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Biodegradable Magnetic Silica@Iron Oxide Nanovectors with Ultra-Large Mesopores for High Protein Loading, Magnetothermal Release, and Delivery

机译:具有超大中孔的可生物降解磁性二氧化硅@氧化铁纳米载体,用于高蛋白负载,磁热释放和传递

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摘要

The delivery of large cargos of diameter above 15 nm for biomedical applications has proved challenging since it requires biocompatible, stably-loaded, and biodegradable nanomaterials. In this study, we describe the design of biodegradable silica-iron oxide hybrid nanovectors with large mesopores for large protein delivery in cancer cells. The mesopores of the nanomaterials spanned from 20 to 60 nm in diameter and post-functionalization allowed the electrostatic immobilization of large proteins (e.g. mTFP-Ferritin, ~ 534 kDa). Half of the content of the nanovectors was based with iron oxide nanophases which allowed the rapid biodegradation of the carrier in fetal bovine serum and a magnetic responsiveness. The nanovectors released large protein cargos in aqueous solution under acidic pH or magnetic stimuli. The delivery of large proteins was then autonomously achieved in cancer cells via the silica-iron oxide nanovectors, which is thus a promising for biomedical applications.
机译:事实证明,用于生物医学应用的直径大于15 nm的大型货物的交付具有挑战性,因为它需要生物相容性,负载稳定且可生物降解的纳米材料。在这项研究中,我们描述了具有大的中孔的可生物降解的二氧化硅-氧化铁杂化纳米载体的设计,用于在癌细胞中传递大的蛋白质。纳米材料的中孔直径在20到60 nm之间,并且功能化后可以静电固定大蛋白(例如mTFP-铁蛋白,约534 kDa)。纳米载体的一半含量是基于氧化铁纳米相,可以使载体在胎牛血清中快速生物降解并具有磁响应性。纳米载体在酸性pH或磁刺激下在水溶液中释放出大量蛋白质。然后通过二氧化硅-氧化铁纳米载体在癌细胞中自主实现大蛋白的递送,因此对于生物医学应用是有希望的。

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