Centre for Blood Research, University of British Columbia, Vancouver, BC V6T 1Z3, Canada.
Biomaterials. 2012 Apr;33(10):3047-57. doi: 10.1016/j.biomaterials.2011.12.053. Epub 2012 Jan 18.
The in vivo circulation of hyperbranched polyglycerol (HPG) grafted red blood cells (RBCs) was investigated in mice. The number of HPG molecules grafted per RBC was measured using tritium labeled HPGs ((3)H-HPG) of different molecular weights; the values ranged from 1 × 10(5) to 2 × 10(6) molecules per RBC. HPG-grafted RBCs were characterized in vitro by measuring the electrophoretic mobility, complement mediated lysis, and osmotic fragility. Our results show that RBCs grafted with 1.5 × 10(5) HPG molecules per RBC having molecular weights 20 and 60 kDa have similar characteristics as that of control RBCs. The in vivo circulation of HPG-grafted RBCs was measured by a tail vain injection of (3)H-HPG60K-RBC in mice. The radioactivity of isolated RBCs, whole blood, plasma, different organs, urine and feces was evaluated at different time intervals. The portion of (3)H-HPG60K-RBC that survived the first day in mice (52%) remained in circulation for 50 days. Minimal accumulation radioactivity in organs other than liver and spleen was observed suggesting the normal clearance mechanism of modified RBCs. Animals gained normal weights and no abnormalities observed in necropsy analysis. The stability of the ester-amide linker between the RBC and HPG was evaluated by comparing the clearance rate of (3)H-HPG60K-RBC and PKH-26 lipid fluorescent membrane marker labeled HPG60K-RBCs. HPG modified RBCs combine the many advantages of a dendritic polymer and RBCs, and hold great promise in systemic drug delivery and other applications of functional RBC.
体内循环的超支化聚甘油(HPG)接枝红细胞(RBC)在小鼠进行了研究。用不同分子量的氚标记的 HPG((3)H-HPG)测量接枝到每个 RBC 的 HPG 分子的数量; 值范围从每个 RBC 1×10(5)到 2×10(6)个分子。通过测量电泳迁移率、补体介导的溶血和渗透脆性,对体外 HPG 接枝 RBC 进行了表征。我们的结果表明,每个 RBC 接枝 1.5×10(5)个分子量为 20 和 60 kDa 的 HPG 分子的 RBC 具有与对照 RBC 相似的特性。通过在小鼠尾静脉注射(3)H-HPG60K-RBC 测量 HPG 接枝 RBC 的体内循环。在不同时间间隔评估分离的 RBC、全血、血浆、不同器官、尿液和粪便的放射性。在小鼠体内存活第一天的(3)H-HPG60K-RBC 的部分(52%)在 50 天内保持循环。除肝和脾以外的器官中观察到最小的放射性积累,表明修饰 RBC 的正常清除机制。动物体重正常增加,尸检分析未见异常。通过比较(3)H-HPG60K-RBC 和 PKH-26 脂质荧光膜标记的 HPG60K-RBC 的清除率来评估 RBC 与 HPG 之间的酯酰胺键的稳定性。HPG 修饰的 RBC 结合了树枝状聚合物和 RBC 的许多优点,在系统药物输送和其他 RBC 功能应用中具有广阔的前景。