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通过在三维共振超声场中将细胞与载药微载体共定位提高巨噬细胞药物递送效率

Enhancing Macrophage Drug Delivery Efficiency via Co-Localization of Cells and Drug-Loaded Microcarriers in 3D Resonant Ultrasound Field.

作者信息

Lee Yu-Hsiang, Wu Zhen-Yu

机构信息

Graduate Institute of Biomedical Engineering, National Central University, Taoyuan City, Taiwan, R.O.C.

出版信息

PLoS One. 2015 Aug 12;10(8):e0135321. doi: 10.1371/journal.pone.0135321. eCollection 2015.

Abstract

In this study, a novel synthetic 3D molecular transfer system which involved the use of model drug calcein-AM-encapsulated poly(lactic-co-glycolic acid) microspheres (CAPMs) and resonant ultrasound field (RUF) with frequency of 1 MHz and output intensity of 0.5 W/cm2 for macrophage drug delivery was explored. We hypothesized that the efficiency of CAPMs-mediated drug delivery aided by RUF can be promoted by increasing the contact opportunities between cells and the micrometer-sized drug carriers due to effects of acoustic radiation forces generated by RUF. Through the fluoromicroscopic and flow cytometric analyses, our results showed that both DH82 macrophages and CAPMs can be quickly brought to acoustic pressure nodes within 20 sec under RUF exposure, and were consequently aggregated throughout the time course. The efficacy of cellular uptake of CAPMs was enhanced with increased RUF exposure time where a 3-fold augmentation (P < 0.05) was obtained after 15 min of RUF exposure. We further demonstrated that the enhanced CAPM delivery efficiency was mainly contributed by the co-localization of cells and CAPMs resulting from the application of the RUF, rather than from sonoporation. In summary, the developed molecular delivery approach provides a feasible means for macrophage drug delivery.

摘要

在本研究中,探索了一种新型的合成3D分子传递系统,该系统涉及使用包裹模型药物钙黄绿素-AM的聚乳酸-羟基乙酸共聚物微球(CAPMs)以及频率为1 MHz、输出强度为0.5 W/cm2的共振超声场(RUF)用于巨噬细胞药物递送。我们假设,由于RUF产生的声辐射力的作用,增加细胞与微米级药物载体之间的接触机会可以提高RUF辅助的CAPMs介导的药物递送效率。通过荧光显微镜和流式细胞术分析,我们的结果表明,在RUF暴露下,DH82巨噬细胞和CAPMs均可在20秒内迅速到达声压节点,并在整个时间过程中聚集。随着RUF暴露时间的增加,CAPMs的细胞摄取效率提高,在RUF暴露15分钟后提高了3倍(P < 0.05)。我们进一步证明,CAPM递送效率的提高主要是由于应用RUF导致细胞与CAPMs共定位,而不是由于声孔效应。总之,所开发的分子递送方法为巨噬细胞药物递送提供了一种可行的手段。

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