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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Simulation of complex transport of nanoparticles around a tumor using tumor-microenvironment-on-chip
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Simulation of complex transport of nanoparticles around a tumor using tumor-microenvironment-on-chip

机译:使用肿瘤微环境芯片模拟纳米颗粒在肿瘤周围的复杂转运

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摘要

Delivery of therapeutic agents selectively to tumor tissue, which is referred as "targeted delivery," is one of the most ardently pursued goals of cancer therapy. Recent advances in nanotechnology enable numerous types of nanoparticles (NPs) whose properties can be designed for targeted delivery to tumors. In spite of promising early results, the delivery and therapeutic efficacy of themajority of NPs are still quite limited. This ismainly attributed to the limitation of currently available tumor models to test these NPs and systematically study the effects of complex transport and pathophysiological barriers around the tumors. In this study, thus, we developed a new in vitro tumor model to recapitulate the tumor microenvironment determining the transport around tumors. This model, named tumor-microenvironment-on-chip (T-MOC), consists of 3-dimensional microfluidic channelswhere tumor cells and endothelial cells are cultured within extracellularmatrix under perfusion of interstitial fluid. Using this T-MOC platform, the transport of NPs and its variation due to tumor microenvironmental parameters have been studied including cut-off pore size, interstitial fluid pressure, and tumor tissue microstructure. The results suggest that T-MOC is capable of simulating the complex transport around the tumor, and providing detailed information about NP transport behavior. This finding confirms that NPs should be designed considering their dynamic interactions with tumor microenvironment.
机译:将治疗剂选择性地递送至肿瘤组织,这被称为“靶向递送”,是癌症治疗中最热切追求的目标之一。纳米技术的最新进展实现了多种类型的纳米颗粒(NPs),其性质可设计用于靶向递送至肿瘤。尽管有希望的早期结果,但是大多数NP的递送和治疗效果仍然非常有限。这主要归因于当前可用于测试这些NP并系统研究肿瘤周围复杂转运和病理生理障碍的肿瘤模型的局限性。因此,在这项研究中,我们开发了一种新的体外肿瘤模型以概括肿瘤微环境,确定了肿瘤周围的转运。该模型称为芯片上微环境(T-MOC),由3维微流控通道组成,其中在细胞间基质的灌注下,在细胞外基质中培养肿瘤细胞和内皮细胞。使用此T-MOC平台,已经研究了NP的运输及其由于肿瘤微环境参数而引起的变异,包括截留孔径,间质液压力和肿瘤组织微结构。结果表明,T-MOC能够模拟肿瘤周围的复杂转运,并提供有关NP转运行为的详细信息。这一发现证实了NP的设计应考虑它们与肿瘤微环境的动态相互作用。

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