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Hybrid sol–gel inorganic/gelatin porous fibres via solution blow spinning

机译:混合溶胶 - 凝胶无机/明胶多孔纤维通过溶液吹制纺丝

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摘要

Hybrid sol–gel inorganic–organic fibres offer great potential in tissue engineering and regenerative medicine. A significant challenge is to process them using scalable technologies into useful scaffolds that provide control over fibre diameter, morphology, mechanical properties, ion release, degradation and cell response. In this work we develop formulations that are amenable to processing via solution blow spinning (SBS), a rapid technique using simple equipment to spray nano-/micro-fibres without any electric fields. The technique is extended to produce porous class I and II hybrid fibres using cryogenic SBS, with formulations developed based on tetraethyl orthosilicate/gelatin that are relatively facile to lyophilise. The formulations developed here take advantage of the reversible thermally activated conformation change of gelatin in aqueous solutions from random coil to triple helix to enable viscosity tuning and therefore fibre spinning. Gelatin is functionalised with (3-glycidyloxypropyl)trimethoxysilane to produce class II hybrids which exhibit controllable time- and temperature-dependent viscosity profiles which can be tuned for spinning into highly porous fibres.
机译:溶胶-凝胶无机-有​​机杂化纤维在组织工程和再生医学中具有巨大潜力。一个重大挑战是使用可扩展技术将它们加工成有用的支架,以控制纤维直径,形态,机械性能,离子释放,降解和细胞反应。在这项工作中,我们开发了适合通过溶液吹纺(SBS)处理的配方,这是一种使用简单设备即可在没有任何电场的情况下喷涂纳米/微纤维的快速技术。该技术已扩展为使用低温SBS生产多孔的I和II类杂化纤维,其配方是基于原硅酸四乙酯/明胶开发的,相对容易冻干。这里开发的配方利用了明胶在水溶液中的可逆热激活构象变化,从无规卷曲变为三重螺旋,从而能够进行粘度调节,从而实现纤维纺丝。用(3-缩水甘油基氧基丙基)三甲氧基硅烷官能化明胶以产生II类杂化物,其显示出可控制的随时间和温度变化的粘度曲线,可对其进行调节以纺成高度多孔的纤维。

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