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Highly scalable production of uniformly-coated superparamagnetic nanoparticles for triggered drug release from alginate hydrogels

机译:高度可扩展的生产均匀涂层的超顺磁性纳米粒子,用于藻酸盐水凝胶的触发药物释放

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Intelligent, on-demand drug administration systems with controlled release kinetics may revolutionize the way diseases are treated. Typically, the release of the therapeutic payload from these systems is activated by stimuli-responsive nanofillers. However, limitations regarding large-scale nanomaterial production and poor reproducibility keep such systems in the labs and away from clinics. Here, we demonstrate the highly scalable and reproducible synthesis of uniform superparamagnetic Fe _(2) O _(3) nanoparticles coated with a nanothin layer of amorphous SiO _(2) , and evaluate their suitability as stimuli-responsive nanofillers in a drug-loaded biopolymer alginate matrix. The superior colloidal stability of the SiO _(2) -coated Fe _(2) O _(3) nanoparticles over their uncoated counterparts and their dispersibility in aqueous suspensions facilitates their incorporation in alginate hydrogel microbeads. We examine the hyperthermia performance of such multiscale particle structures in the presence of alternating magnetic fields and compare the release of dextran (a model biomolecule) in the presence and absence of external stimuli. The enhanced triggered release of dextran in the presence of magnetic fields further highlights the potential of such superparamagnetic SiO _(2) -coated Fe _(2) O _(3) nanoparticles as a functional transducer in such systems.
机译:智能,带有控释动力学的需求的药物管理系统可能彻底改变治疗疾病的疾病。通常,通过刺激响应纳米填充物激活来自这些系统的治疗性有效载荷的释放。然而,关于大规模纳米材料生产和差的重现性的限制将这些系统保持在实验室中,远离诊所。在这里,我们证明了涂覆有无定形SiO _(2)的纳米素层的均匀超顺磁性Fe _(2)Oα(2)O _(3)纳米颗粒的高度可扩展和可重复的合成,并评估其作为药物中刺激响应纳米填料的适用性 - 装载的生物聚合物藻酸盐基质。 SiO_(2)涂料的Fe _(2)O _(3)纳米颗粒在其未涂覆的对应物上的优异胶体稳定性及其在水性悬浮液中的分散性有助于其掺入海藻酸盐水凝胶微珠。在交替磁场存在下,我们研究这种多尺度颗粒结构的热疗性能,并比较在存在和不存在外部刺激的情况下的葡聚糖(模型生物分子)的释放。在磁场的存在下,葡聚糖的增强触发释放进一步突出了这种超顺磁性SiO _(2)涂料的Fe _(2)O _(3)纳米颗粒作为这种系统中的功能换能器的电位。

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