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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Highly enhanced affinity of multidentate versus bidentate zwitterionic ligands for long-term quantum dot bioimaging
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Highly enhanced affinity of multidentate versus bidentate zwitterionic ligands for long-term quantum dot bioimaging

机译:多齿与双齿两性离子配体对长期量子点生物成像的亲和力大大提高

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摘要

High colloidal stability in aqueous conditions is a prerequisite for fluorescent nanocrystals, otherwise known as "quantum dots", intended to be used in any long-term bioimaging experiment. This essential property implies a strong affinity between the nanoparticles themselves and the ligands they are coated with. To further improve the properties of the bidentate monozwitterionic ligand previously developed in our team, we synthesized a multidentate polyzwitterionic ligand, issued from the copolymerization of a bidentate monomer and a monozwitterionic one. The nanocrystals passivated by this polymeric ligand showed an exceptional colloidal stability, regardless of the medium conditions (pH, salinity, dilution, and biological environment), and we demonstrated the affinity of the polymer exceeded by 3 orders of magnitude that of the bidentate ligand (desorption rates assessed by a competition experiment). The synthesis of the multidentate polyzwitterionic ligand proved also to be easily tunable and allowed facile functionalization of the corresponding quantum dots, which led to successful specific biomolecules targeting.
机译:在水性条件下的高胶体稳定性是荧光纳米晶体(也称为“量子点”)的先决条件,该荧光纳米晶体打算用于任何长期的生物成像实验中。该基本性质暗示纳米颗粒本身与它们所涂覆的配体之间的强亲和力。为进一步改善先前在我们团队中开发的双齿两性离子配体的性能,我们合成了一种多齿多两性离子配体,该配体由双齿单体和单两性离子单体的共聚反应制得。不受介质条件(pH,盐度,稀释度和生物环境)的影响,被该聚合物配体钝化的纳米晶体显示出优异的胶体稳定性,并且我们证明了聚合物的亲和力超过了双齿配体的3个数量级(竞争实验评估的解吸率)。事实证明,多齿多两性离子配体的合成也很容易调整,并且可以轻松实现相应量子点的功能化,从而成功实现了对特定生物分子的靶向。

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