解剖学报 ›› 2022, Vol. 53 ›› Issue (4): 418-423.doi: 10.16098/j.issn.0529-1356.2022.04.003

• 神经生物学 • 上一篇    下一篇

背侧抑制性轴突导向蛋白的敲减对鸡胚后脑内23C10阳性神经纤维投射的影响

王滋怡1 张舒涵2 张子韧2 张文文2 胡亚男2 张三兵3* 苏玉红2*   

  1. 1. 河北医科大学2019级预防专业,石家庄 050017; 2. 河北医科大学人体解剖学教研室,石家庄 050017; 3. 石家庄市第三医院手足外科,石家庄 050000
  • 收稿日期:2021-11-04 修回日期:2022-01-18 出版日期:2022-08-06 发布日期:2022-09-11
  • 通讯作者: 张三兵;苏玉红 E-mail:499874852@qq.com
  • 基金资助:
    河北省自然科学基金面上项目;河北省自然科学基金精准医学联合基金培育项目;河北医科大学省级大学生创新项目

Effect of draxin knockdown on the projection of 23C10-positive neural fibers in the embryonic chick hindbrain

WANG  Zi-yi1  ZHANG  Shu-han2  ZHANG  Zi-ren2  ZHANG  Wen-wen2  HU  Ya-nan2  ZHANG  San-bing3*  SU  Yu-hong2*   

  1. 1.Major in Preventive Medicine of the Class of 2019, Hebei Medical University, Shijiazhuang 050017, China; 2.Department of Human Anatomy, Hebei Medical University, Shijiazhuang 050017, China; 3.Department of Hand and Foot Surgery, the Third Hospital of Shijiazhuang, Shijiazhuang 050000, China
  • Received:2021-11-04 Revised:2022-01-18 Online:2022-08-06 Published:2022-09-11
  • Contact: ZHANG San-bing;SU Yu-hong E-mail:499874852@qq.com

摘要:

目的  探讨敲减鸡胚后脑内背侧抑制性轴突导向蛋白(draxin)的表达对23C10阳性神经纤维投射特性的影响。   方法  以碱性磷酸酶(ALP)融合蛋白与HH21~22阶段鸡胚后脑活组织切片体外孵育为对照组,以draxin-ALP融合蛋白与HH21~22阶段鸡胚后脑活组织切片体外孵育为实验组,每组10例,检测鸡胚后脑内的23C10阳性神经纤维是否具有与draxin直接结合的能力;以鸡胚后脑内空白质粒电穿孔组为对照,以针对draxin表达的小干扰RNA(siRNA)表达载体质粒电穿孔为实验组,每组18例,观察敲减draxin的效果,以及是否引起鸡胚后脑内23C10阳性神经纤维投射特性的改变。   结果  HH21~22阶段鸡胚后脑活组织切片内,大部分draxin阳性信号与23C10阳性神经纤维重叠;应用电穿孔方法导入draxin的siRNA敲减质粒后,draxin相对表达量显著降低(P<0.05);HH25~26阶段的鸡胚后脑内,电穿孔一侧的23C10阳性神经纤维的背侧区域内投射纤维分布分散(P<0.05)。   结论  鸡胚后脑发育过程中,draxin可以与23C10阳性神经纤维直接结合,且其在鸡胚后脑内23C10阳性神经纤维成束投射的形成过程中发挥重要的调控作用。

关键词: 背侧抑制性轴突导向蛋白, 轴突投射, 后脑, 电穿孔, 免疫组织化学, 鸡胚

Abstract:

Objective  To investigate the effects of the downregulation of draxin expression on the projection characteristics of 23C10-positive neural fibers in the chick embryonic hindbrain.    Methods  The vitro incubation of HH stages 21-22 chick embryonic hindbrain biopsy with alkaline phosphatase (ALP)protein was used as control group. The incubation of HH stages 21-22 chick embryonic hindbrain biopsy with draxin-ALP fusion protein was used as experimental group. The number of embryonic hindbrain for each group was 10. To detect whether 23C10-positive neural fibers could directly bind to draxin protein or not;In ovo electroporation using empty vector in the chick embryonic hindbrain was used as control group. In ovo electroporation with small interfering RNA(siRNA) expressing vector for reducing draxin expression in the chick embryonic hindbrain was used as experimental group. The number of embryonic hindbrain for each group was 18. The effect of the down-regulation of draxin expression and the change of projection characteristics of 23C10-positive neural fibers were observed to check whether the down-regulation of draxin expression would affect the distribution of 23C10-positive fibers.   Results   Most portion of draxin protein could overlap with 23C10-positive neural fibers in HH stages 21-22 chick  embryonic hindbrain biopsies;After expression of the siRNA plasmid against draxin by electroporation, the expression level of draxin protein was significantly reduced, and the distribution of 23C10-positive fibers was scattered in the dorsal hindbrain on the electroporated side at HH stages 25-26 of chick embryos(P<0.05).     Conclusion  Draxin protein may directly bind to 23C10-positive fibers in hindbrain, and it plays an important regulatory role in the fasciculation of 23C10-positive fibers during chick embryonic development.

Key words: Draxin, Axonal projection, Hindbrain, Electroporation, Immunohistochemistry, Chick embryo

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