Hashemi-Najafabadi Sameereh, Vasheghani-Farahani Ebrahim, Shojaosadati Seyed Abbas, Rasaee Mohammad Javad, Armstrong Jonathan K, Moin Mostafa, Pourpak Zahra
Biotechnology Group, Chemical Engineering Department, Tarbiat Modares University, Tehran, P. O. Box 14115-143, IR Iran.
Bioconjug Chem. 2006 Sep-Oct;17(5):1288-93. doi: 10.1021/bc060057w.
Alloimmunization to donor blood group antigens remains a significant problem in transfusion medicine. A proposed method to overcome donor-recipient blood group incompatibility is to mask the blood group antigens by the covalent attachment of poly(ethylene glycol) (PEG) to the red blood cell (RBC) membrane. Despite much work in the development of PEG-coating of RBCs, there is a paucity of data on the optimization of the PEG-coating technique; it is the aim of this study to determine the optimum conditions for PEG coating using a cyanuric chloride reactive derivative of methoxy-PEG as a model polymer. Activated PEG of molecular mass 5 kDa was covalently attached to human RBCs under various reaction conditions. Inhibition of binding of a blood-type specific antiserum (anti-D) was employed to evaluate the effect of the PEG-coating, quantified by hemocytometry and flow-cytometry. RBC morphology was examined by light and scanning electron microscopy. Statistical analysis of experimental design together with microscopy results showed that the optimum PEGylation conditions are pH = 8.7, temperature = 14 degrees C, and reaction time = 30 min. An optimum concentration of reactive PEG could not be determined. At high polymer concentrations (>25 mg/mL) a predominance of type III echinocytes was observed, and as a result, a concentration of 15 mg/mL is the highest recommended concentration for a linear PEG of molecular mass 5 kDa.
对供体血型抗原的同种免疫在输血医学中仍然是一个重大问题。一种克服供受体血型不相容的提议方法是通过将聚乙二醇(PEG)共价连接到红细胞(RBC)膜上来掩盖血型抗原。尽管在红细胞PEG包被的开发方面做了大量工作,但关于PEG包被技术优化的数据却很少;本研究的目的是使用甲氧基PEG的三聚氯氰反应性衍生物作为模型聚合物来确定PEG包被的最佳条件。在各种反应条件下,将分子量为5 kDa的活化PEG共价连接到人红细胞上。采用血型特异性抗血清(抗-D)结合抑制来评估PEG包被的效果,通过血细胞计数法和流式细胞术进行定量。通过光学显微镜和扫描电子显微镜检查红细胞形态。实验设计的统计分析以及显微镜结果表明,最佳聚乙二醇化条件为pH = 8.7、温度 = 14℃和反应时间 = 30分钟。无法确定反应性PEG的最佳浓度。在高聚合物浓度(>25 mg/mL)下,观察到III型棘状红细胞占优势,因此,对于分子量为5 kDa的线性PEG,15 mg/mL是推荐的最高浓度。