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Compact Biocompatible Quantum Dots via RAFT-Mediated Synthesis of Imidazole-Based Random Copolymer Ligand

机译:通过RAFT介导的咪唑基无规共聚物配体的合成实现紧凑的生物相容性量子点

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摘要

We present a new class of polymeric ligands for quantum dot (QD) water solubilization to yield biocompatible and derivatizable QDs with compact size (10−12 nm diameter), high quantum yields (>50%), excellent stability across a large pH range (pH 5−10.5), and low nonspecific binding. To address the fundamental problem of thiol instability in traditional ligand exchange systems, the polymers here employ a stable multidentate imidazole binding motif to the QD surface. The polymers are synthesized via reversible addition−fragmentation chain transfer-mediated polymerization to produce molecular weight controlled monodisperse random copolymers from three types of monomers that feature imidazole groups for QD binding, polyethylene glycol (PEG) groups for water solubilization, and either primary amines or biotin groups for derivatization. The polymer architecture can be tuned by the monomer ratios to yield aqueous QDs with targeted surface functionalities. By incorporating amino-PEG monomers, we demonstrate covalent conjugation of a dye to form a highly efficient QD-dye energy transfer pair as well as covalent conjugation to streptavidin for high-affinity single molecule imaging of biotinylated receptors on live cells with minimal nonspecific binding. The small size and low serum binding of these polymer-coated QDs also allow us to demonstrate their utility for in vivo imaging of the tumor microenvironment in live mice.
机译:我们提出了一种新型的量子点(QD)水溶性增溶聚合物配体,以产生尺寸紧凑(直径10-12 nm),高量子产率(> 50%),在较大pH范围内具有出色稳定性的生物相容性和可衍生QD( pH 5-10.5)和低的非特异性结合。为了解决传统配体交换系统中硫醇不稳定性的基本问题,此处的聚合物对QD表面采用稳定的多齿咪唑结合基序。聚合物是通过可逆的加成-断裂链转移介导的聚合反应合成的,由三种类型的单体制得分子量受控的单分散无规共聚物,这些单体的特征是QD结合的咪唑基团,水溶性的聚乙二醇(PEG)基团,伯胺或生物素基团的衍生化。可以通过单体比例调整聚合物结构,以产生具有目标表面功能的水性QD。通过掺入氨基PEG单体,我们证明了染料的共价缀合以形成高效的QD-染料能量转移对,以及与链霉亲和素的共价缀合,以在活细胞上以最小的非特异性结合对生物素化受体进行高亲和力的单分子成像。这些聚合物包被的量子点的小尺寸和低血清结合力也使我们能够证明它们在活体小鼠体内肿瘤微环境的体内成像中的实用性。

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