等离子体和高能准分子激光激活的聚乳酸蜂窝用于干细胞支持

IF 7.5 Q1 CHEMISTRY, PHYSICAL
P. Slepička , N. Slepičková Kasálková , J. Musílková , L. Bačáková , B. Frýdlová , P. Sajdl , Z. Kolská , E. Rebollar , V. Švorčík
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引用次数: 0

摘要

在这项研究中,我们在全氟基底上用 KrF 激光(波长 248 nm)构建并活化了蜂窝结构。我们选择了生物聚合物聚左旋乳酸(PLLA)作为蜂窝材料,并将其溶解在氯仿/甲醇的混合物中。通过改善浸涂过程中的相分离,制备出等离子体处理过的全氟乙烯基聚丙烯(FEP)基底微图案。随后,用 10 mJ.cm-2 的准分子激光和不同数量的激光脉冲处理聚乳酸微图案。此外,等离子曝光也可作为二次处理。使用原子力显微镜和扫描电子显微镜研究了原始和激光处理过的聚乳酸图案的表面形态。使用能量色散光谱和 X 射线光电子能谱分析了表面化学性质。此外,还利用 MTS 测试评估了脂肪干细胞的代谢活性,并测定了所选样本中的细胞数量。利用荧光显微镜详细研究了蜂窝状生长细胞的形态。总之,我们采用了蜂窝状图案(HCP)激光处理和等离子体处理相结合的方法,构建了脂肪干细胞培养的最佳支架。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

PLLA honeycombs activated by plasma and high-energy excimer laser for stem cell support

PLLA honeycombs activated by plasma and high-energy excimer laser for stem cell support
In this study, we constructed and activated honeycomb structures on perfluorinated substrates subjected to KrF laser treatment (wavelength 248 nm). We selected the biopolymer poly L-lactic acid (PLLA) as the honeycomb material, which was dissolved in a mixture of chloroform/methanol. A micropattern of a plasma-treated perfluorethyleneperopylene (FEP) substrate was prepared by improved phase separation during dip-coating. The PLLA micropattern was subsequently treated with an excimer laser with a laser fluence of 10 mJ.cm-2 and with a different number of laser pulses. Alternatively, plasma exposure can be used as a secondary treatment. The surface morphologies of the pristine and laser-treated PLLA patterns were studied using atomic force and scanning electron microscopy. The surface chemistry was analyzed using energy-dispersive spectroscopy and X-ray photoelectron spectroscopy. In addition, the metabolic activity of adipose stem cells was evaluated using the MTS test, and cell numbers in selected samples were determined. The morphology of cells growing in the honeycomb-like pattern was studied in detail using fluorescence microscopy. In all, we used a combination of honeycomb pattern (HCP) laser treatment and plasma treatment to construct an optimal scaffold for adipose stem cell culture.
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CiteScore
8.10
自引率
1.60%
发文量
128
审稿时长
66 days
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