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Chitosan–lignosulfonates sono-chemically prepared nanoparticles : characterisation and potential applications

机译:壳聚糖-木质素磺酸盐声化学制备的纳米颗粒:表征和潜在应用

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摘要

Due to their recognised properties of biocompatibility, biodegradability and sustainability, chitosan nanocarriers have been successfully used as new delivery systems. In this work, nanoparticles combining chitosan and lignosulfonates were developed for the first time for cosmetic and biomedical applications. The ability of lignosulfonates to act as a counter polyion for stabilisation of chitosan particles, generated using high intensity ultrasound, was investigated. Several conditions for particles preparation were tested and optimised and the resulting nanoparticles were comprehensively characterised by measuring particle size, zeta potential and polydispersity index. The pH of chitosan solution, sonication time and the presence of an adequate surfactant, poloxamer 407, were determinant factors on the development of smaller particles with low polydispersity index (an average particle size of 230 nm was obtained at pH 5 after 8 min of sonication). The beneficial effects of lignosulfonates complex on chitosan nanoparticles were further characterised. Greater stability to lysozyme degradation, biocompatibility with human cells and antimicrobial activity was found upon lignosulfonates incorporation into chitosan nanoparticles. Furthermore, these particles were able to incorporate a hydrophilic model protein – RNase A. A burst release was observed when nanoparticles were loaded with low amount of protein while with high protein content, a sustained release was found, suggesting that the protein cargo maybe loaded both at the surface as in the bulk of the particle, depending on the concentration of drug incorporated.
机译:由于其公认的生物相容性,生物降解性和可持续性,壳聚糖纳米载体已成功用作新的递送系统。在这项工作中,首次将结合壳聚糖和木质素磺酸盐的纳米颗粒用于化妆品和生物医学应用。研究了木质素磺酸盐用作稳定使用高强度超声产生的壳聚糖颗粒的抗衡聚离子的能力。测试和优化了几种制备颗粒的条件,并通过测量粒度,ζ电位和多分散指数全面表征了所得纳米颗粒。壳聚糖溶液的pH值,超声处理时间以及适当的表面活性剂poloxamer 407的存在是形成具有较低多分散指数的较小颗粒的决定因素(超声处理8分钟后,在pH 5时平均粒径为230 nm) )。进一步表征了木质素磺酸盐复合物对壳聚糖纳米颗粒的有益作用。当木质素磺酸盐掺入壳聚糖纳米颗粒中时,发现对溶菌酶降解的稳定性更高,与人细胞的生物相容性和抗菌活性更高。此外,这些颗粒能够掺入亲水性模型蛋白-RNaseA。当纳米颗粒装载少量蛋白质而蛋白含量高时,发现突然释放,发现持续释放,表明蛋白质货物可能同时装载取决于颗粒中的大部分,取决于所掺入药物的浓度。

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