首页> 外文OA文献 >Combining an Autologous Peripheral Nervous System 'Bridge' and Matrix Modification by Chondroitinase Allows Robust, Functional Regeneration beyond a Hemisection Lesion of the Adult Rat Spinal Cord
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Combining an Autologous Peripheral Nervous System 'Bridge' and Matrix Modification by Chondroitinase Allows Robust, Functional Regeneration beyond a Hemisection Lesion of the Adult Rat Spinal Cord

机译:通过软骨素酶组合自体外周神经系统“桥梁”和基质改性,允许超出成人大鼠脊髓的半切割损伤的鲁棒,功能再生

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摘要

Chondroitinase-ABC (ChABC) was applied to a cervical level 5 (C5) dorsal quadrant aspiration cavity of the adult rat spinal cord to degrade the local accumulation of inhibitory chondroitin sulfate proteoglycans. The intent was to enhance the extension of regenerated axons from the distal end of a peripheral nerve (PN) graft back into the C5 spinal cord, having bypassed a hemisection lesion at C3. ChABC-treated rats showed (1) gradual improvement in the range of forelimb swing during locomotion, with some animals progressing to the point of raising their forelimb above the nose, (2) an enhanced ability to use the forelimb in a cylinder test, and (3) improvements in balance and weight bearing on a horizontal rope. Transection of the PN graft, which cuts through regenerated axons, greatly diminished these functional improvements. Axonal regrowth from the PN graft correlated well with the behavioral assessments. Thus, many more axons extended for much longer distances into the cord after ChABC treatment and bridge insertion compared with the control groups, in which axons regenerated into the PN graft but growth back into the spinal cord was extremely limited. These results demonstrate, for the first time, that modulation of extracellular matrix components after spinal cord injury promotes significant axonal regeneration beyond the distal end of a PN bridge back into the spinal cord and that regenerating axons can mediate the return of useful function of the affected limb.
机译:将软骨素酶-ABC(CHABC)施加到成年大鼠脊髓的宫颈等级5(C5)背象间抽吸腔中,以降解抑制性软骨素蛋白多糖的局部积累。意图是增强从外周神经(Pn)移植物的远端再生轴突的延伸回到C5脊髓中,在C3绕过半离子病变。 CHABC治疗的大鼠显示(1)在运动过程中的前肢挥杆范围内显示(1)逐渐改善,有些动物进展到在鼻子上方提高其前肢的点,(2)增强了在汽缸试验中使用前肢的能力,以及(3)水平绳索平衡和重量的改善。 PN移植物的横向转移,通过再生的轴身切割,大大减少了这些功能改进。来自PN移植物的轴突再生与行为评估很好。因此,许多轴突延伸到CHABC处理和桥梁插入与对照组相比的绳索中进入帘线的距离更长,其中将轴突再生成PN移植物但生长回到脊髓中非常有限。这些结果首次证明了脊髓损伤后细胞外基质组分的调节促使PN桥梁远端的显着轴突再生回到脊髓中,再生轴突可以介导受影响的有用功能的返回肢。

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