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Towards Tunable Protein-Carrier Wound Dressings Based on Nanocellulose Hydrogels Crosslinked with Calcium Ions

机译:基于可与钙离子交联的纳米纤维素水凝胶的可调蛋白载体伤口敷料

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摘要

A Ca2+-crosslinked wood-based nanofibrillated cellulose (NFC) hydrogel was investigated to build knowledge toward the use of nanocellulose for topical drug delivery applications in a chronic wound healing context. Proteins of varying size and isoelectric point were loaded into the hydrogel in a simple soaking procedure. The release of the proteins from the hydrogel was monitored and kinetics determining parameters of the release processes were assessed. The integrity of the hydrogel and proteins were also studied. The results showed that electrostatic interactions between the proteins and the negatively-charged NFC hydrogel structure played a central role in the loading process. The release of the proteins were governed by Fickian diffusion. An increased protein size, as well as a positive protein charge facilitated a slower and more sustained release process from the hydrogel matrix. At the same time, the positively-charged protein was shown to increase the post-loading hydrogel strength. Released proteins maintained structural stability and activity, thus indicating that the Ca2+-crosslinked NFC hydrogel could function as a carrier of therapeutic proteins without compromising protein function. It is foreseen that, by utilizing tunable charge properties of the NFC hydrogel, release profiles can be tailored to meet very specific treatment needs.
机译:研究了Ca 2 + 交联的木质基纳米原纤化纤维素(NFC)水凝胶,以建立有关在慢性伤口愈合环境中将纳米纤维素用于局部药物递送应用的知识。通过简单的浸泡程序将大小和等电点不同的蛋白质加载到水凝胶中。监测蛋白质从水凝胶中的释放,并评估释放过程的动力学测定参数。还研究了水凝胶和蛋白质的完整性。结果表明,蛋白质与带负电荷的NFC水凝胶结构之间的静电相互作用在加载过程中起着核心作用。蛋白质的释放受菲克扩散的支配。蛋白质大小的增加以及蛋白质的正电荷促进了从水凝胶基质中释放的过程更加缓慢和持续。同时,显示带正电荷的蛋白质可增加上样后水凝胶的强度。释放的蛋白质保持了结构的稳定性和活性,因此表明Ca 2 + 交联的NFC水凝胶可以充当治疗性蛋白质的载体,而不会损害蛋白质的功能。可以预见的是,通过利用NFC水凝胶的可调电荷特性,可以调整释放曲线以满足非常特殊的治疗需求。

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