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层粘连蛋白表位和胶原蛋白在人工杂交基质构建体上对小脑浦肯野神经元发育的协同调节作用。

Synergistic regulation of cerebellar Purkinje neuron development by laminin epitopes and collagen on an artificial hybrid matrix construct.

作者信息

Sur Shantanu, Guler Mustafa O, Webber Matthew J, Pashuck Eugene T, Ito Masao, Stupp Samuel I, Launey Thomas

机构信息

Laboratory for Memory and Learning, RIKEN Brain Science Institute, Wako-shi, 351-0198 Saitama, Japan ; School of Medical Science and Technology, IIT Kharagpur, 721302, India ; The Institute for Bionanotechnology in Medicine (IBNAM), Northwestern University, Chicago, IL 60611, USA.

The Institute for Bionanotechnology in Medicine (IBNAM), Northwestern University, Chicago, IL 60611, USA ; Institute of Materials Science and Nanotechnology, National Nanotechnology Research Center (UNAM), Bilkent University, Ankara, 06800, Turkey.

出版信息

Biomater Sci. 2014 Jun 1;2(6):903-914. doi: 10.1039/C3BM60228A.

Abstract

The extracellular matrix (ECM) creates a dynamic environment around the cells in the developing central nervous system, providing them with the necessary biochemical and biophysical signals. Although the functions of many ECM molecules in neuronal development have been individually studied in detail, the combinatorial effects of multiple ECM components are not well characterized. Here we demonstrate that the expression of collagen and laminin-1 (lam-1) are spatially and temporally correlated during embryonic and post-natal development of the cerebellum. These changes in ECM distribution correspond to specific stages of Purkinje neuron (PC) migration, somatic monolayer formation and polarization. To clarify the respective roles of these ECM molecules on PC development, we cultured cerebellar neurons on a hybrid matrix comprised of collagen and a synthetic peptide amphiphile nanofiber bearing a potent lam-1 derived bioactive IKVAV peptide epitope. By systematically varying the concentration and ratio of collagen and the laminin epitope in the matrix, we could demonstrate a synergistic relationship between these two ECM components in controlling multiple aspects of PC maturation. An optimal ratio of collagen and IKVAV in the matrix was found to promote maximal PC survival and dendrite growth, while dendrite penetration into the matrix was enhanced by a high IKVAV to collagen ratio. In addition, the laminin epitope was found to guide PC axon development. By combining our observations and , we propose a model of PC development where the synergistic effects of collagen and lam-1 play a key role in migration, polarization and morphological maturation of PCs.

摘要

细胞外基质(ECM)在发育中的中枢神经系统的细胞周围创造了一个动态环境,为它们提供必要的生化和生物物理信号。尽管许多ECM分子在神经元发育中的功能已被分别详细研究,但多种ECM成分的组合效应尚未得到充分表征。在这里,我们证明了在小脑的胚胎期和出生后发育过程中,胶原蛋白和层粘连蛋白-1(lam-1)的表达在空间和时间上是相关的。ECM分布的这些变化对应于浦肯野神经元(PC)迁移、体细胞单层形成和极化的特定阶段。为了阐明这些ECM分子在PC发育中的各自作用,我们在由胶原蛋白和带有强效lam-1衍生生物活性IKVAV肽表位的合成肽两亲纳米纤维组成的混合基质上培养小脑神经元。通过系统地改变基质中胶原蛋白和层粘连蛋白表位的浓度和比例,我们可以证明这两种ECM成分在控制PC成熟的多个方面存在协同关系。发现基质中胶原蛋白和IKVAV的最佳比例可促进最大程度的PC存活和树突生长,而高IKVAV与胶原蛋白比例可增强树突向基质中的穿透。此外,发现层粘连蛋白表位可引导PC轴突发育。通过结合我们的观察结果,我们提出了一个PC发育模型,其中胶原蛋白和lam-1的协同作用在PC的迁移、极化和形态成熟中起关键作用。

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