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A light-induced hydrogel responsive platform to capture and selectively isolate single circulating tumor cells

机译:光致水凝胶响应平台捕获和选择性隔离单循环肿瘤细胞

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摘要

Isolation of circulating tumor cells (CTCs) from patients is a challenge due to the rarity of CTCs. Recently, various platforms to capture and release CTCs for downstream analysis have been developed. However, most of the reported release methods provide external stimuli to release all captured cells, which lead to lack of specificity in the pool of collected cells, and the external stimuli may affect the activity of the released cells. Here, we presented a simple method for single-cell recovery to overcome the shortcomings, which combined the nanostructures with a photocurable hydrogel, chondroitin sulfate methacryloyl (CSMA). In brief, we synthesized gelatin nanoparticles (Gnps) and modified them on flat glass (Gnp substrate) for the specific capture of CTCs. A 405 nm laser was projected onto the selected cells, and then CSMA was cured to encapsulate the selected CTCs. Unselected cells were removed with MMP-9 enzyme solution, and selected CTCs were recovered using a microcapillary. Finally, the photocurable hydrogel-encapsulated cells were analyzed by nucleic acid detection. In addition, the results suggested that the isolation platform showed good biocompatibility and successfully achieved the isolation of selected cells. In summary, our light-induced hydrogel responsive platform holds certain potential for clinical applications.
机译:隔离的循环肿瘤细胞(ctc)病人是由于罕见的一个挑战ctc。释放ctc下游分析发展。提供外部刺激释放所有的方法捕获细胞,导致缺乏特异性池中收集细胞,和外部刺激可能影响发布的活动细胞。单细胞复苏克服缺点,结合纳米结构与固化水凝胶制成,硫酸软骨素甲基丙烯酰氯(CSMA)。明胶纳米粒子(国民生产总值)和修改特定的平板玻璃(Gnp衬底)捕获的ctc。在选定的细胞,然后CSMA治愈将选定的ctc。细胞被MMP-9酶解,和选择的ctc恢复使用微细管。hydrogel-encapsulated细胞分析核酸检测。建议隔离平台显示良好生物相容性,成功地实现了选择细胞的隔离。光致水凝胶响应平台某些临床应用潜力。

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