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Biocompatible, Biodegradable and Porous Liquid Crystal Elastomer Scaffolds for Spatial Cell Cultures

机译:用于空间细胞培养的生物相容性,可生物降解和多孔液晶弹性体支架

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Here we report on the modular synthesis and characterization of biodegradable, controlled porous, liquid crystal elastomers (LCE) and their use as three-dimensional cell culture scaffolds. The elastomers were prepared by cross-linking of star block-co-polymers with pendant cholesterol units resulting in the formation of smectic-A LCEs as determined by polarized optical microscopy, DSC, and X-ray diffraction. Scanning electron microscopy revealed the porosity of the as-prepared biocompatible LCEs, making them suitable as 3D cell culture scaffolds. Biodegradability studies in physiological buffers at varying pH show that these scaffolds are intact for about 11 weeks after which degradation sets in at an exponential rate. Initial results from cell culture studies indicate that these smectic LCEs are compatible with growth, survival, and expansion of cultured neuroblastomas and myoblasts when grown on the LCEs for extended time periods (about a month). These preliminary cell studies focused on characterizing the elastomer-based scaffolds' biocompatibility and the successful 3D incorporation as well as growth of cells in 60 to 150-mm thick elastomer sheets.
机译:在这里,我们报告有关可生物降解,可控制的多孔液晶弹性体(LCE)的模块化合成和表征及其作为三维细胞培养支架的用途。弹性体是通过星形嵌段共聚物与侧链胆固醇单元交联而制备的,从而导致形成近晶A LCE,这是通过偏振光学显微镜,DSC和X射线衍射确定的。扫描电子显微镜显示所制备的生物相容性LCE的孔隙度,使其适合用作3D细胞培养支架。在不同pH值的生理缓冲液中进行的生物降解性研究表明,这些支架完整存在约11周,之后降解速度呈指数增长。细胞培养研究的初步结果表明,这些近晶LCE在LCE上生长较长时间(约一个月)时,与培养的神经母细胞瘤和成肌细胞的生长,存活和扩展是相容的。这些初步的细胞研究集中于表征基于弹性体的支架的生物相容性以及成功的3D掺入以及60至150毫米厚的弹性体片材中细胞的生长。

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