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Flow dynamics binding and detachment of spherical carriers targeted to ICAM-1 on endothelial cells

机译:靶向ICAM-1的球形载体在血管内皮细胞上的流动动力学结合和分离

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摘要

Vascular drug delivery by administration of carriers targeted to endothelial surface determinants, such as intercellular adhesion molecule (ICAM-1), holds considerable promise to improve disease treatment. As a model to define elusive factors controlling the interplay between carrier motion in the bloodstream and its interactions with molecular targets in the endothelial wall, we used 1 µm beads coated with ICAM-1 monoclonal antibody (Ab) at 370, 1100 or 4100 Ab/µm2. Carriers were perfused at two shear rates over resting or activated endothelial cells, expressing minimum vs. maximum ICAM-1 levels, to determine carrier rolling, binding and detachment. Even at 0.1 Pa and 4100 Ab/µm2, carriers attached only to activated cells (21 fold increase over resting cells), ideal for specific drug targeting to sites of pathology. Binding was increased by raising the Ab surface density on the carrier, e.g., 59.4 ± 11.1% increase for carriers having 4100 vs. 1100 Ab/µm2, as a consequence of decreased rolling velocity. Carrier binding was stable even under a high shear stress: carriers with 1100 and 4100 Ab/µm2 withstand shear stress over 3 Pa without detaching from the cells. This is further supported by theoretical modeling. These results will guide vascular targeting of drug carriers via rational design of experimentally tunable parameters.
机译:通过施用靶向内皮表面决定簇的载体,例如细胞间粘附分子(ICAM-1),可以进行血管药物递送,有望改善疾病治疗。作为定义难以控制的因素的模型,我们控制血液中载体运动与其与内皮壁分子靶标之间的相互作用之间的相互作用,我们使用了涂有ICAM-1单克隆抗体(Ab)的1 µm磁珠,其370、1100或4100 Ab / µm 2 。在静止或激活的内皮细胞上以两种剪切速率灌注载体,表达最小与最大ICAM-1水平,以确定载体的滚动,结合和分离。即使在0.1 Pa和4100 Ab / µm 2 的条件下,载体也仅附着在活化细胞上(比静止细胞增加21倍),非常适合将特定药物靶向病理部位。通过提高载体上的Ab表面密度,可以提高结合力,例如,由于滚动速度降低,具有4100和1100 Ab / µm 2 的载体的结合强度提高了59.4±11.1%。即使在高剪切应力下,载体的结合也是稳定的:1100和4100 Ab / µm 2 的载体在3 Pa的压力下仍能承受剪切应力而不会脱离细胞。理论建模进一步支持了这一点。这些结果将通过合理设计实验可调参数来指导药物载体的血管靶向。

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