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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Novel magneto-responsive nanoplatforms based on MnFe2O4 nanoparticles layer-by-layer functionalized with chitosan and sodium alginate for magnetic controlled release of curcumin
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Novel magneto-responsive nanoplatforms based on MnFe2O4 nanoparticles layer-by-layer functionalized with chitosan and sodium alginate for magnetic controlled release of curcumin

机译:基于MnFe2O4纳米颗粒的新型磁响应纳米型逐层用壳聚糖和藻酸钠官能化,用于抗姜黄素的磁控释

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摘要

Remotely assisted drug delivery by means of magnetic biopolymeric nanoplatforms has been utilized as an important tool to improve the delivery/release of hydrophobic drugs and to address their low cargo capacity. In this work, MnFe2O4 magnetic nanoparticles (MNPs) were synthesized by thermal decomposition, coated with citrate and then functionalized with the layer-by-layer (LbL) assembly of polyelectrolyte multilayers, with chitosan as polycation and sodium alginate as polyanion. Simultaneous conductimetric and potentiometric titrations were employed to optimize the LbL deposition and to enhance the loading capacity of nanoplatforms for curcumin, a hydrophobic drug used in cancer treatment. similar to 200 nm sized biopolymer platforms with similar to 12 nm homogeneously embedded MNPs were obtained and characterized by means of XRD, HRTEM, DLS, TGA, FTIR, XPS and fluorescence spectroscopy techniques to access structural, morphological and surface properties, to probe biopolymer functionalization and to quantify drug-loading. Charge reversals (+/- 30 mV) after each deposition confirmed polyelectrolyte adsorption and a stable LbL assembly. Magnetic interparticle interaction was reduced in the biopolymeric structure, hinting at an optimized performance in magnetic hyperthermia for magneto-assisted drug release applications. Curcumin was encapsulated, resulting in an enhanced payload (similar to 100 mu g/mg). Nanocytotoxicity assays showed that the biopolymer capping enhanced the biocompatibility of nanoplatforms, maintaining entrapped curcumin. Our results indicate the potential of synthesized nanoplatforms as an alternative way of remotely delivering/releasing curcumin for medical purposes, upon application of an alternating magnetic field, demonstrating improved efficiency and reduced toxicity.
机译:通过磁性生物聚合物纳米载体循环辅助药物递送已被用作改善疏水药物的递送/释放的重要工具,并解决其低货物能力。在这项工作中,通过热分解合成MnFe2O4磁性纳米颗粒(MNP),用柠檬酸盐涂覆,然后用聚电解质多层的层组合物官能化,用壳聚糖作为聚阳离子和藻酸钠作为聚沉聚物。采用同时进行电流和电位滴定来优化LBL沉积,并增强纳米蛋白的纳米蛋白的负载能力,癌症治疗中使用的疏水性药物。类似于200nm大小的生物聚合物平台,获得了与12nm均匀嵌入的MnPS类似,通过XRD,HRTEM,DLS,TGA,FTIR,XPS和荧光光谱技术来获得探针生物聚合物官能化并量化药物载荷。每次沉积确认聚电解质吸附和稳定的LBL组件后,电荷逆转(+/- 30 mV)。在生物聚合物结构中降低了磁性颗粒相互作用,暗示了磁辅助药物释放应用的磁热疗中的优化性能。姜黄素被包封,导致增强的有效载荷(类似于100μg/ mg)。纳米织菌毒性测定显示,生物聚合物封端增强了纳米甲酰胺的生物相容性,维持捕获的姜黄素。我们的结果表明,在施加交流场时,合成纳米片作为用于医疗目的的替代方法,其用于施加交流场,证明提高效率和降低毒性。

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