳聚糖/聚乳酸-乙醇酸共聚体(PLGA)人工神经移植物修复小鼠神经缺损后神经功能长时程恢复水平与再生神经成熟度。方法采用人工神经移植物桥接修复小鼠坐骨神经缺损(n=6),以自体神经修复(n=6)和缺损组(n=6)为对照,术后1年采用热痛阈测定、电生理学、激光多普勒血流检测评定神经功能,采用靶肌湿重比、组织学和电子显微镜等技术综合评定神经重支配和再生神经成熟度。结果人工神经移植物组足底痛觉反应潜伏期、神经源性血管扩张程度、腓肠肌复合肌动作电位(CMAPs)波幅和潜伏期、靶肌湿重比、再生轴突数量等指标与自体神经修复组相近,但与健侧相比CMAPs潜伏期较长,髓鞘较薄,轴突直径分布滞后。结论人工神经移植物修复小鼠神经缺损术后1年感觉及自主神经功能、再生神经数量和靶肌重支配水平与自体神经修复相当,但再生神经纤维成熟度未达正常。糜大国 张燕平 顾天文 赵亚红 胡文 2014解剖学报2014,45,5:0
3Alexa Fluor 488-conjugated cholera toxin subunit B optimally labels neurons 3-7 days after injection into the rat gastrocnemius muscle显示文摘Neural tract tracing is used to study neural pathways and evaluate neuronal regeneration following nerve injuries.However,it is not always clear which tracer should be used to yield optimal results.In this study,we examined the use of Alexa Fluor 488-conjugated cholera toxin subunit B(AF488-CTB).This was injected into the gastrocnemius muscle of rats,and it was found that motor,sensory,and sympathetic neurons were labeled in the spinal ventral horn,dorsal root ganglia,and sympathetic chain,respectively.Similar results were obtained when we injected AF594-CTB into the tibialis anterior muscle.The morphology and number of neurons were evaluated at different time points following the AF488-CTB injection.It was found that labeled motor and sensory neurons could be observed 12 hours post-injection.The intensity was found to increase over time,and the morphology appeared clear and complete 3-7 days post-injection,with clearly distinguishable motor neuron axons and dendrites.However,14 days after the injection,the quality of the images decreased and the neurons appeared blurred and incomplete.Nissl and immunohistochemical staining showed that the AF488-CTB-labeled neurons retained normal neurochemical and morphological features,and the surrounding microglia were also found to be unaltered.Overall,these results imply that the cholera toxin subunit B,whether unconjugated or conjugated with Alexa Fluor,is effective for retrograde tracing in muscular tissues and that it would also be suitable for evaluating the regeneration or degeneration of injured nerves.Jing-Jing Cui Jia Wang Dong-Sheng Xu Shuang Wu Ya-Ting Guo Yu-Xin Su Yi-Han Liu Yu-Qing Wang Xiang-Hong Jing Wan-Zhu Bai 2022Neural Regeneration Research2022,17,10:0
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