Shi Xiangyang, Majoros István J, Baker James R
Center for Biologic Nanotechnology, Department of Internal Medicine, University of Michigan, Ann Arbor, Michigan 48109, USA.
Mol Pharm. 2005 Jul-Aug;2(4):278-94. doi: 10.1021/mp0500216.
Multifunctional poly(amidoamine) (PAMAM) dendrimer-based nanodevices provide novel nanoplatforms for targeting, imaging, and treatment of cancers in vitro and in vivo. Generational, skeletal, and substitutional dispersities are always present in dendrimer-based medical nanodevices. Molecular distribution plays a central role for one to evaluate the quality of PAMAM materials for medical applications. Capillary electrophoresis (CE) has been extensively used as a characterization technique to analyze a range of PAMAM dendrimers, from simple PAMAM derivatives to complex multifunctional PAMAM nanodevices. This review reports the recent advances in the analysis and characterization of a variety of PAMAM dendrimer-based nanoparticles ranging from polycationic and polyanionic PAMAM derivatives to PAMAMs of different generations and defined substitutions, and to complex multifunctional PAMAM nanodevices containing targeting ligands, dyes, and drugs. Understanding the structural complexity of dendrimer nanodevices is crucial for their use as multifunctional imaging, targeting, and cancer therapeutic devices, as well as for their use in biosensing, diagnostics, and control of biological systems.
基于多功能聚(酰胺胺)(PAMAM)树枝状大分子的纳米器件为体外和体内癌症的靶向、成像和治疗提供了新型纳米平台。基于树枝状大分子的医学纳米器件中总是存在代数、骨架和取代分散性。分子分布对于评估用于医学应用的PAMAM材料的质量起着核心作用。毛细管电泳(CE)已被广泛用作一种表征技术,用于分析一系列PAMAM树枝状大分子,从简单的PAMAM衍生物到复杂的多功能PAMAM纳米器件。本综述报道了在分析和表征各种基于PAMAM树枝状大分子的纳米颗粒方面的最新进展,这些纳米颗粒包括聚阳离子和聚阴离子PAMAM衍生物、不同代数和特定取代的PAMAM,以及含有靶向配体、染料和药物的复杂多功能PAMAM纳米器件。了解树枝状大分子纳米器件的结构复杂性对于将其用作多功能成像、靶向和癌症治疗器件,以及用于生物传感、诊断和生物系统控制至关重要。