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Novel Morphology-Controlled Hierarchical Core@Shell Structural Organo-Layered Double Hydroxides Magnetic Nanovehicles for Drug Release

机译:用于药物释放的新型形态学控制的分层核@壳结构有机层状双氢氧化物磁性纳米载体

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摘要

Novel hierarchical core@shell structured salicylate (SA) intercalated ZnAl-LDH (layered double hydroxides) magnetic nanovehicles were obtained via a special double-drop coprecipitation strategy assembling organo-ZnAl-LDH nanocrystals onto the surface of Fe3O4 submicrospheres (similar to 480 nm) from cheap aspirin and Zn- and Al-nitrates in alkaline solutions. The obtained Fe3O4@SA-LDH-r nanovehicles exhibit varied morphologies with hexagonal LDH ab-face horizontal, vertical, and vertical/slant/horizontal to the surfaces of Fe3O4 upon proper mass ratio (r) of Zn-salt to Fe3O4 from 1.93 to 7.71 in a low supersaturation system and possess moderate drug loadings and strong superparamagnetism. An in vitro release study reveals that under "no MF" mode (without external magnetic field) the SA release exhibits the higher accumulated release amount and smaller half-life (t(0).(5)) for Fe3O4@SA-LDH-3.85 (41.2%, 1.63 min) and Fe3O4@SA-LDH-7.71 (51.1%, 1.66 min) probably owing to their mainly vertical LDH orientations, while the dramatically reduced SA release (10.0%) and greatly elongated t(0.5) (25.6 min) for Fe3O4@SA-LDH-1.93 may be due to its relatively stronger host-guest interaction and compact horizontally oriented LDH shell stack. Under "MF on" mode, all the magnetic samples show a detectable reduced SA release owing to the particle-particle interactions among the magnetic nanovehicles. The kinetic fittings show that the release processes of all the samples involve the bulk and surface diffusion. The SA release from Fe3O4@SA-LDH-1.93 is mainly determined by the interparticle diffusion among the horizontally oriented LDH shell nanocrystals while those of Fe3O4@SA-LDH-3.85 and Fe3O4@SA-LDH-7.71 mainly involve the interlayer intraparticle diffusion between LDHs layers due to their largely vertical LDH shell nanocrystals.
机译:通过特殊的双滴共沉淀策略,将有机-ZnAl-LDH纳米晶体组装到Fe3O4亚微球表面上(类似于480 nm),获得了新型的分层核@壳结构水杨酸酯(SA)插层的ZnAl-LDH(层状双氢氧化物)磁性纳米载体。由碱性溶液中的廉价阿司匹林,硝酸锌和硝酸铝制成。在适当的锌盐与Fe3O4的质量比(r)为1.93至1.65的情况下,所获得的Fe3O4 @ SA-LDH-r纳米车辆在Fe3O4的表面上具有六边形LDH正面,水平,垂直和垂直/倾斜/水平的六方LDH表面。在低过饱和系统中具有7.71,并具有中等的药物负荷和强的超顺磁性。体外释放研究表明,在Fe3O4 @ SA-LDH-下,在“无MF”模式(无外部磁场)下,SA释放显示出较高的累积释放量和较小的半衰期(t(0)。(5))。 3.85(41.2%,1.63 min)和Fe3O4@SA-LDH-7.71(51.1%,1.66 min)可能是由于它们主要是垂直的LDH取向,而SA释放显着减少(10.0%)和大大延长了t(0.5)( Fe3O4@SA-LDH-1.93需要25.6分钟的时间)可能是由于其相对较强的宿主-客体相互作用和紧凑的水平定向LDH壳堆叠。在“ MF on”模式下,由于磁性纳米载体之间的颗粒间相互作用,所有磁性样品均显示出可检测到的SA释放减少。动力学拟合表明,所有样品的释放过程都涉及体积和表面扩散。 Fe3O4@SA-LDH-1.93中的SA释放主要由水平取向的LDH壳纳米晶体之间的颗粒间扩散决定,而Fe3O4@SA-LDH-3.85和Fe3O4@SA-LDH-7.71的SA之间释放主要涉及LDHs层由于其大部分是垂直的LDH壳纳米晶体而形成。

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