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磷酸酯锚定单层用于抗体与磁性纳米颗粒的结合。

Phosphonate-anchored monolayers for antibody binding to magnetic nanoparticles.

机构信息

Department of Chemistry and Institute of Nanotechnology and Advanced Materials, Bar-Ilan University, Ramat-Gan 52900, Israel.

出版信息

Langmuir. 2011 Oct 4;27(19):12082-9. doi: 10.1021/la202190x. Epub 2011 Sep 9.

Abstract

Targeted delivery of magnetic iron oxide nanoparticles (IONPs) to a specific tissue can be achieved by conjugation with particular biological ligands on an appropriately functionalized IONP surface. To take best advantage of the unique magnetic properties of IONPs and to maximize their blood half-life, thin, strongly bonded, functionalized coatings are required. The work reported herein demonstrates the successful application of phosphonate-anchored self-assembled monolayers (SAMs) as ultrathin coatings for such particles. It also describes a new chemical approach to the anchoring of antibodies on the surface of SAM-coated IONPs (using nucleophilic aromatic substitution). This anchoring strategy results in stable, nonhydrolyzable, covalent attachment and allows the reactivity of the particles toward antibody binding to be activated in situ, such that prior to the activation the modified surface is stable for long-term storage. While the SAMs do not have the well-packed crystallinity of other such monolayers, their structure was studied using smooth model substrates based on an iron oxide layer on a double-side polished silicon wafer. In this way, atomic force microscopy, ellipsometry, and contact angle goniometry (tools that could not be applied to the nanoparticles' surfaces) could contribute to the determination of their monomolecular thickness and uniformity. Finally, the successful conjugation of IgG antibodies to the SAM-coated IONPs such that the antibodies retain their biological activity is verified by their complexation to a secondary fluorescent antibody.

摘要

通过将特定的生物配体与适当功能化的 IONP 表面结合,可以实现对特定组织的磁性氧化铁纳米粒子 (IONP) 的靶向递送。为了充分利用 IONP 的独特磁性并最大限度地延长其血液半衰期,需要薄而强结合的功能化涂层。本文所述的工作证明了磷酸酯锚定的自组装单分子层 (SAM) 作为此类粒子的超薄膜层的成功应用。它还描述了一种在 SAM 涂层的 IONP 表面上锚定抗体的新化学方法(使用亲核芳香取代)。这种锚固策略导致稳定的、不可水解的共价连接,并使颗粒对抗体结合的反应性能够原位激活,从而在激活之前,修饰表面对于长期储存是稳定的。虽然 SAM 没有其他此类单层那样的良好结晶度,但它们的结构使用基于双面抛光硅晶片上的氧化铁层的光滑模型基底进行了研究。通过这种方式,原子力显微镜、椭圆偏振术和接触角测角法(无法应用于纳米颗粒表面的工具)有助于确定其单分子厚度和均匀性。最后,通过将 IgG 抗体成功缀合到 SAM 涂层的 IONP 上,使得抗体保留其生物活性,通过它们与二级荧光抗体的复合物来验证。

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