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Selective adsorption of proteins on single-wall carbon nanotubes by using a protective surfactant

机译:使用保护性表面活性剂选择性吸附蛋白质在单壁碳纳米管上

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摘要

The dispersion of highly hydrophobic carbon materials such as carbon nanotubes in biological media is a challenging issue. Indeed, the nonspecific adsorption of proteins occurs readily when the nanotubes are introduced in biological media; therefore, a methodology to control adsorption is in high demand. To address this issue, we developed a bifunctional linker derived from pyrene that selectively enables or prevents the adsorption of proteins on single-wall carbon nanotubes (SWNTs). We demonstrated that it is possible to decrease or completely suppress the adsorption of proteins on the nanotube sidewall by using proper functionalization (either covalent or noncovalent). By subsequently activating the functional groups on the nanotube derivatives, protein adsorption can be recovered and, therefore, controlled. Our approach is simple, straightforward, and potentially suitable for other biomolecules that contain thio or amino groups available for coupling.
机译:高疏水性碳材料(例如碳纳米管)在生物介质中的分散是一个具有挑战性的问题。实际上,当将纳米管引入生物介质时,蛋白质的非特异性吸附很容易发生。因此,迫切需要控制吸附的方法。为了解决此问题,我们开发了一种衍生自pyr的双功能接头,该接头可选择性地启用或阻止蛋白质在单壁碳纳米管(SWNT)上的吸附。我们证明可以通过使用适当的功能化(共价或非共价)来减少或完全抑制蛋白质在纳米管侧壁上的吸附。通过随后激活纳米管衍生物上的官能团,可以恢复并因此控制蛋白质吸附。我们的方法简单,直接,并且可能适用于包含可用于偶联的硫基或氨基的其他生物分子。

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