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神经组织与间质组织共培养以研究在鼠胚肢发育过程中周围神经的模式形成。

Neural tissue co-culture with mesenchyme to investigate patterningof peripheral nerve during murine embryonic limb development.

机构信息

Department of Biology, East Carolina University, 27858, Greenville, NC, USA.

出版信息

Cytotechnology. 2004 Oct;46(2-3):173-82. doi: 10.1007/s10616-005-3099-2. Epub 2005 Nov 30.

Abstract

Lateral plate mesoderm is native to the developing limb while other cells such as neurons extend migratory axonal processes from the neural tube. Questions regarding how axons migrate to their proper location in the developing limb remain unanswered. Extracellular matrix molecules expressed in developing limb cartilages, such as the versican proteoglycan, may function as inhibitory cues to nerve migration, thus facilitating its proper patterning. In the present study, a method is described for co-culture of neural tissue with high density micromass preparations of mouse limb mesenchyme in order to investigate neurite patterning during limb chondrogenesis in vitro. Comparison of hdf (heart defect) mouse limb mesenchyme, which bears an insertional mutation in the versican proteoglycan core protein, with wild type demonstrated that the described technique provides a useful method for transgenic analysis in studies of chondrogenic regulation of neurite patterning. Differentiating wild type limb mesenchyme expressed cartilage characteristic Type II collagen and versican at 1 day and exhibited numerous well defined cartilage foci by 3 days. Wild type neurites extended into central regions of host cultures between 3 and 6 days and consistently avoided versican positive chondrogenic aggregates. Wild type neural tubes cultured with hdf limb mesenchyme, which does not undergo cartilage differentiation in a wild type pattern, showed that axons exhibited no avoidance characteristics within the host culture. Results suggest that differentiating limb cartilages may limit migration of axons thus aiding in the ultimate patterning of peripheral nerve in the developing limb.

摘要

侧板中胚层起源于正在发育的肢体,而其他细胞,如神经元,则从神经管延伸出迁移的轴突过程。关于轴突如何迁移到发育肢体的适当位置的问题仍然没有答案。在发育中的肢体软骨中表达的细胞外基质分子,如 versican 蛋白聚糖,可能作为神经迁移的抑制性线索,从而促进其适当的模式形成。在本研究中,描述了一种将神经组织与高密度微团制备的小鼠肢体间充质共培养的方法,以便在体外研究肢体软骨发生过程中的轴突模式形成。与野生型相比,携带 versican 蛋白聚糖核心蛋白插入突变的 hdf(心脏缺陷)小鼠肢体间充质的比较表明,所述技术为转基因分析提供了一种有用的方法,用于研究软骨对轴突模式形成的调控。分化的野生型肢体间充质在第 1 天表达软骨特征性的 II 型胶原和 versican,并在第 3 天表现出许多明确的软骨焦点。野生型轴突在第 3 天至第 6 天之间延伸到宿主培养物的中心区域,并且始终避免 versican 阳性的软骨聚集物。与 hdf 肢体间充质共培养的野生型神经管,其在野生型模式下不会进行软骨分化,表明轴突在宿主培养物中没有表现出回避特征。结果表明,分化的肢体软骨可能限制轴突的迁移,从而有助于发育中的肢体中周围神经的最终模式形成。

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