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一种多功能聚合物,结合了咪唑和两性离子基序,作为量子点的生物相容性紧凑涂层。

A multifunctional polymer combining the imidazole and zwitterion motifs as a biocompatible compact coating for quantum dots.

机构信息

Department of Chemistry and Biochemistry, Florida State University , 95 Chieftan Way, Tallahassee, Florida 32306, United States.

出版信息

J Am Chem Soc. 2015 Nov 11;137(44):14158-72. doi: 10.1021/jacs.5b08915. Epub 2015 Oct 30.

Abstract

We introduce a set of multicoordinating imidazole- and zwitterion-based ligands suited for surface functionalization of quantum dots (QDs). The polymeric ligands are built using a one-step nucleophilic addition reaction between poly(isobutylene-alt-maleic anhydride) and distinct amine-containing functionalities. This has allowed us to introduce several imidazole anchoring groups along the polymer chain for tight coordination to the QD surface and a controllable number of zwitterion moieties for water solubilization. It has also permitted the introduction of reactive and biomolecular groups for further conjugation and targeting. The QDs capped with these new ligands exhibit excellent long-term colloidal stability over a broad range of pH, toward excess electrolyte, in cell-growth media, and in the presence of natural reducing agents such as glutathione. These QDs are also resistant to the oxidizing agent H2O2. More importantly, by the use of zwitterion moieties as the hydrophilic block, this polymer design provides QDs with a thin coating and compact overall dimensions. These QDs are easily self-assembled with full size proteins expressed with a polyhistidine tag via metal-histidine coordination. Additionally, the incorporation of amine groups allows covalent coupling of the QDs to the neurotransmitter dopamine. This yields redox-active QD platforms that can be used to track pH changes and detect Fe ions and cysteine through charge-transfer interactions. Finally, we found that QDs cap-exchanged with folic acid-functionalized ligands could effectively target cancer cells, where folate-receptor-mediated endocytosis of QDs into living cells was time- and concentration-dependent.

摘要

我们介绍了一组基于多配位咪唑和两性离子的配体,适用于量子点 (QD) 的表面功能化。聚合配体是通过聚异丁烯-马来酸酐与不同含胺官能团之间的一步亲核加成反应构建的。这使得我们能够在聚合物链上引入几个咪唑锚固基团,以与 QD 表面紧密配位,并引入可控数量的两性离子部分以实现水溶。它还允许引入反应性和生物分子基团以进行进一步的缀合和靶向。用这些新配体包覆的 QD 在广泛的 pH 值范围内、过量电解质、细胞生长培养基中以及在天然还原剂如谷胱甘肽存在下表现出优异的长期胶体稳定性。这些 QD 还能抵抗氧化剂 H2O2。更重要的是,通过将两性离子部分用作亲水性嵌段,这种聚合物设计为 QD 提供了薄的涂层和紧凑的整体尺寸。这些 QD 可以通过金属-组氨酸配位很容易地与带有多组氨酸标签的全长蛋白质自组装。此外,胺基团的掺入允许 QD 通过共价键偶联到神经递质多巴胺。这产生了具有氧化还原活性的 QD 平台,可用于通过电荷转移相互作用跟踪 pH 值变化并检测 Fe 离子和半胱氨酸。最后,我们发现用叶酸功能化配体交换帽的 QD 可以有效地靶向癌细胞,其中叶酸受体介导的 QD 进入活细胞的内吞作用是时间和浓度依赖性的。

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