Laboratory of Neuronal Plasticity and Neurorepair, Institute for Neuroscience of Castile and León and Institute of Biomedical Research of Salamanca, Universidad de Salamanca, Salamanca, Spain.
Cell Transplant. 2012;21(7):1595-602. doi: 10.3727/096368912X638900.
Bone marrow-derived cells have different plastic properties, especially regarding cell fusion, which increases with time and is prompted by tissue injury. Several recessive mutations, including Purkinje Cell Degeneration, affect the number of Purkinje cells in homozygosis; heterozygous young animals have an apparently normal phenotype but they undergo Purkinje cell loss as they age. Our findings demonstrate that heterozygous pcd mice undergo Purkinje cell loss at postnatal day 300, this slow but steadily progressing cell death starting sooner than has been reported previously and without massive reactive gliosis or inflammation. Here, transplantation of bone marrow stem cells was performed to assess the arrival of bone marrow-derived cells in the cerebellum in these heterozygous mice. Our results reveal that a higher number of cell fusion events occurs in heterozygous animals than in the controls, on days 150 and 300 postnatally. In sum, this study indicates that mild cell death promotes the fusion of bone marrow-derived cells with surviving Purkinje neurons. This phenomenon suggests new therapies for long-lasting neurodegenerative disorders.
骨髓来源的细胞具有不同的可塑性,尤其是在细胞融合方面,这一过程随着时间的推移而增加,并受到组织损伤的刺激。包括浦肯野细胞退化在内的几种隐性突变会影响纯合子中浦肯野细胞的数量;杂合子年轻动物的表型似乎正常,但随着年龄的增长,它们会经历浦肯野细胞的丧失。我们的研究结果表明,杂合子 pcd 小鼠在出生后 300 天会经历浦肯野细胞的丧失,这种缓慢但稳定进展的细胞死亡比之前报道的更早开始,而且没有大量的反应性神经胶质增生或炎症。在这里,进行了骨髓干细胞移植,以评估骨髓来源的细胞在这些杂合子小鼠小脑中的到达情况。我们的结果表明,在出生后 150 天和 300 天,杂合子动物中发生的细胞融合事件数量高于对照组。总之,这项研究表明,轻度细胞死亡会促进骨髓来源的细胞与存活的浦肯野神经元融合。这种现象为长期的神经退行性疾病提供了新的治疗方法。