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化学编辑的外泌体通过微流控装置进行双配体纯化,用于主动靶向肿瘤细胞的药物递送。

Chemically Edited Exosomes with Dual Ligand Purified by Microfluidic Device for Active Targeted Drug Delivery to Tumor Cells.

机构信息

Britton Chance Center for Biomedical Photonics at Wuhan National Laboratory for Optoelectronics - Hubei Bioinformatics & Molecular Imaging Key Laboratory, Systems Biology Theme, Department of Biomedical Engineering, College of Life Science and Technology, Huazhong University of Science and Technology , Wuhan 430074, China.

出版信息

ACS Appl Mater Interfaces. 2017 Aug 23;9(33):27441-27452. doi: 10.1021/acsami.7b06464. Epub 2017 Aug 11.

Abstract

Exosomes, which are lipid membrane-bound nanovesicles (50-150 nm in diameter), have aroused extensive attention for their potential applications in invasive molecular and stand for a new therapeutic delivery system. However, they are limited by poor targeting ability and a lack of efficient isolation techniques. Here, we present a three-dimensional nanostructured microfluidic chip, in which arrays of micropillars were functionalized with crisscrossed multiwall carbon nanotubes by chemical deposition, to capture exosomes with high efficiency through a combination of a specific recognition molecule (CD63) and the unique topography of the nanomaterials. As is proven, this nanostructured interface substantially made the immuno capturing of exosomes more efficient. A high percentage of intact vesicles <150 nm were readily purified. As a further application, we added functionality to the exosomes by a chemical editing approach for targeted drug delivery. Donor cells were labeled chemically with dual ligands (biotin and avidin) in the phospholipid membrane and encapsulated drugs in the cytosol. Though the engineered donor cells secreted exosomes, the dual ligands, together with the drugs, were inherited by the exosomes, which were then isolated with the microfluidic chip. Then, the isolated exosomes were used as drug delivery vehicles and showed strong targeting abilities to tumor cells and highly efficient receptor-mediated cellular uptake when exposed to recipient cells. Thus, the anticancer effect of chemotherapeutic drugs was improved significantly. It suggested that this platform could provide a useful tool for isolating intact exosomes with high efficiency and exploiting their natural carrier function to deliver chemotherapeutic drugs to tumor cells with increased efficacy and targeting capacity.

摘要

外泌体是脂质膜包裹的纳米囊泡(直径 50-150nm),由于其在侵袭性分子水平的潜在应用而受到广泛关注,代表了一种新的治疗性药物递送系统。然而,它们受到靶向能力差和缺乏有效分离技术的限制。在这里,我们提出了一种三维纳米结构微流控芯片,其中阵列的微柱通过化学沉积功能化有纵横交错的多壁碳纳米管,通过特异性识别分子(CD63)和纳米材料的独特形貌的组合,高效捕获外泌体。事实证明,这种纳米结构界面大大提高了外泌体的免疫捕获效率。很容易纯化到大量 <150nm 的完整囊泡。作为进一步的应用,我们通过化学编辑方法赋予外泌体靶向药物递送的功能。供体细胞在磷脂膜中用双配体(生物素和亲和素)化学标记,并将药物包裹在细胞质中。尽管工程供体细胞分泌了外泌体,但双配体与药物一起被外泌体继承,然后用微流控芯片分离。然后,分离的外泌体被用作药物递送载体,当暴露于受体细胞时,对肿瘤细胞表现出强烈的靶向能力和高效的受体介导的细胞摄取。因此,化学疗法药物的抗癌效果得到了显著提高。这表明该平台可以提供一种有用的工具,用于高效分离完整的外泌体,并利用其天然载体功能将化学疗法药物递送到肿瘤细胞,提高疗效和靶向能力。

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