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Shh/Ihh在小鼠胚胎椎间盘形成过程中的表达 被引量:2
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作者 巩婷婷 陈建权 《中国组织工程研究》 CAS 北大核心 2020年第32期5097-5101,共5页
背景:研究表明,Sonic Hedgehog(Shh)在小鼠脊索细胞内有表达,India Hedgehog(Ihh)主要在小鼠胚胎椎体的软骨样细胞以及后期形成的终板中表达。但关于Shh以及Ihh在小鼠胚胎椎间盘形成过程中的表达情况并不清楚。目的:探究Shh和Ihh信号在... 背景:研究表明,Sonic Hedgehog(Shh)在小鼠脊索细胞内有表达,India Hedgehog(Ihh)主要在小鼠胚胎椎体的软骨样细胞以及后期形成的终板中表达。但关于Shh以及Ihh在小鼠胚胎椎间盘形成过程中的表达情况并不清楚。目的:探究Shh和Ihh信号在小鼠胚胎椎间盘形成过程中的表达。方法:将雄性的Shh-CreERT2;R26-mTmG/+小鼠与雌性R26-mTmG/+小鼠进行交配,获取不同时期(E8.5,E11.5,E12.5,E14.5,E16.5,E18.5)的孕鼠,注射10 g/L的他莫昔芬10μL/g。当小鼠胚胎处于P0时,取小鼠胚胎椎间盘组织进行基因型鉴定;同时将雄性的C57BL/6小鼠与雌性的C57BL/6小鼠进行交配,获取不同时期(E11.5,E12.5,E14.5,E16.5,E18.5)的孕鼠,取小鼠胚胎椎间盘组织进行分析。通过免疫荧光法检测Shh信号在小鼠胚胎椎间盘形成过程中的表达;免疫组织化学法检测Ihh信号在小鼠胚胎椎间盘形成过程中的表达。所有涉及动物的相关实验均获得苏州大学动物伦理委员会的批准。结果与结论:①经PCR扩增筛选出基因型为Shh-CreERT2;R26-mTmG/+小鼠胚胎;②免疫荧光染色结果显示,在椎间盘形成过程中,髓核细胞内Shh表达水平逐渐降低;③免疫组织化学染色结果显示,在椎间盘形成过程中,髓核细胞内Ihh表达水平逐渐升高;④结果表明Shh和Ihh在椎间盘形成过程中均发挥调控作用,在一定程度上为研究椎间盘退变的分子机制奠定基础。 展开更多
关键词 椎间盘退变 脊索鞘 髓核 SHH IHH Shh-CreERT2 R26-mTmG/+
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鲟鱼脊索的解剖结构及其教育教学价值
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作者 王智超 程勇 武军元 《生物学通报》 2017年第9期6-7,共2页
通过对鲟鱼脊柱的解剖结构和脊索的组织学探析,解析了鲟鱼脊索的本质并探讨了鲟鱼脊索的教育教学价值。
关键词 鲟鱼 脊索 脊索细胞 脊索鞘
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Influences of olfactory ensheathing cells transplantation on axonal regeneration in spinal cord of adult rats 被引量:5
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作者 沈慧勇 唐勇 +2 位作者 吴燕峰 陈燕涛 程志安 《Chinese Journal of Traumatology》 CAS 2002年第3期136-141,共6页
Objective: To observe whether olfactory ensheathing cells could be used to promote axonal regeneration in a spontaneously nonregenerating system.Methods: After laminectomy at the lower thoracic level, the spinal cords... Objective: To observe whether olfactory ensheathing cells could be used to promote axonal regeneration in a spontaneously nonregenerating system.Methods: After laminectomy at the lower thoracic level, the spinal cords of adult rats were exposed and completely transected at T10. A suspension of ensheathing cells was injected into the lesion site in 12 adult rats, and control D/F 12 ( 1∶1 mixture of DMEM and Hams F 12) was injected in 12 adult rats. Six weeks and ten weeks after cell transplantation, the rats were evaluated by climbing test and motor evoked potentials (MEPs) monitoring. The samples were procured and studied with histologicl and immunohistochemical methods.Results: At the 6th week after cell transplantation, all the rats in both the transplanted and control groups were paraplegic and the MEPs could not be recorded. At the 10th week after cell transplantation, of 7 rats in the control group, 2 rats had muscles contraction of the lower extremities, 2 rats had hips and/or knees active movement; and 5 rats MEPs could be recorded in the hind limbs in the transplanted group (n=7). None of the rats in the control group had functional improvement and no MEPs recorded (n=7). Numerous regenerating axons were observed through the transplantation and continued to regenerate into the denervated host tract. Cell labelling using anti Myelin Basic Protein (MBP) and anti Nerve Growth Factor Receptor (anti NGFR) indicated that the regenerated axons were derived from the appropriate neuronal source and that donor cells migrated into the denervated host tract. But axonal degeneration existed and regenerating axons were not observed within the spinal cords of the adult rats with only D/F 12 injection. Conclusions: The axonal regeneration in the transected adult rat spinal cord is possible after ensheathing cells transplantation. 展开更多
关键词 Spinal cord injuries Axonal regeneration Olfactory ensheathing cells
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