首页> 美国卫生研究院文献>Tissue Engineering. Part A >Plasma Surface Chemical Treatment of Electrospun Poly(l-Lactide) Microfibrous Scaffolds for Enhanced Cell Adhesion Growth and Infiltration
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Plasma Surface Chemical Treatment of Electrospun Poly(l-Lactide) Microfibrous Scaffolds for Enhanced Cell Adhesion Growth and Infiltration

机译:血浆表面化学处理静电纺丝聚乳酸(l-丙交酯)微纤维支架以增强细胞的粘附生长和浸润

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摘要

Poly(l-lactide) (PLLA) microfibrous scaffolds produced by electrospinning were treated with mild Ar or Ar-NH3/H2 plasmas to enhance cell attachment, growth, and infiltration. Goniometry, atomic force microscopy (AFM), and X-ray photoelectron spectroscopy (XPS) measurements were used to evaluate the modification of the scaffold surface chemistry by plasma treatment. AFM and XPS measurements showed that both plasma treatments increased the hydrophilicity without affecting the integrity of the fibrous structure and the fiber roughness, whereas Ar-NH3/H2 plasma treatment also resulted in surface functionalization with amine groups. Culture studies of bovine aorta endothelial cells and bovine smooth muscle cells on the plasma-treated PLLA scaffolds revealed that both Ar and Ar-NH3/H2 plasma treatments promoted cell spreading during the initial stage of cell attachment and, more importantly, increased the cell growth rate, especially for Ar plasma treatment. In vitro cell infiltration studies showed that both plasma treatments effectively enhanced cell migration into the microfibrous scaffolds. In vivo experiments involving the subcutaneous implantation of plasma-treated PLLA scaffolds under the skin of Sprague-Dawley rats also showed increased cell infiltration. The results of this study indicate that surface treatment of PLLA microfibrous scaffolds with mild Ar or Ar-NH3/H2 plasmas may have important implications in tissue engineering. Further modifications with bioactive factors should improve the functions of the scaffolds for specific applications.
机译:通过电纺丝生产的聚(l-丙交酯)(PLLA)微纤维支架用温和的Ar或Ar-NH3 / H2血浆处理,以增强细胞附着,生长和浸润。测角,原子力显微镜(AFM)和X射线光电子能谱(XPS)测量用于评估等离子体处理对支架表面化学的影响。 AFM和XPS测量表明,两种等离子体处理均增加了亲水性,而不影响纤维结构的完整性和纤维粗糙度,而Ar-NH3 / H2等离子体处理也导致了胺基团的表面官能化。在血浆处理过的PLLA支架上对牛主动脉内皮细胞和牛平滑肌细胞的培养研究表明,Ar和Ar-NH3 / H2血浆处理均可促进细胞附着初期的细胞扩散,更重要的是,可促进细胞生长速率,特别是对于Ar等离子体处理。体外细胞浸润研究表明,两种血浆处理均可有效增强细胞向微纤维支架中的迁移。在Sprague-Dawley大鼠皮肤下皮下植入等离子处理的PLLA支架的体内实验也显示出细胞浸润的增加。这项研究的结果表明,用温和的Ar或Ar-NH3 / H2血浆对PLLA微纤维支架进行表面处理可能对组织工程具有重要意义。对生物活性因子的进一步修饰应改善支架在特定应用中的功能。

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