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非神经元细胞并非C57BL/6J小鼠轴突再生能力低下的限制因素。

Non-neuronal cells are not the limiting factor for the low axonal regeneration in C57BL/6J mice.

作者信息

Oliveira A L, Langone F

机构信息

Departamento de Anatomia, Universidade Estadual de Campinas, Campinas, SP, Brasil.

出版信息

Braz J Med Biol Res. 2000 Dec;33(12):1467-75. doi: 10.1590/s0100-879x2000001200011.

Abstract

Peripheral axonal regeneration was investigated in adult male mice of the C57BL/6J (C), BALB/cJ (B) and A/J (A) strains and in their F1 descendants using a predegenerated nerve transplantation model. Four types of transplants were performed: 1) isotransplants between animals of the C, B and A strains; 2) donors of the C strain and recipients of the C x B and C x A breeding; 3) donors of the B strain and recipients of the C x B breeding, and 4) donors of the A strain and recipients of the C x A breeding. Donors had the left sciatic nerve transected and two weeks later a segment of the distal stump was transplanted into the recipient. Four weeks after transplantation the regenerated nerves were used to determine the total number of regenerated myelinated fibers (TMF), diameter of myelinated fibers (FD) and myelin thickness (MT). The highest TMF values were obtained in the groups where C57BL/6J mice were the donors (C to F1 (C x B) = 4658 +/- 304; C to F1 (C x A) = 3899 +/- 198). Also, A/J grafts led to a significantly higher TMF (A to F1 (C x A) = 3933 +/- 565). Additionally, isotransplant experiments showed that when the nerve is previously degenerated, C57BL/6J mice display the largest number of myelinated fibers (C to C = 3136 +/- 287; B to B = 2759 +/- 170, and A to A = 2835 +/- 239). We also observed that when C57BL/6J was the graft donor, FD was the highest and MT did not differ significantly when compared with the other groups. These morphometric results reinforce the idea that Schwann cells and the nerve environment of C57BL/6J provide enough support to the regenerative process. In this respect, the present results support the hypothesis that the non-neuronal cells, mainly Schwann cells, present in the sciatic nerve of C57BL/6J mice are not the main limiting factor responsible for low axonal regeneration.

摘要

利用预先变性的神经移植模型,在C57BL/6J(C)、BALB/cJ(B)和A/J(A)品系的成年雄性小鼠及其F1代后代中研究外周轴突再生。进行了四种类型的移植:1)C、B和A品系动物之间的同基因移植;2)C品系的供体以及C×B和C×A杂交后代的受体;3)B品系的供体以及C×B杂交后代的受体,以及4)A品系的供体以及C×A杂交后代的受体。供体的左侧坐骨神经被切断,两周后将一段远端残端移植到受体中。移植四周后,使用再生神经来确定再生有髓纤维的总数(TMF)、有髓纤维直径(FD)和髓鞘厚度(MT)。在以C57BL/6J小鼠作为供体的组中获得了最高的TMF值(C到F1(C×B)=4658±304;C到F1(C×A)=3899±198)。此外,A/J移植导致TMF显著更高(A到F1(C×A)=3933±565)。另外,同基因移植实验表明,当神经预先变性时,C57BL/6J小鼠显示出最多的有髓纤维(C到C=3136±287;B到B=2759±170,以及A到A=2835±239)。我们还观察到,当C57BL/6J作为移植供体时,FD最高,与其他组相比MT没有显著差异。这些形态学结果强化了这样一种观点,即C57BL/6J的雪旺细胞和神经环境为再生过程提供了足够的支持。在这方面,目前的结果支持这样一种假设,即C57BL/6J小鼠坐骨神经中存在的非神经元细胞,主要是雪旺细胞,不是导致轴突再生率低的主要限制因素。

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