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Functionalisation of Polysaccharides for the Purposes of Electrospinning: A Case Study Using HPMC and Si-HPMC

机译:出于静电纺丝目的的多糖功能化:使用HPMC和Si-HPMC的案例研究

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摘要

Hydrogels are a suitable scaffold material for a variety of tissue engineering applications. However, these materials have a weak structure and require reinforcement. Integrating electrospun fibers could strengthen material properties. This study created fibers and evaluated the influence of the presence of polar head groups within a polysaccharide backbone following functionalization: silated-hydroxypropyl methylcellulose (Si-HPMC). Electrospinning is a multi-parameter, step by step process that requires optimization of solution and process parameters to understand and control the process. Fibers were created for 2%–3% wt/v solutions in water and ethanol. Viscosities of solutions were correlated with spinnability. Variations on process parameters did not reveal major variation on fiber morphology. Once controlled, the process was used for HPMC/Si-HPMC mixture solutions. Solubilization and dilution of Si-HPMC were made with common solvents for electrospinning. Two forms of polymer conformation were electrospun: silanol ending and silanolate ending. Microstructures and resulting nanofibers were analyzed by scanning electron microscopy (SEM) and Energy Dispersive Analysis (EDX). The results show the feasibility of our strategy for creating nanofibers and the influence of polar head groups on electrospinnability.
机译:水凝胶是适用于多种组织工程应用的支架材料。但是,这些材料的结构较弱,需要增强。集成电纺纤维可以增强材料性能。这项研究创造了纤维,并评估了功能化后多糖主链中极性头基团的存在的影响:硅烷化羟丙基甲基纤维素(Si-HPMC)。电纺丝是一个多参数的分步过程,需要优化溶液和过程参数才能理解和控制过程。纤维是为水和乙醇中2%–3%wt / v的溶液制成的。溶液的粘度与可纺性相关。工艺参数的变化并未揭示纤维形态的主要变化。一旦得到控制,该过程将用于HPMC / Si-HPMC混合溶液。 Si-HPMC的溶解和稀释是用普通的电纺丝溶剂进行的。聚合物构象的两种形式为电纺丝:硅烷醇末端和硅烷醇盐末端。通过扫描电子显微镜(SEM)和能量色散分析(EDX)分析了微结构和所得的纳米纤维。结果表明,我们的纳米纤维制备策略的可行性以及极性头基对静电纺丝性的影响。

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