首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >UV-embossed microchannel in biocompatible polymeric film: application to control of cell shape and orientation of muscle cells.
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UV-embossed microchannel in biocompatible polymeric film: application to control of cell shape and orientation of muscle cells.

机译:生物相容性聚合物膜中的紫外线压纹微通道:用于控制肌肉细胞的细胞形状和方向的应用。

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This article shows that ultra violet (UV) micro-embossing can be successfully used for fabricating biocompatible micropatterned films with microchannels separated by high aspect ratio microwalls. Eight series of micropatterns were investigated; the width of the microwall was either 10 or 25 microm and that of the microchannel either 40, 80, 120, or 160 microm. The material investigated was principally polyurethane diacrylate. The UV-embossed micropattern was extracted with methanol, converting the micropatterns from cytotoxic to biocompatible. The typical UV embossing method was modified by using a marginally adhesive polyester substrate, which facilitates demolding but is removable before methanol extraction to avoid fragmentation of the embossed micropatterns. The effect of the micropatterns on A7r5 smooth muscle cells and C2C12 skeletal muscle cells was investigated. The dimensions of both channel and wall have significant effects on the elongation of both muscle cells. In the narrower 40-microm channel, the C2C12 cells merged together to form myofibers. These results indicate that UV-embossed micropatterns may present a useful scaffold for in vitro cell shape and orientation control needed in vascular and muscle tissue engineering.
机译:本文表明,紫外线(UV)微压花技术可成功用于制造生物相容性微图案化薄膜,该薄膜具有由高纵横比微壁分隔的微通道。研究了八个系列的微模式;微壁的宽度为10或25微米,微通道的宽度为40、80、120或160微米。研究的材料主要是聚氨酯二丙烯酸酯。用甲醇提取紫外线压印的微图案,将微图案从细胞毒性转变为生物相容性。典型的UV压花方法是通过使用少量粘合的聚酯基材进行改进的,该方法可促进脱模,但在甲醇提取之前可除去以避免压花的微图案碎裂。研究了微模式对A7r5平滑肌细胞和C2C12骨骼肌细胞的影响。通道和壁的尺寸均对两个肌肉细胞的伸长有显着影响。在狭窄的40微米通道中,C2C12细胞融合在一起形成肌纤维。这些结果表明,UV压印的微图案可能为血管和肌肉组织工程中所需的体外细胞形状和方向控制提供了有用的支架。

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