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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >A method to replicate the microstructure of heart tissue in vitro using DTMRI-based cell micropatterning.
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A method to replicate the microstructure of heart tissue in vitro using DTMRI-based cell micropatterning.

机译:一种使用基于DTMRI的细胞微模式在体外复制心脏组织的微观结构的方法。

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A novel cell culture methodology is described in which diffusion tensor magnetic resonance imaging (DTMRI) and cell micropatterning are combined to fabricate cell monolayers that replicate realistic cross-sectional tissue structure. As a proof-of-principle, neonatal rat ventricular myocyte (NRVM) monolayers were cultured to replicate the tissue microstructure of murine ventricular cross-sections. Specifically, DTMRI-measured in-plane cardiac fiber directions were converted into soft-lithography photomasks. Silicone stamps fabricated from the photomasks deposit fibronectin patterns to guide local cellular alignment. Fibronectin patterns consisted of a matrix of 190 microm(2) subregions, each comprised of parallel lines 11-20 microm-wide, spaced 2-8.5 microm apart, and angled to match local DTMRI-measured fiber directions. Within 6 days of culture, NRVMs established confluent, electrically coupled monolayers, and for 18 microm-wide, 5 microm-spaced lines, directions of cell alignment in subregions microscopically replicated DTMRI-measurements with a local error of 7.2 +/- 4.1 degrees . By adjusting fibronectin line widths and spacings, cell elongation, gap junctional membrane distribution, and local cellular disarray were altered without changing the dominant directions of cell alignment in individual subregions. Changes in the anisotropy of electrical propagation were assessed by optically mapping membrane potentials. This novel methodology is expected to enable systematic studies of intramural structure-function relationships in both healthy and structurally remodeled hearts.
机译:描述了一种新颖的细胞培养方法,其中将扩散张量磁共振成像(DTMRI)和细胞微图案化相结合以制造可复制实际横截面组织结构的细胞单层。作为原理的证明,培养新生大鼠心室肌细胞(NRVM)单层,以复制鼠心室横截面的组织微观结构。具体而言,将DTMRI测量的面内心脏纤维方向转换为软光刻光掩模。由光掩模制成的硅树脂印模沉积纤连蛋白图案以引导局部细胞排列。纤连蛋白模式由190 microm(2)子区域的矩阵组成,每个子区域由11-20微米宽的平行线,2-8.5微米隔开的间隔,并成一定角度以匹配局部DTMRI测量的纤维方向。在培养的6天之内,NRVM建立了汇合的电耦合单层,对于18微米宽,5微米间隔的线,亚区域中细胞排列的方向用显微镜复制了DTMRI测量,局部误差为7.2 +/- 4.1度。通过调整纤连蛋白的线宽和间距,可以改变细胞伸长率,间隙连接膜分布和局部细胞紊乱,而不会改变各个子区域中细胞排列的主要方向。通过光学映射膜电位来评估电传播各向异性的变化。期望这种新颖的方法能够对健康和结构重塑的心脏的壁内结构-功能关系进行系统的研究。

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