Compact Micropatterned Chip Empowers Undisturbed and Programmable Drug Addition in High-Throughput Cell Screening

Yuanyi Zhao, Yingxue Sun,Xinjian Xie, Yujia Liang, Elisabetta Ada Cavalcanti-Adam,Wenqian Feng

ADVANCED MATERIALS(2024)

引用 0|浏览5
暂无评分
摘要
Simultaneously adding multiple drugs and other chemical reagents to individual droplets at specific time points presents a significant challenge, particularly when dealing with tiny droplets in high-throughput screening applications. In this study, a micropatterned polymer chip is developed as a miniaturized platform for light-induced programmable drug addition in cell-based screening. This chip incorporates a porous superhydrophobic polymer film with atom transfer radical polymerization reactivity, facilitating the efficient grafting of azobenzene methacrylate, a photoconformationally changeable group, onto the hydrophilic regions of polymer matrix at targeted locations and with precise densities. By employing light irradiation, the cyclodextrin-azobenzene host-guest complexes formed on the polymer chip can switch from an "associated" to a "dissociated" state, granting precise photochemical control over the supramolecular coding system and its surface patterning ability. Significantly, the exceptional spatial and temporal control offered by these chemical transitions empowers to utilize digital light processing systems for simultaneous regulation and release of cyclodextrin-bearing drugs across numerous droplets containing suspended or adhered cells. This approach minimizes mechanical disruption while achieving precise control over the timing of addition, dosage, and integration varieties of released drugs in high-throughput screening, all programmable to meet specific requirements. A miniaturized chip, consisting of a micropatterned and porous polymer film, is presented for light-induced drug addition in cell-based high-throughput screening. The photoisomerization of atom transfer radical polymerization-grafted azobenzene enables spatial and temporal control, leveraging digital light processing systems to simultaneously regulate and release integrated cyclodextrin-bearing drugs in numerous droplets with suspended or adhered cells, undisturbed and programmable.image
更多
查看译文
关键词
cell screening,drug release,host-guest interaction,photoswitching,superhydrophobic-hydrophilic pattern
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要