Ding Bi-Sen, Dziubla Thomas, Shuvaev Vladimir V, Muro Silvia, Muzykantov Vladimir R
Department of Pharmacology, University of Pennsylvania School of Medicine, Philadelphia, PA 19104, USA.
Mol Interv. 2006 Apr;6(2):98-112. doi: 10.1124/mi.6.2.7.
Targeted drug delivery to endothelial cells lining the vascular lumen will provide effective, precise and safe therapeutic interventions for treatment of diverse disease conditions. Rational design of such drug delivery systems (DDS) includes the following intertwined tasks: 1) selection of proper target determinants on endothelial surfaces, such as cell adhesion molecules, ectopeptidases, or caveolar antigens; 2) production of affinity ligands useful for targeting, such as affinity peptides, antibodies, or their fragments; 3) selection and adopting of suitable delivery vehicles (such as liposomes or polymer nanocarriers); and 4) formulation of DDS with optimal targeting and therapeutic features. Important therapeutic features of DDS include: 1) sufficient targeting effectiveness, circulation time, and safety (i.e., lack of systemic and local adverse effects); 2) precise subcellular localization of drugs targeted to endothelial cells; and 3) adequate amplitude, kinetics, and duration of effects. This review utilizes examples of DDS-mediated interventions in vascular inflammation, oxidative stress, and thrombosis and analyzes them in an attempt to create design parameters that best regulate the pharmacological and therapeutic features of DDS that target endothelial cells.
将药物靶向递送至血管腔内衬的内皮细胞,将为多种疾病的治疗提供有效、精准且安全的治疗干预措施。此类药物递送系统(DDS)的合理设计包括以下相互交织的任务:1)选择内皮表面合适的靶向决定因素,如细胞黏附分子、外肽酶或小窝抗原;2)制备用于靶向的亲和配体,如亲和肽、抗体或其片段;3)选择并采用合适的递送载体(如脂质体或聚合物纳米载体);4)构建具有最佳靶向和治疗特性的DDS。DDS的重要治疗特性包括:1)足够的靶向有效性、循环时间和安全性(即无全身和局部不良反应);2)药物精准的亚细胞定位至内皮细胞;3)足够的作用幅度、动力学和持续时间。本综述利用DDS介导的血管炎症、氧化应激和血栓形成干预实例进行分析,试图创建能最佳调节靶向内皮细胞的DDS药理和治疗特性的设计参数。