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无脑大鼠胚胎中抗孕鼠肾抗体的荧光定位及凝集素结合分析

Fluorescence localization of anti-pregnant rat kidney antibody and lectin binding analysis in exencephalic rat embryos.

作者信息

Fujii M, Kurisaka M, Mori K

机构信息

Department of Neurosurgery, Kochi Medical School, Japan.

出版信息

Childs Nerv Syst. 1996 Oct;12(10):595-603. doi: 10.1007/BF00261654.

Abstract

We sought to determine the distribution of anti-pregnant rat kidney serum (ARKS) in fetuses that subsequently developed a form of neural tube defect (NTD). We produced exencephaly in rat embryos by injecting a rabbit anti-pregnant rat kidney serum into the peritoneal cavity of pregnant Wistar rats on day 7 of gestation; 71.1% (27/38) of the rat embryos developed this anomaly. Fluorescence immunohistochemical studies were performed to localize ARKS binding in the embryos. We also investigated the binding of two lectins, concanavalin A (ConA) and wheat germ agglutinin (WGA), to glycoconjugates on neuroepithelium during the process of neurulation in rat embryos injected with normal rabbit serum (NRS) and ARKS. We found for the first time that ARKS directly affected the neural tube during neurulation. Intense fluorescence was observed on the luminal side of the neuroepithelium in the intercellular region and on the basement membrane of the neural tube in embryos on day 9 of gestation (GD9). In GD21 embryos there was much more intense fluorescence in the extracellular matrix and the ependymal lining cells of the ventricles than in controls. The binding of the two lectins on the cell surface of the neuroepithelium during neurulation was different in rat embryos injected with ARKS than in normal embryos injected with NRS. These results support the idea that simple nonclosure and overgrowth constitute the mechanism of NTD. However, the lectinbinding data suggest that dysraphic states may be induced by cell-to-cell adhesive molecular failure.

摘要

我们试图确定抗孕大鼠肾血清(ARKS)在随后发生某种神经管缺陷(NTD)的胎儿中的分布情况。我们通过在妊娠第7天向怀孕的Wistar大鼠腹腔注射兔抗孕大鼠肾血清,在大鼠胚胎中诱导出无脑畸形;71.1%(27/38)的大鼠胚胎出现了这种异常。进行了荧光免疫组织化学研究,以定位ARKS在胚胎中的结合情况。我们还研究了两种凝集素,伴刀豆球蛋白A(ConA)和麦胚凝集素(WGA),在注射正常兔血清(NRS)和ARKS的大鼠胚胎神经胚形成过程中与神经上皮细胞上糖缀合物的结合情况。我们首次发现ARKS在神经胚形成过程中直接影响神经管。在妊娠第9天(GD9)的胚胎中,在神经上皮细胞间区域的管腔侧和神经管的基底膜上观察到强烈的荧光。在GD21胚胎中,与对照组相比,脑室的细胞外基质和室管膜衬里细胞中的荧光要强得多。在神经胚形成过程中,注射ARKS的大鼠胚胎神经上皮细胞表面的两种凝集素结合情况与注射NRS的正常胚胎不同。这些结果支持了简单的未闭合和过度生长构成NTD机制的观点。然而,凝集素结合数据表明,神经管闭合不全状态可能是由细胞间粘附分子功能障碍引起的。

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