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通过对细胞外基质蛋白层粘连蛋白的图案化梯度来实现神经细胞的定向排列。

Neural cell alignment by patterning gradients of the extracellular matrix protein laminin.

机构信息

Consiglio Nazionale delle Ricerche (CNR) , Istituto per lo Studio dei Materiali Nanostrutturati (ISMN) , Via P. Gobetti 101, Bologna 40129 , Italy ; Nano4bio S.r.l , Viale G. Fanin 48, Bologna 40127 , Italy.

Consiglio Nazionale delle Ricerche (CNR) , Istituto per lo Studio dei Materiali Nanostrutturati (ISMN) , Via P. Gobetti 101, Bologna 40129 , Italy.

出版信息

Interface Focus. 2014 Feb 6;4(1):20130041. doi: 10.1098/rsfs.2013.0041.

Abstract

Anisotropic orientation and accurate positioning of neural cells is achieved by patterning stripes of the extracellular matrix protein laminin on the surface of polystyrene tissue culture dishes by micromoulding in capillaries (MIMICs). Laminin concentration decreases from the entrance of the channels in contact with the reservoir towards the end. Immunofluorescence analysis of laminin shows a decreasing gradient of concentration along the longitudinal direction of the stripes. The explanation is the superposition of diffusion and convection of the solute, the former dominating at length scales near the entrance (characteristic length around 50 μm), the latter further away (length scale in excess of 900 μm). These length scales are independent of the channel width explored from about 15 to 45 μm. Neural cells are randomly seeded and selectively adhere to the pattern, leaving the unpatterned areas depleted even upon 6 days of incubation. Cell alignment was assessed by the orientation of the long axis of the 4',6-diamidino-2-phenylindole-stained nuclei. Samples on patterned the laminin area exhibit a large orientational order parameter. As control, cells on the unpatterned laminin film exhibit no preferential orientation. This implies that the anisotropy of laminin stripes is an effective chemical stimulus for cell recruiting and alignment.

摘要

通过在毛细管中微成型(MIMICs)在聚苯乙烯组织培养皿表面上对细胞外基质蛋白层粘连蛋白进行条纹图案化,可以实现神经细胞的各向异性取向和精确定位。层粘连蛋白的浓度从与储液器接触的通道入口向末端降低。对层粘连蛋白的免疫荧光分析显示出沿着条纹的纵向浓度的递减梯度。这是由于扩散和溶质对流的叠加所致,前者在入口附近的长度尺度上占主导地位(特征长度约为 50μm),后者则更远(长度尺度超过 900μm)。这些长度尺度与从约 15 到 45μm 探索的通道宽度无关。神经细胞随机接种并选择性地附着于图案,即使孵育 6 天,未图案化的区域也会耗尽。通过 4',6-二脒基-2-苯基吲哚染色核的长轴的取向来评估细胞的取向。在图案化的层粘连蛋白区域上的样品表现出大的取向有序参数。作为对照,在未图案化的层粘连蛋白膜上的细胞没有表现出优先取向。这意味着层粘连蛋白条纹的各向异性是招募和对齐细胞的有效化学刺激。

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