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Synthetic and living micropropellers for convection-enhanced nanoparticle transport

机译:用于对流增强纳米颗粒运输的合成和活体微型螺旋桨

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摘要

Nanoparticles (NPs) have emerged as an advantageous drug delivery platform for the treatment of various ailments including cancer and cardiovascular and inflammatory diseases. However, their efficacy in shuttling materials to diseased tissue is hampered by a number of physiological barriers. One hurdle is transport out of the blood vessels, compounded by difficulties in subsequent penetration into the target tissue. Here, we report the use of two distinct micropropellers powered by rotating magnetic fields to increase diffusion-limited NP transport by enhancing local fluid convection. In the first approach, we used a single synthetic magnetic microrobot called an artificial bacterial flagellum (ABF), and in the second approach, we used swarms of magnetotactic bacteria (MTB) to create a directable “living ferrofluid” by exploiting ferrohydrodynamics. Both approaches enhance NP transport in a microfluidic model of blood extravasation and tissue penetration that consists of microchannels bordered by a collagen matrix.
机译:纳米颗粒(NPs)已经成为治疗各种疾病(包括癌症,心血管疾病和炎性疾病)的有利药物输送平台。然而,它们在穿刺材料到患病组织中的功效受到许多生理屏障的阻碍。一个障碍是从血管中运出,其后由于难以穿透进入目标组织而变得更加困难。在这里,我们报告使用两个不同的微型螺旋桨,这些螺旋桨由旋转磁场提供动力,通过增强局部流体对流来增加扩散受限的NP传输。在第一种方法中,我们使用了一个称为人工细菌鞭毛(ABF)的合成电磁微型机器人,在第二种方法中,我们利用了趋磁细菌群(MTB)通过利用铁流体动力学来创建可定向的“活铁磁流体”。两种方法均在血液外渗和组织渗透的微流模型中增强NP转运,该模型由胶原基质为边界的微通道组成。

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