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Electrospun polyurethane-core and gelatin-shell coaxial fibre coatings for miniature implantable biosensors

机译:用于微型植入式生物传感器的静电纺聚氨酯芯和明胶壳同轴纤维涂层

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摘要

The aim of this study was to introduce bioactivity to the electrospun coating for implantable glucose biosensors. Coaxial fibre membranes having polyurethane as the core and gelatin as the shell were produced using a range of polyurethane concentrations (2, 4, 6 and 8% wt/v) while keeping gelatin concentration (10% wt/v) constant in 2,2,2-trifluoroethanol. The gelatin shell was stabilized using glutaraldehyde vapour. The formation of core–shell structure was confirmed using transmission/scanning electron microscopy and FTIR. The coaxial fibre membranes showed uniaxial tensile properties intermediate to that of the pure polyurethane and the gelatin fibre membranes. The gelatin shell increased hydrophilicity and glucose transport flux across the coaxial fibre membranes. The coaxial fibre membranes having small fibre diameter (541 nm) and a thick gelatin shell (52%) did not affect the sensor sensitivity, but decreased sensor’s linearity in the long run. In contrast, thicker coaxial fibre membranes(1133 nm) having a thin gelatin shell (34%) maintained both sensitivity and linearity for the 84 days of the study period. To conclude, polyurethane-gelatin coaxial fibre membranes, due to their faster permeability to glucose, tailorable mechanical properties and bioactivity, are potential candidates for coatings to favourably modify the host responses to extend the reliable in vivo lifetime of implantable glucose biosensors.
机译:这项研究的目的是将生物活性引入用于植入式葡萄糖生物传感器的静电纺丝涂层。使用一定范围的聚氨酯浓度(2%,4%,6%和8%wt / v),同时保持明胶浓度(10%wt / v)恒定为2,2,制得以聚氨酯为芯,明胶为壳的同轴纤维膜。 ,2-三氟乙醇。用戊二醛蒸气稳定明胶壳。使用透射/扫描电子显微镜和FTIR确认了核-壳结构的形成。同轴纤维膜的单轴拉伸性能介于纯聚氨酯和明胶纤维膜的中间。明胶壳增加了亲水性和跨同轴纤维膜的葡萄糖转运通量。具有小纤维直径(541 nm)和厚明胶壳(52%)的同轴纤维膜不会影响传感器的灵敏度,但从长远来看会降低传感器的线性度。相比之下,具有薄明胶壳(34%)的较厚的同轴纤维膜(1133 nm)在研究期的84天中保持了灵敏度和线性。总而言之,聚氨酯-明胶同轴纤维膜由于其对葡萄糖的更快渗透性,可调节的机械性能和生物活性,是涂层的潜在候选者,可以有利地修饰宿主反应,从而延长植入式葡萄糖生物传感器的可靠体内寿命。

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