Eike Julie H, Palmer Andre F
Department of Chemical and Biomolecular Engineering, University of Notre Dame, Notre Dame, Indiana 46556, USA.
Biotechnol Prog. 2004 May-Jun;20(3):946-52. doi: 10.1021/bp0343155.
The US is about 1.5 days away from exhausting its entire blood supply. Hence, there is an urgent need for the development of universal blood substitutes. One such blood substitute is glutaraldehyde-polymerized bovine hemoglobin. Despite the commercial development of glutaraldehyde-polymerized bovine hemoglobin-based blood substitutes, there has been little published work on the effect of reaction conditions on the physical properties of the polymerized hemoglobin dispersion. In this study, the effect of varying the concentration of the quenching agent NaBH(4), glutaraldehyde concentration, and reaction time on the physical properties of PolyHb dispersions was studied by measuring the absolute molecular weight distribution, as well as oxygen-binding properties such as P(50), Hill coefficient, and methemoglobin level (MetHb) of these dispersions. Bovine hemoglobin was polymerized with glutaraldehyde using a parallel synthetic approach. Asymmetric flow field-flow fractionation (AFFF) coupled with multi-angle static light scattering (MASLS) was used to measure the absolute molecular weight distribution of the PolyHb dispersions. In general, high glutaraldehyde concentrations (20-30 times the molar concentration of hemoglobin) adversely affected the oxygen-binding properties of PolyHb dispersions, while NaBH(4) concentrations (up to 300 times the molar concentration of hemoglobin) and reaction times (up to 24 h) did not appear to have any effect on the oxygen-binding properties of PolyHb dispersions.
美国距离耗尽其全部血液供应大约还有1.5天。因此,迫切需要开发通用血液替代品。一种这样的血液替代品是戊二醛聚合牛血红蛋白。尽管基于戊二醛聚合牛血红蛋白的血液替代品已进行商业开发,但关于反应条件对聚合血红蛋白分散体物理性质影响的已发表研究很少。在本研究中,通过测量这些分散体的绝对分子量分布以及诸如P(50)、希尔系数和高铁血红蛋白水平(MetHb)等氧结合特性,研究了改变淬灭剂NaBH(4)浓度、戊二醛浓度和反应时间对聚血红蛋白(PolyHb)分散体物理性质的影响。使用平行合成方法将牛血红蛋白与戊二醛聚合。采用不对称流场-流分级法(AFFF)结合多角度静态光散射(MASLS)来测量PolyHb分散体的绝对分子量分布。一般来说,高戊二醛浓度(血红蛋白摩尔浓度的20 - 30倍)会对PolyHb分散体的氧结合特性产生不利影响,而NaBH(4)浓度(高达血红蛋白摩尔浓度的300倍)和反应时间(长达24小时)似乎对PolyHb分散体的氧结合特性没有任何影响。