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缺乏复合神经节苷脂的突变小鼠舌下神经再生受损:神经营养因子和受体的下调可能是其机制。

Impaired hypoglossal nerve regeneration in mutant mice lacking complex gangliosides: down-regulation of neurotrophic factors and receptors as possible mechanisms.

作者信息

Kittaka Daiji, Itoh Michi-ichirou, Ohmi Yuhsuke, Kondo Yuji, Fukumoto Satoshi, Urano Takeshi, Tajima Orie, Furukawa Keiko, Furukawa Koichi

机构信息

Department of Biochemistry II, Graduate School of Medicine, Nagoya University School of Medicine, Nagoya 466-0065, Japan.

出版信息

Glycobiology. 2008 Jul;18(7):509-16. doi: 10.1093/glycob/cwn032. Epub 2008 May 14.

DOI:10.1093/glycob/cwn032
PMID:18480155
Abstract

Gangliosides, sialic acid-containing glycosphingolipids, have been considered to play roles as neurotrophic factors. Exogenous gangliosides added to the culture medium of neuronal cells or injected in artificially injured sites of nerve tissues actually showed neurotrophic factor-like effects such as neurite extension and alleviation of nerve tissue deterioration. In this study, neuroregeneration in the mutant mice lacking complex gangliosides was examined. To determine whether the nervous system maintains regenerative activity in the long-term absence of complex gangliosides, we analyzed hypoglossal nerve regeneration after axotomy in the mutant mice of GM2/GD2 synthase. These mice exhibited marked impairment of regenerative activity both in the number of surviving neurons and in the number of peroxidase-positive neurons. Moreover, reduced levels of gene expression of neurotrophic factors and their receptors including CNTF, p75 NTR, TrkB, and others in hypoglossal neurons were observed in real-time reverse transcription-polymerase chain reaction combined with laser capture microdissection, suggesting that these molecules are, at least partly, involved in the regeneration of lesioned nerves and that their expression levels are precisely controlled in the presence of intact expression of complex gangliosides.

摘要

神经节苷脂是含唾液酸的糖鞘脂,一直被认为具有神经营养因子的作用。添加到神经元细胞培养基中或注射到神经组织人工损伤部位的外源性神经节苷脂,实际上表现出神经营养因子样的作用,如神经突延伸和减轻神经组织退化。在本研究中,我们检测了缺乏复合神经节苷脂的突变小鼠的神经再生情况。为了确定在长期缺乏复合神经节苷脂的情况下神经系统是否保持再生活性,我们分析了GM2/GD2合酶突变小鼠在轴突切断后舌下神经的再生情况。这些小鼠在存活神经元数量和过氧化物酶阳性神经元数量方面均表现出明显的再生活性受损。此外,通过实时逆转录-聚合酶链反应结合激光捕获显微切割技术,观察到舌下神经元中神经营养因子及其受体(包括CNTF、p75 NTR、TrkB等)的基因表达水平降低,这表明这些分子至少部分参与了损伤神经的再生,并且在复合神经节苷脂完整表达的情况下它们的表达水平受到精确调控。

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