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Light-Induced quantitative microprinting of biomolecules

机译:光诱导的生物分子定量微胶凝

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Printing of biomolecules on substrates has developed tremendously in the past few years. The existing methods either rely on slow serial writing processes or on parallelized photolithographic techniques where cumbersome mask alignment procedures usually impair the ability to generate multi-protein patterns. We recently developed a new technology allowing for high resolution multi protein micro-patterning. This technology named "Light-Induced Molecular Adsorption of Proteins (LIMAP)" is based on a water-soluble photo-initiator able to reverse the antifouling property of polymer brushes when exposed to UV light. We developed a wide-field pattern projection system based on a DMD coupled to a conventional microscope which permits to generate arbitrary grayscale patterns of UV light at the micron scale. Interestingly, the density of adsorbed molecules scales with the dose of UV light thus allowing the quantitative patterning of biomolecules. The very low non specific background of biomolecules outside of the UV-exposed areas allows for the sequential printing of multiple proteins without alignment procedures. Protein patterns ranging from 500 nm up to 1 mm can be performed within seconds, as well as gradients of arbitrary shapes. The range of applications of the LIMAP approach extends from the single molecule up to the multicellular scale with an exquisite control over local protein density. We show that it can be used to generate complex protein landscapes useful to study protein-protein, cell-cell and cell-matrix interactions.
机译:在基板上的生物分子的印刷已经在过去几年有了很大的发展。现有的方法要么依赖于缓慢的串行写入处理或上并行化的光刻技术,其中繁琐掩模对准程序通常损害来产生多蛋白模式的能力。我们最近开发出一种新技术,使高分辨率的多蛋白微图案。命名为“蛋白的光诱导分子吸附(LIMAP)”这一技术是基于水溶性光引发剂能够在暴露于UV光以扭转聚合物刷的防污性。我们开发了基于DMD的耦合到常规的显微镜,其允许在微米尺度,以产生UV光的任意灰度等级图案的宽视场图案的投影系统。有趣的是,用UV光从而允许生物分子的定量图案化的剂量吸附的分子尺度的密度。生物分子的UV曝光区域外的非常低的非特异性背景允许多个蛋白质的顺序印刷,而不对准程序。蛋白质模式范围从500纳米达到1mm可以秒,以及任意形状的梯度内进行。的LIMAP方法的应用范围从单分子到所述多尺度与精致的控制本地蛋白密度延伸。我们表明,它可以被用来生成复杂的蛋白质景观有用的研究蛋白质 - 蛋白质,细胞 - 细胞和细胞 - 基质相互作用。

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