Wiersema Anita, Dijk Freark, Dontje Bert, van der Want Johannes J, de Haan Gerald
Department of Cell Biology, Section Stem Cell Biology, University Medical Center Groningen, University of Groningen, Groningen, the Netherlands.
Stem Cell Res. 2007 Nov;1(2):150-4. doi: 10.1016/j.scr.2008.02.001. Epub 2008 Mar 4.
Hematopoietic cells have been demonstrated to survive in many nonhematopoietic tissues after transplantation. Apparent "bone marrow-derived" cerebellar Purkinje cells in fact result from fusion events and it has been suggested that fusion may be a natural physiological phenomenon to rescue dysfunctioning cells. Here, we show that fusion of transplanted bone marrow cells with resident Purkinje cells is age-dependent and is strongly enhanced when Purkinje cells are damaged by high-dose irradiation. In addition, Purkinje heterokaryons occur in increased frequencies in the cerebellum of normal, unperturbed, aged mice compared to young animals. Our data suggest that age- and/or irradiation-induced dysfunctioning of Purkinje cells in the cerebellum is required for cell fusion.
造血细胞在移植后已被证明能在许多非造血组织中存活。明显的“骨髓来源”小脑浦肯野细胞实际上是融合事件的结果,有人提出融合可能是一种挽救功能失调细胞的自然生理现象。在这里,我们表明移植的骨髓细胞与驻留浦肯野细胞的融合是年龄依赖性的,当浦肯野细胞受到高剂量辐射损伤时,这种融合会显著增强。此外,与年轻动物相比,正常、未受干扰的老年小鼠小脑中浦肯野异核体的出现频率增加。我们的数据表明,小脑浦肯野细胞的年龄和/或辐射诱导功能失调是细胞融合所必需的。