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聚唾液酸对角膜感觉神经支配的影响。

Effects of polysialic acid on sensory innervation of the cornea.

作者信息

Mao Xiuli, Zhang Yuntao, Schwend Tyler, Conrad Gary W

机构信息

Division of Biology, Ackert Hall, Kansas State University, Manhattan, KS 66506, USA.

Division of Biology, Ackert Hall, Kansas State University, Manhattan, KS 66506, USA.

出版信息

Dev Biol. 2015 Feb 15;398(2):193-205. doi: 10.1016/j.ydbio.2014.11.020. Epub 2014 Dec 3.

Abstract

Sensory trigeminal growth cones innervate the cornea in a coordinated fashion during embryonic development. Polysialic acid (polySia) is known for its important roles during nerve development and regeneration. The purpose of this work is to determine whether polySia, present in developing eyefronts and on the surface of sensory nerves, may provide guidance cues to nerves during corneal innervation. Expression and localization of polySia in embryonic day (E)5-14 chick eyefronts and E9 trigeminal ganglia were identified using Western blotting and immunostaining. Effects of polySia removal on trigeminal nerve growth behavior were determined in vivo, using exogenous endoneuraminidase (endoN) treatments to remove polySia substrates during chick cornea development, and in vitro, using neuronal explant cultures. PolySia substrates, made by the physical adsorption of colominic acid to a surface coated with poly-d-lysine (PDL), were used as a model to investigate functions of the polySia expressed in axonal environments. PolySia was localized within developing eyefronts and on trigeminal sensory nerves. Distributions of PolySia in corneas and pericorneal regions are developmentally regulated. PolySia removal caused defasciculation of the limbal nerve trunk in vivo from E7 to E10. Removal of polySia on trigeminal neurites inhibited neurite outgrowth and caused axon defasciculation, but did not affect Neural Cell Adhesion Molecule (NCAM) expression or Schwann cell migration in vitro. PolySia substrates in vitro inhibited outgrowth of trigeminal neurites and promoted their fasciculation. In conclusion, polySia is localized on corneal nerves and in their targeting environment during early developing stages of chick embryos. PolySias promote fasciculation of trigeminal axons in vivo and in vitro, whereas, in contrast, their removal promotes defasciculation.

摘要

在胚胎发育过程中,感觉三叉神经生长锥以协调的方式支配角膜。聚唾液酸(polySia)因其在神经发育和再生过程中的重要作用而闻名。这项工作的目的是确定在发育中的眼前部和感觉神经表面存在的聚唾液酸是否可能在角膜神经支配过程中为神经提供导向线索。使用蛋白质免疫印迹法和免疫染色法鉴定了聚唾液酸在胚胎期(E)5 - 14天鸡眼前部和E9三叉神经节中的表达和定位。在体内,通过在鸡角膜发育过程中使用外源性神经氨酸酶(endoN)处理去除聚唾液酸底物,以及在体外,使用神经元外植体培养,确定了聚唾液酸去除对三叉神经生长行为的影响。通过将共聚唾液酸物理吸附到涂有聚 - d - 赖氨酸(PDL)的表面制成的聚唾液酸底物,被用作研究轴突环境中表达的聚唾液酸功能的模型。聚唾液酸定位于发育中的眼前部和三叉神经感觉神经上。聚唾液酸在角膜和角膜周围区域的分布受发育调控。在体内,从E7到E10,聚唾液酸的去除导致角膜缘神经干的神经纤维分散。去除三叉神经突起上的聚唾液酸会抑制神经突生长并导致轴突分散,但在体外不影响神经细胞黏附分子(NCAM)的表达或雪旺细胞迁移。体外聚唾液酸底物抑制三叉神经突生长并促进其成束。总之,在鸡胚胎早期发育阶段,聚唾液酸定位于角膜神经及其靶向环境中。聚唾液酸在体内和体外促进三叉神经轴突成束,而相反,去除它们则促进神经纤维分散。

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