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只有在施万细胞存在的情况下,视神经轴突才能再生进入坐骨神经同基因移植物中。

Optic axons regenerate into sciatic nerve isografts only in the presence of Schwann cells.

作者信息

Berry M, Rees L, Hall S, Yiu P, Sievers J

机构信息

Anatomy Department, Guy's Hospital Medical School, London, UK.

出版信息

Brain Res Bull. 1988 Feb;20(2):223-31. doi: 10.1016/0361-9230(88)90182-7.

Abstract

Optic axons regenerate into normal but not acellular peripheral nerve (PN) grafts. The first axons penetrate the PN graft before 5 days and grow inside the basal lamina tubes amongst the Schwann cells. By 30 days, 4% of the surviving retinal ganglion cells (RGC) regenerate axons for at least 10 mm into the PN graft. Laminin rich basal lamina tubes persist in the acellular PN transplants but only a few axons penetrate the most proximal parts of the tubes by 5 days and none grow farther into the graft by 30 days. RGC counts demonstrate that 34% of the normal RGC population survive 30 days after anastomosing a normal PN to the transected optic nerve. After anastomosing acellular PN grafts, 25% of RGCs survive compared with 10% after optic nerve section. These findings demonstrate that laminin does not promote regeneration of axons and that Schwann cells play the primary role of offering trophic support and even a substrate for growth. RGC survival is also enhanced by PN grafts even when Schwann cells are absent. This latter result suggests that RGC survival is promoted by a trophic substance released from axons and/or Schwann cells in the PN grafts which survives the thawing/freezing procedure (used to kill the Schwann cells) and is active in the grafts in the immediate post operative period.

摘要

视神经轴突可长入正常的而非无细胞的周围神经(PN)移植物中。最初的轴突在5天之前穿透PN移植物,并在雪旺细胞之间的基膜管内生长。到30天时,4%存活的视网膜神经节细胞(RGC)将轴突长入PN移植物至少10毫米。富含层粘连蛋白的基膜管在无细胞PN移植物中持续存在,但到5天时只有少数轴突穿透管的最近端部分,到30天时没有轴突长入移植物更远的部位。RGC计数表明,将正常PN与横断的视神经吻合后,34%的正常RGC群体在30天后存活。吻合无细胞PN移植物后,25%的RGC存活,而视神经切断后为10%。这些发现表明层粘连蛋白不促进轴突再生,雪旺细胞发挥着提供营养支持甚至生长底物的主要作用。即使没有雪旺细胞,PN移植物也能提高RGC的存活率。后一结果表明,PN移植物中轴突和/或雪旺细胞释放的一种营养物质可促进RGC存活,该物质在解冻/冷冻过程(用于杀死雪旺细胞)后仍存活,并在术后即刻在移植物中发挥作用。

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