Li Dongxia, Hu Tao, Manjula Belur N, Acharya Seetharama A
Department of Physiology and Biophysics, Albert Einstein College of Medicine, Bronx, New York 10461, USA.
Biochim Biophys Acta. 2008 Oct;1784(10):1395-401. doi: 10.1016/j.bbapap.2008.03.014. Epub 2008 Apr 11.
High hydrodynamic volume, high viscosity and high colloidal osmotic pressure (COP) of PEGylated hemoglobin (Hb) have been suggested to neutralize the vasoactivity of acellular Hb. Consequences of non-conservative PEGylation (positive charge of the amino groups at the PEGylation sites is neutralized) using succinimidyl-ester of propionic acid PEG5K on the properties of PEGylated Hb have now been investigated. Non-conservative PEGylation of Hb leads to a much higher increase in the COP and viscosity of Hb than conservative extension arm facilitated (EAF) PEGylation of Hb. Introduction of alphaalpha-fumaryl crosslinking decreased the COP of non-conservative PEGylated Hb by stabilization of interdimeric interactions. Compared to the EAF-PEGylated alphaalpha-fumaryl Hb, non-conservative PEGylated product shows a comparable COP and higher viscosity. Conservative PEGylation of alphaalpha-fumaryl Hb by reductive alkylation chemistry does not increase the COP to this level, but enhanced the molecular volume and viscosity comparable to EAF-PEGylated product. Thus, the molecular properties of PEGylated Hb can be fine tuned using different PEGylation platforms and provide a unique opportunity for the design of second generation PEGylated Hbs.
聚乙二醇化血红蛋白(Hb)具有高流体力学体积、高粘度和高胶体渗透压(COP),这被认为可中和无细胞Hb的血管活性。现在已经研究了使用丙酸PEG5K的琥珀酰亚胺酯进行非保守聚乙二醇化(聚乙二醇化位点的氨基正电荷被中和)对聚乙二醇化Hb性质的影响。与保守的延伸臂促进(EAF)聚乙二醇化Hb相比,Hb的非保守聚乙二醇化导致Hb的COP和粘度有更高的增加。引入αα-富马酰交联通过稳定二聚体间相互作用降低了非保守聚乙二醇化Hb的COP。与EAF-聚乙二醇化αα-富马酰Hb相比,非保守聚乙二醇化产物显示出相当的COP和更高的粘度。通过还原烷基化化学对αα-富马酰Hb进行保守聚乙二醇化不会使COP增加到这个水平,但分子体积和粘度的增加与EAF-聚乙二醇化产物相当。因此,使用不同的聚乙二醇化平台可以微调聚乙二醇化Hb的分子性质,并为第二代聚乙二醇化Hb的设计提供独特的机会。