Clerc Y, Dubos M, Bihoreau N, Delamourd L, Brasseur C, Gond B, Goyffon M, Saint-Blancard J
Appl Biochem Biotechnol. 1987 Apr;14(3):241-51. doi: 10.1007/BF02800311.
Glutaraldehyde hemoglobin polymerization gives too many high polymers, resulting in a too viscous solution. We describe here an alternate method leading to superior results, as compared to the classical one. This method includes a molecular fractionation step using a tangential flow ultrafiltration that secondarily lowers the unpolymerized tetramer's content of a mildly polymerized, pyridoxylated hemoglobin solution (Pyr-Poly Hb). This leads to an adequately polymerized product with a lesser high polymer content, implying a lower viscosity. We thus obtain a pyridoxylated, polymerized molecular fractionated solution presenting suitable features as a blood substitute: A 7.5 g% hemoglobin 2 g% albumin solution had a 16% unpolymerized tetramer's ratio, a 1.8 mPas viscosity, a P50 of 2.8 kPa, a Hill coefficient of 2.1, a binding coefficient of 1.3 mL/g, a colloid osmotic pressure of 2.4 kPa, and a methemoglobin concentration of 3% Male-Sprague-Dawley rats undergoing an isovolumic blood exchange with this Pyr-Poly Hb solution, down to a 2% hematocrit, present a mean survival time of 20 h.
戊二醛血红蛋白聚合会产生过多的高聚物,导致溶液过于黏稠。我们在此描述一种与传统方法相比能产生更好结果的替代方法。该方法包括一个使用切向流超滤的分子分级步骤,这一步骤能进一步降低轻度聚合的、吡哆醛化血红蛋白溶液(Pyr-Poly Hb)中未聚合的四聚体含量。这会得到一种聚合程度合适、高聚物含量较少且黏度较低的产物。因此,我们得到了一种吡哆醛化、聚合的分子分级溶液,它具有作为血液替代品的合适特性:一种含7.5 g%血红蛋白和2 g%白蛋白的溶液,其未聚合四聚体比例为16%,黏度为1.8 mPas,P50为2.8 kPa,希尔系数为2.1,结合系数为1.3 mL/g,胶体渗透压为2.4 kPa,高铁血红蛋白浓度为3%。用这种Pyr-Poly Hb溶液对雄性Sprague-Dawley大鼠进行等容血液置换,使血细胞比容降至2%,其平均存活时间为20小时。