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Surface Modification of PLLA Electrospun Nanofiber Materials for Biomedical Applications

机译:PLLA电纺纳米纤维材料对生物医学应用的表面改性

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Abstract Three dimensional nanofiber materials made of poly-L-lactic acid (PLLA) and produced by electrospinning are commonly used in regenerative medicine and as a base for drug delivery systems. Surface modification of such materials allows manipulating their chemical, physical, and biological properties. Previously, our group reported a number of modification strategies for thin PLLA films, based on the “solvent/non-solvent” technique. Most biologically active agents may not be adsorbed on the surface of PLLA. Proposed treatment allows partially dissolving the polymer surface in order to adsorb biologically active molecules or linkers. The aim of this work was to investigate the influence of solvent/non-solvent mixture composition on the morphology and crystal structure of the electrospun PLLA scaffolds and to select the solvent system for further scaffolds modification in order to impart them biological activity. PLLA scaffolds were treated with mixtures of toluene and ethanol in different compositions. By means of scanning electron microscopy, it was shown that solvent/non-solvent treatment had no critical effect on the morphology of the scaffolds. The results of X-ray diffraction analysis revealed that treatment of the scaffolds with investigated solvent systems did not lead to the formation of the additional phases and the size of the polymer crystallites as well. Thus, selected solvent system will be used for modification of the PLLA electrospun nanofiber material for biomedical application.
机译:摘要三维纳米纤维材料由多L-乳酸(PLLA)制成并通过静电纺丝制备,通常用于再生药物和药物递送系统的基础。这些材料的表面改性允许操纵其化学,物理和生物学性质。此前,我们的小组报告了薄PLLA薄膜的许多修改策略,基于“溶剂/非溶剂”技术。大多数生物活性剂可能不吸附在PLLA的表面上。提出的处理允许部分地溶解聚合物表面以吸附生物活性分子或接头。这项工作的目的是探讨溶剂/非溶剂混合物组合物对电纺器PLLA支架的形态和晶体结构的影响,并选择用于进一步支架改性的溶剂系统,以赋予它们的生物活性。用不同组合物用甲苯和乙醇的混合物处理PLLA支架。通过扫描电子显微镜检查,显示溶剂/非溶剂处理对支架的形态没有关键影响。 X射线衍射分析的结果显示,使用所研究的溶剂体系的支架的处理也没有导致形成附加相和尺寸的聚合物微晶的尺寸。因此,所选择的溶剂系统将用于改性PLLA电纺纳米纤维材料的生物医学应用。

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