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使用磁性纳米颗粒进行促红细胞生成素的磁导向靶向递送:概念验证。

Magnetically guided targeted delivery of erythropoietin using magnetic nanoparticles: Proof of concept.

作者信息

Nguyen Chanh Trung, Kim Chung Reen, Le Thi Huong, Koo Kyo-In, Hwang Chang Ho

机构信息

Department of Biomedical Engineering, University of Ulsan, Ulsan.

Department of Physical Medicine and Rehabilitation, Ulsan University Hospital, University of Ulsan College of Medicine, Ulsan.

出版信息

Medicine (Baltimore). 2020 May;99(19):e19972. doi: 10.1097/MD.0000000000019972.

Abstract

The objective of this proof-of-concept study was to demonstrate the targeted delivery of erythropoietin (EPO) using magnetically guided magnetic nanoparticles (MNPs).MNPs consisting of a ferric-ferrous mixture (FeCl3·6H2O and FeCl2·4H2O) were prepared using a co-precipitation method. The drug delivery system (DDS) was manufactured via the spray-drying technique using a nanospray-dryer. The DDS comprised 7.5 mg sodium alginate, 150 mg MNPs, and 1000 IU EPO.Scanning electron microscopy revealed DDS particles no more than 500 nm in size. Tiny particles on the rough surfaces of the DDS particles were composed of MNPs and/or EPO, unlike the smooth surfaces of the only alginate particles. Transmission electron microscopy showed the tiny particles from 5 to 20 nm in diameter. Fourier-transform infrared spectroscopy revealed DDS peaks characteristic of MNPs as well as of alginate. Thermal gravimetric analysis presented that 50% of DDS weight was lost in a single step around 500°C. The mode size of the DDS particles was approximately 850 nm under in vivo conditions. Standard soft lithography was applied to DDS particles prepared with fluorescent beads using a microchannel fabricated to have one inlet and two outlets in a Y-shape. The fluorescent DDS particles reached only one outlet reservoir in the presence of a neodymium magnet. The neurotoxicity was evaluated by treating SH-SY5Y cells in 48-well plates (1 × 10 cells/well) with 2 μL of a solution containing sodium alginate (0.075 mg/mL), MNPs (1.5 mg/mL), or sodium alginate + MNPs. A cell viability assay kit was used to identify a 93% cell viability after MNP treatment and a 94% viability after sodium alginate + MNP treatment, compared with the control. As for the DDS particle neurotoxicity, a 95% cell viability was noticed after alginate-encapsulated MNPs treatment and a 93% cell viability after DDS treatment, compared with the control.The DDS-EPO construct developed here can be small under in vivo conditions enough to pass through the lung capillaries with showing the high coating efficiency. It can be guided using magnetic control without displaying significant neurotoxicity in the form of solution or particles.

摘要

本概念验证研究的目的是证明使用磁导向磁性纳米颗粒(MNP)靶向递送促红细胞生成素(EPO)。采用共沉淀法制备了由铁 - 亚铁混合物(FeCl3·6H2O和FeCl2·4H2O)组成的MNP。药物递送系统(DDS)通过使用纳米喷雾干燥器的喷雾干燥技术制造。该DDS包含7.5毫克海藻酸钠、150毫克MNP和1000国际单位EPO。扫描电子显微镜显示DDS颗粒尺寸不超过500纳米。与仅海藻酸盐颗粒的光滑表面不同,DDS颗粒粗糙表面上的微小颗粒由MNP和/或EPO组成。透射电子显微镜显示微小颗粒直径为5至20纳米。傅里叶变换红外光谱显示了DDS具有MNP以及海藻酸盐的特征峰。热重分析表明,DDS重量的50%在500°C左右的单一步骤中损失。在体内条件下,DDS颗粒的模态尺寸约为850纳米。使用微通道对用荧光珠制备的DDS颗粒应用标准软光刻技术,该微通道制造成具有一个入口和两个呈Y形的出口。在钕磁铁存在的情况下,荧光DDS颗粒仅到达一个出口储液器。通过用2微升含有海藻酸钠(0.075毫克/毫升)、MNP(1.5毫克/毫升)或海藻酸钠 + MNP的溶液处理48孔板(每孔1×10细胞)中的SH - SY5Y细胞来评估神经毒性。与对照相比,细胞活力测定试剂盒显示MNP处理后细胞活力为93%,海藻酸钠 + MNP处理后细胞活力为94%。至于DDS颗粒神经毒性,与对照相比,海藻酸盐包裹MNP处理后细胞活力为95%,DDS处理后细胞活力为93%。此处开发的DDS-EPO构建体在体内条件下可以足够小以穿过肺毛细血管,同时显示出高包封效率。它可以通过磁控引导,而不会以溶液或颗粒形式表现出明显的神经毒性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb28/7220084/8df9d9e3f425/medi-99-e19972-g001.jpg

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