Laboratory of Bioactive Polymeric Materials for Biomedical and Environmental Application (BIOlab) UdR-INSTM Consortium Reference Center, University of Pisa, Via Livornese 1291, 56122 San Piero a Grado, Pisa, Italy.
Eur J Pharm Sci. 2011 May 18;43(1-2):57-64. doi: 10.1016/j.ejps.2011.03.010. Epub 2011 Apr 5.
In the present work polymeric nanoparticles based on Poly (maleic anhydride-alt-butyl vinyl ether) 5% grafted with m-PEG (2000) and 95% grafted with 2-methoxyethanol (VAM41-PEG) were loaded with human hemoglobin (Hb) and characterized from a physicochemical point of view. The assessment of structural and functional features of the loaded Hb was performed and the effect of the introduction of different reducing agents as aimed at minimizing Hb oxidation during the nanoparticles formulation process, was also investigated. Nanoparticles possessing an average diameter of 138±10 nm and physicochemical features suitable for this kind of application were successfully obtained. Although the oxidation of the protein was not avoided during its loading into nanoparticles, the presence of acidic moieties in the polymeric structure is proposed to be directly involved in the protein inactivation mechanism.
在本工作中,基于聚(马来酸酐-alt-正丁基乙烯醚)5%接枝甲氧基聚乙二醇(2000)和 95%接枝 2-甲氧基乙醇(VAM41-PEG)的聚合物纳米粒子被负载了人血红蛋白(Hb),并从物理化学的角度进行了表征。评估了负载 Hb 的结构和功能特性,并研究了引入不同还原剂的效果,目的是在纳米粒子制备过程中尽量减少 Hb 的氧化。成功获得了平均直径为 138±10nm 且具有适合此类应用的物理化学特性的纳米粒子。尽管在将蛋白质负载到纳米粒子中时不能避免其氧化,但聚合物结构中酸性基团被认为直接参与了蛋白质失活机制。