Shukoor Mohammed Ibrahim, Tahir Muhammad Nawaz, Schladt Thomas, Tremel Wolfgang, Zhang Zhiqun, Wang Kevin K, Kobeissy Firas H
Institut für Anorganische Chemie und Analytische Chemie, Johannes Gutenberg-Universität Mainz, Mainz, Germany.
Methods Mol Biol. 2011;790:203-14. doi: 10.1007/978-1-61779-319-6_16.
Smart multifunctional magnetic nanoparticles are popular candidates for several biological applications owing to their intrinsic magnetic property and diverse applications that range from rare protein separation and biomedical utilization to cancer therapy and diagnostics. A universal protocol, for the development of such nanocarriers, is highly desirable for scientists with different backgrounds so that custom-made multifunctional nanoparticles can be developed to address their needs, among which are the superparamagnetic iron oxide and manganese oxide nanoparticles that are synthesized through high temperature decomposition reactions. However, an interface is needed to present these inorganic materials to biomolecules to enhance their application for different biological use. This compatibility is achieved by introducing a class of multifunctional copolymers. Magnetic nanoparticles are elaborately decorated with copolymers that carry three principle functionalities as follows: (1) dopamine moieties for surface anchorage of metal oxides; (2) dyes for optical detection; and (3) a large variety of functional molecules such as amines or carboxylates for conjugation of various biomolecules (i.e., proteins, nucleic acids, enzymes, etc.). These copolymers, in combination with nanoparticles, serve as a tool box that results in engineered nanotools with customized modifications and functionalities for applications in fields ranging from proteomics -bioseparation to tumor therapy.
智能多功能磁性纳米粒子因其固有的磁性以及从稀有蛋白质分离、生物医学利用到癌症治疗与诊断等广泛应用,成为多种生物应用的热门候选材料。对于不同背景的科学家而言,开发此类纳米载体的通用方案极为必要,如此便能开发出定制的多功能纳米粒子以满足他们的需求,其中包括通过高温分解反应合成的超顺磁性氧化铁和氧化锰纳米粒子。然而,需要一个界面将这些无机材料呈现给生物分子,以增强其在不同生物用途中的应用。通过引入一类多功能共聚物可实现这种兼容性。磁性纳米粒子用具有以下三种主要功能的共聚物精心修饰:(1)用于金属氧化物表面锚固的多巴胺部分;(2)用于光学检测的染料;(3)用于各种生物分子(即蛋白质、核酸、酶等)共轭的多种功能分子,如胺或羧酸盐。这些共聚物与纳米粒子相结合,充当一个工具箱,从而产生具有定制修饰和功能的工程化纳米工具,用于从蛋白质组学 - 生物分离到肿瘤治疗等领域的应用。