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Surface modification of Polycaprolactone (PCL) microcarrier for performance improvement of human skin fibroblast cell culture

机译:聚己内酯(PCL)微载体的表面改性,用于人体皮肤成纤维细胞培养的性能改善

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Polycaprolactone (PCL) has many advantages for use in biomedical engineering field. In the present work PCL microcarriers of 150-200 μm were fabricated using oil-in-water (o/w) emulsification coupled with solvent evaporation method. The surface charge of PCL microcarrier was then been improved by using ultraviolet/ozone treatment to introduce oxygen functional group. Immobilisation of gelatin onto PCL microspheres using zero-length crosslinker provides a stable protein-support complex, with no diffusional barrier which is ideal for mass processing. The optimum concentration of carboxyl group (COOH) absorbed on the surface was 1495.9 nmol/g and the amount of gelatin immobilized was 1797.3 μg/g on UV/O3 treated microcarriers as compared to the untreated (320 ug/g) microcarriers. The absorption of functional oxygen groups on the surface and the immobilized gelatin was confirmed with Fourier Transformed Infrared spectroscopy and the enhancement of hydrophilicity of the surface was confirmed using water contact angle measurement which decreased (86.93°-49.34°) after UV/O3 treatment and subsequently after immobilisation of gelatin. The attachment and growth kinetics for human skin fibroblast cell (HSFC) showed that adhesion occurred much more rapidly for gelatin immobilised surface as compared to untreated PCL and UWO., PCL microcarrier.
机译:聚己内酯(PCL)具有在生物医学工程领域使用的许多优点。在本工作中,使用与溶剂蒸发法相结合的水 - 水(O / W)乳化,制造150-200μm的PCL微括号。然后通过使用紫外/臭氧处理引入氧官能团,改善了PCL微载体的表面电荷。使用零层交联剂将明胶固定到PCL微球上提供稳定的蛋白质载体复合物,其具有扩散屏障,其是大规模加工的理想。与未处理的(320ug / g)微载体相比,表面吸收的羧基(CoOH)的最佳浓度为1495.9 nmol / g,并且固定的明胶在UV / O3处理的微载体上为1797.3μg/ g。用傅里叶转化的红外光谱证实了表面和固定化明胶上的功能氧的吸收,并使用水接触角测量确认了表面亲水性的增强,其在UV / O3处理后降低(86.93°-49.34°)和随后在固定凝胶蛋白后。与未处理的PCL和UWO相比,人体皮肤成纤维细胞(HSFC)的附着和生长动力学表明,与未处理的PCL和UWO相比,明胶固定的表面迅速发生得更快。,PCL微载体。

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