首页> 外文会议>Annual International IEEE-EMBS Special Topic Conference on Microtechnologies in Medicine Biology >Using microfabrication and electrostatic layer-by-layer (LbL) self-assembly technologies to improve the growth and alignment of smooth muscle cells
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Using microfabrication and electrostatic layer-by-layer (LbL) self-assembly technologies to improve the growth and alignment of smooth muscle cells

机译:使用微制造和逐层(LBL)自组装技术来改善平滑肌细胞的生长和对准

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Smooth muscle cells (SMCs) were cultured on polydimethylsiloxane (PDMS) based cell culture substrates. Two types experiments were performed to address the cell behaviors on these substrates. One was culturing smooth muscle cells on bare PDMS flat surfaces and gelatin coated PDMS flat surfaces deposited using electrostatic layer-by-layer self-assembly technology. The other was culturing smooth muscle cells on two microstructured PDMS microchannel substrates and PDMS flat surface substrates. The microchannels ate 5-μm channels (line width = 5 μm, spacing width = 5 μm, depth = 5 μm) and 100-μm channels (line width = 100 μm, spacing width = 100 μm, depth = 50 μm) respectively. All substrates were coated with multilayers (50 nm in thickness) of gelatin using electrostatic layer-by-layer self-assembly technology in order to improve the attachment of the cells. We concluded that surface treatment, such as gelatin coating, is able to help smooth muscle cells attach on PDMS substrates. Accordingly, it will increase the potential growth of cells on the engineered PDMS substrates. Second, smooth muscle cells showed a clear preference of alignment long the channel sidewall on the 100-μm channel substrate as compared to that on the flat surface substrate. Microchannels are able to align the growth of smooth muscle cells, and the ability of controlling the alignment depends on the dimension of the microstructures, as well as the surface treatment for increasing cell attachment. Microfabrication and electrostatic layer-by-layer self-assembly technologies have significant potential for application in the field of tissue engineering.
机译:平滑肌细胞(SMC)对聚二甲基硅氧烷的基于细胞培养基材(PDMS)中培养。两种类型的实验来解决这些基底细胞的行为。一个被培养在裸PDMS平滑肌细胞的平坦表面和明胶包被的PDMS平坦表面利用静电层 - 层自组装技术沉积。其他被培养在两个微结构化PDMS微通道的底物和PDMS平坦表面的基材平滑肌细胞。微通道分别吃5μm的信道(线宽度= 5微米,间距宽度= 5微米,深度= 5微米)和100-μm的信道(线宽度=100μm时,间隔宽度= 100微米,深度= 50微米)。所有基材上涂布使用静电层 - 层自组装技术,以改善细胞的附着明胶的多层(厚度为50nm)。我们的结论是,表面处理,如明胶包衣,能够帮助平滑肌细胞附着在PDMS衬底。因此,它会增加细胞的潜在增长上工程改造的PDMS衬底。第二,相比于平坦表面基板上平滑肌细胞显示出对准的明显偏爱长100μm的通道基板上的通道侧壁。微通道是能够对齐的平滑肌细胞的生长,并控制取向的能力取决于微结构的尺寸,以及所述表面处理用于增加细胞附着。微细加工和静电层 - 层自组装技术具有用于组织工程领域中的应用显著潜力。

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