首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Electrospun chitosan-graft-poly (e{open}-caprolactone)/poly (e{open}-caprolactone) cationic nanofibrous mats as potential scaffolds for skin tissue engineering
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Electrospun chitosan-graft-poly (e{open}-caprolactone)/poly (e{open}-caprolactone) cationic nanofibrous mats as potential scaffolds for skin tissue engineering

机译:静电纺丝壳聚糖接枝聚(e {open}-己内酯)/聚(e {open}-己内酯)阳离子纳米纤维垫作为皮肤组织工程的潜在支架

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摘要

This research is aimed to develop cationic nanofibrous mats with improved cellular adhesion profiles and stability of three-dimensional fibrous structure as potential scaffolds for skin tissue engineering. Firstly, amino-remained chitosan- graft-poly (e{open}-caprolactone) (CS- g-PCL) was synthesized with a facile one-step manner by grafting e{open}-caprolactone oligomers onto the hydroxyl groups of CS via ring-opening polymerization by using methanesulfonic acid as solvent and catalyst. And then, CS- g-PCL/PCL nanofibrous mats were obtained by electrospinning of CS- g-PCL/PCL mixed solution. Scanning electron microscopy (SEM) images showed that the morphologies and diameters of the nanofibers were mainly affected by the weight ratio of CS- g-PCL to PCL. The enrichment of amino groups on the nanofiber surface was confirmed by X-ray photoelectron spectroscopy (XPS). With the increase of CS- g-PCL in CS- g-PCL/PCL nanofiber, the content of amino groups on the nanofiber surface increased, which resulted in the increase of zeta-potential of nanofibers. Studies on cell-scaffold interaction were carried out by culturing mouse fibroblast cells (L929) on CS- g-PCL/PCL nanofibrous mats with various contents of CS-g-PCL by assessing the growth, proliferation and morphologies of cells. The results of MTS assay and SEM observation showed that CS- g-PCL/PCL (2/8) mats with a moderate surface zeta-potential (ζ= 3 mV) were the best in promoting the cell attachment and proliferation. Toluidine blue staining further confirmed that L929 cells grew well and exhibited a normal morphology on the CS- g-PCL/PCL (2/8) mats. These results suggested the potential utilization of CS- g-PCL/PCL (2/8) nanofibrous mats for skin tissue engineering.
机译:这项研究的目的是开发具有改善的细胞粘附特性和三维纤维结构稳定性的阳离子纳米纤维垫,作为皮肤组织工程的潜在支架。首先,通过将e {open}-己内酯低聚物经C接枝到CS的羟基上,以简便的一步法合成了氨基保留的壳聚糖接枝聚(e {open}-己内酯)(CS-g-PCL)。以甲磺酸为溶剂和催化剂进行开环聚合。然后,通过电纺CS-g-PCL / PCL混合溶液获得CS-g-PCL / PCL纳米纤维垫。扫描电子显微镜(SEM)图像显示,纳米纤维的形貌和直径主要受CS-g-PCL与PCL重量比的影响。通过X射线光电子能谱法(XPS)证实了纳米纤维表面上氨基的富集。随着CS-g-PCL / PCL纳米纤维中CS-g-PCL的增加,纳米纤维表面的氨基含量增加,导致纳米纤维的ζ电位增加。通过评估细胞的生长,增殖和形态,通过在具有不同含量的CS-g-PCL的CS-g-PCL / PCL纳米纤维垫上培养小鼠成纤维细胞(L929),进行细胞-支架相互作用的研究。 MTS分析和SEM观察的结果表明,具有适中的表面ζ电位(ζ= 3mV)的CS-g-PCL / PCL(2/8)垫在促进细胞附着和增殖方面是最好的。甲苯胺蓝染色进一步证实L929细胞生长良好,并在CS-g-PCL / PCL(2/8)垫上表现出正常的形态。这些结果表明CS-g-PCL / PCL(2/8)纳米纤维垫在皮肤组织工程中的潜在利用。

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