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首页> 外文期刊>Small >Rapid, High-Throughput, and Direct Molecular Beacon Delivery to Human Cancer Cells Using a Nanowire-Incorporated and Pneumatic Pressure-Driven Microdevice
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Rapid, High-Throughput, and Direct Molecular Beacon Delivery to Human Cancer Cells Using a Nanowire-Incorporated and Pneumatic Pressure-Driven Microdevice

机译:快速,高通量和直接分子信标传递到人类癌细胞使用纳米线结合和气动压力驱动的微型设备。

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摘要

Tracking and monitoring the intracellular behavior of mRNA is of paramount importance for understanding real-time gene expression in cell biology. To detect specific mRNA sequences, molecular beacons (MBs) have been widely employed as sensing probes. Although numerous strategies for MB delivery into the target cells have been reported, many issues such as the cytotoxicity of the carriers, dependence on the random probability of MB transfer, and critical cellular damage still need to be overcome. Herein, we have developed a nanowire-incorporated and pneumatic pressure-driven microdevice for rapid, high-throughput, and direct MB delivery to human breast cancer MCF-7 cells to monitor survivin mRNA expression. The proposed microdevice is composed of three layers: a pump-associated glass manifold layer, a monolithic polydimethylsiloxane (PDMS) membrane, and a ZnO nanowire-patterned microchannel layer. The MB is immobilized on the ZnO nanowires by disulfide bonding, and the glass manifold and PDMS membrane serve as a microvalve, so that the cellular attachment and detachment on the MB-coated nanowire array can be manipulated. The combination of the nanowire-mediated MB delivery and the microvalve function enable the transfer of MB into the cells in a controllable way with high cell viability and to detect survivin mRNA expression quantitatively after docetaxel treatment.
机译:跟踪和监测mRNA的细胞内行为对于了解细胞生物学中的实时基因表达至关重要。为了检测特定的mRNA序列,分子信标(MBs)已被广泛用作传感探针。尽管已经报道了将MB递送到靶细胞的多种策略,但是仍然需要克服许多问题,例如载体的细胞毒性,对MB转移的随机概率的依赖性以及关键的细胞损伤。在这里,我们已经开发了一种纳米线结合和气压驱动的微型设备,用于快速,高通量和直接MB交付给人类乳腺癌MCF-7细胞,以监测survivin mRNA表达。拟议的微型设备由三层组成:与泵相关的玻璃歧管层,整体式聚二甲基硅氧烷(PDMS)膜和ZnO纳米线图案化的微通道层。 MB通过二硫键固定在ZnO纳米线上,并且玻璃歧管和PDMS膜充当微阀,因此可以控制MB涂覆的纳米线阵列上的细胞附着和脱离。纳米线介导的MB传递和微阀功能的结合使MB能够以可控制的方式转移到细胞中,并具有很高的细胞活力,并可以在多西他赛治疗后定量检测survivin mRNA的表达。

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