首页> 美国卫生研究院文献>The Journal of Neuroscience >Long-Distance Axonal Regeneration in the Transected Adult Rat Spinal Cord Is Promoted by Olfactory Ensheathing Glia Transplants
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Long-Distance Axonal Regeneration in the Transected Adult Rat Spinal Cord Is Promoted by Olfactory Ensheathing Glia Transplants

机译:嗅鞘胶质细胞移植促进成年大鼠脊髓的远距离轴突再生。

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摘要

The lack of axonal regeneration in the injured adult mammalian spinal cord leads to permanent functional impairment. To induce axonal regeneration in the transected adult rat spinal cord, we have used the axonal growth-promoting properties of adult olfactory bulb ensheathing glia (EG). Schwann cell (SC)-filled guidance channels were grafted to bridge both cord stumps, and suspensions of pure (98%) Hoechst-labeled EG were stereotaxically injected into the midline of both stumps, 1 mm from the edges of the channel. In EG-transplanted animals, numerous neurofilament-, GAP-43-, anti-calcitonin gene-related peptide (CGRP)-, and serotonin-immunoreactive fibers traversed the glial scars formed at both cord–graft interfaces. Supraspinal serotonergic axons crossed the transection gap through connective tissue bridges formed on the exterior of the channels, avoiding the channel interior. Strikingly, after crossing the distal glial scar, these fibers elongated in white and periaqueductal gray matter, reaching the farthest distance analyzed (1.5 cm). Tracer-labeled axons present in SC grafts were found to extend across the distal interface and up to 800 μm beyond in the distal cord. Long-distance regeneration (at least 2.5 cm) of injured ascending propriospinal axons was observed in the rostral spinal cord. Transplanted EG migrated longitudinally and laterally from the injection sites, reaching the farthest distance analyzed (1.5 cm). They moved through white matter tracts, gray matter, and glial scars, overcoming the inhibitory nature of the CNS environment, and invaded SC and connective tissue bridges and the dorsal and ventral roots adjacent to the transection site. Transplanted EG and regenerating axons were found in the same locations. Because EG seem to provide injured spinal axons with appropriate factors for long-distance elongation, these cells offer new possibilities for treatment of CNS conditions that require axonal regeneration.
机译:在受伤的成年哺乳动物脊髓中缺乏轴突再生导致永久性功能损伤。为了诱导横断成年大鼠脊髓中的轴突再生,我们使用了成年嗅球鞘神经胶质细胞(EG)的轴突生长促进特性。植入充满施旺细胞(SC)的引导通道以桥接两个脐带残端,并将纯净的(98%)Hoechst标记的EG悬浮液立体定位到两个残端的中线,距离通道边缘1 mm。在EG移植动物中,许多神经丝,GAP-43,抗降钙素基因相关肽(CGRP)和血清素免疫反应性纤维穿过了在两个脐带-移植物界面形成的神经胶质瘢痕。上睑血清素能神经轴突通过形成在通道外部的结缔组织桥穿过横切间隙,避免了通道内部。令人惊讶的是,这些纤维在穿过远端神经胶质瘢痕后,在白色和导水管周围的灰质中伸长,达到了分析的最远距离(1.5厘米)。发现存在于SC移植物中的示踪剂标记的轴突延伸穿过远端界面,并延伸至远端脐带以外800μm。在延髓脊髓中观察到受伤的上升脊突轴突的远距离再生(至少2.5 cm)。移植的EG从注射部位纵向和横向迁移,达到分析的最远距离(1.5厘米)。它们通过白质束,灰质和神经胶质疤痕移动,克服了中枢神经系统环境的抑制性,并侵入了SC和结缔组织桥以及与横断部位相邻的背侧和腹侧根。在相同位置发现了移植的EG和再生轴突。由于EG似乎为受损的脊髓轴突提供了长距离延伸的适当因子,因此这些细胞为治疗需要轴突再生的CNS病情提供了新的可能性。

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