Morphological analysis of embryonic cerebellar grafts in SCA2 mice

Neurosci Lett. 2014 Jan 13:558:154-8. doi: 10.1016/j.neulet.2013.11.020. Epub 2013 Nov 21.

Abstract

SCA2 transgenic mice are thought to be a useful model of human spinocerebellar ataxia type 2. There is no effective therapy for cerebellar degenerative disorders, therefore neurotransplantation could offer hope. The aim of this work was to assess the survival and morphology of embryonic cerebellar grafts transplanted into the cerebellum of adult SCA2 mice. Four month-old homozygous SCA2 and negative control mice were treated with bilateral intracerebellar injections of an enhanced green fluorescent protein-positive embryonic cerebellar cell suspension. Graft survival and morphology were examined three months later. Graft-derived Purkinje cells and the presence of astrocytes in the graft were detected immunohistochemically. Nissl and hematoxylin-eosin techniques were used to visualize the histological structure of the graft and surrounding host tissue. Grafts survived in all experimental mice; no differences in graft structure, between SCA2 homozygous and negative mice, were found. The grafts contained numerous Purkinje cells but long distance graft-to-host axonal connections to the deep cerebellar nuclei were rarely seen. Relatively few astrocytes were found in the center of the graft. No signs of inflammation or tissue destruction were seen in the area around the grafts. Despite good graft survival and the presence of graft-derived Purkinje cells, the structure of the graft did not seem to promise any significant specific functional effects. We have shown that the graft is available for long-term experiments. Nevertheless, it would be beneficial to search for ways of enhancement of connections between the graft and host.

Keywords: ATXN2(Q127); Cerebellar degeneration; DNA; Deoxyribonucleic acid; EGFP; GAFP; Neurotransplantation; PC; PCR; Purkinje cell; Purkinje cell degeneration; Purkinje cells; SCA; ataxin 2 with 127 glutamine repeats; enhanced green fluorescent protein; glial fibrillary acidic protein; pcd; polymerase chain reaction; spinocerebellar ataxia.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Cerebellum / pathology*
  • Cerebellum / transplantation*
  • Female
  • Fetal Tissue Transplantation*
  • Graft Survival
  • Male
  • Mice, Transgenic
  • Sex Factors
  • Spinocerebellar Ataxias / therapy