首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Reversible self-assembly and directed assembly of DNA-linked micrometer-sized colloids
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Reversible self-assembly and directed assembly of DNA-linked micrometer-sized colloids

机译:DNA连接的微米级胶体的可逆自组装和定向组装

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摘要

We present a technique for the directed assembly and self-assembly of micrometer-scale structures based on the control of specific DNA linkages between colloidal particles. The use of DNA links combined with polymer brushes provides an effective way to regulate the range and magnitude of addressable forces between pairs (and further combinations) of different particles. We demonstrate that the autoassembly of alternate microbeads as well as their directed assembly, by using laser tweezers, is reversible. The key to reversibility is preventing the particles from falling into their van der Waals well at close distances. This goal is achieved by the use of adsorbed polymers that limit the number of DNA bridges to one to three between adjacent particles.
机译:我们介绍了一种技术,用于根据胶体颗粒之间的特定DNA链接的控制的微米级结构的定向组装和自组装。 DNA链与聚合物刷的结合使用提供了一种有效的方法,可调节不同粒子对之间(以及进一步的结合)之间可寻址力的范围和大小。我们证明了通过使用激光镊子,备用微珠的自动组装以及它们的定向组装是可逆的。可逆性的关键是防止粒子在近距离处很好地落入范德华力。该目标是通过使用吸附的聚合物来实现的,该聚合物将相邻颗粒之间的DNA桥的数量限制为一到三个。

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