首页> 美国卫生研究院文献>Tissue Engineering. Part A >Biophysical Properties and Oxygenation Potential of High-Molecular-Weight Glutaraldehyde-Polymerized Human Hemoglobins Maintained in the Tense and Relaxed Quaternary States
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Biophysical Properties and Oxygenation Potential of High-Molecular-Weight Glutaraldehyde-Polymerized Human Hemoglobins Maintained in the Tense and Relaxed Quaternary States

机译:高分子量戊二醛聚合的人类血红蛋白的生物物理性质和氧化潜能维持在紧张和放松的第四级状态

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摘要

Recent clinical evaluation of commercial glutaraldehyde-polymerized hemoglobins (PolyHbs) as transfusion solutions has demonstrated several adverse side effects. Chief among these is the hypertensive effect. Fortunately, previous studies have shown that the hypertensive effect can be attenuated by removing free hemoglobin (Hb) and low-molecular-weight (low-MW) PolyHbs from the PolyHb mixture. In this work, polymerized human Hb (PolyhHb) solutions were synthesized in two distinct quaternary states with high MW and subjected to extensive diafiltration to remove free Hb and low-MW PolyhHb components (<500 kDa). The resultant PolyhHb solutions possessed high MW, distinct quaternary state, distinct reactivities with O2 and CO, similar NO deoxygenating rate constants, distinct autoxidation rate constants, high viscosity, and low colloid osmotic pressure. To preliminarily assess the ability of PolyhHb solutions to oxygenate surrounding tissues fed by a blood vessel, we evaluated the ability of PolyhHbs to transport O2 to cultured hepatocytes in a mathematical model of a hollow fiber bioreactor. The structure of individual hollow fibers in the bioreactor is similar to that of a blood vessel and provides an easy way to assess the oxygenation potential of PolyhHbs without the need for expensive and time-consuming animal studies. It was observed that PolyhHbs with low O2 affinities were more effective in oxygenating cultured hepatocytes inside the bioreactor than high O2 affinity PolyhHbs. Taken together, our results show that it is possible to synthesize high-MW PolyhHbs with no free Hb and low-MW PolyhHb components that are capable of transporting O2 to cultured cells/tissues.
机译:作为输注溶液的商业戊二醛聚合血红蛋白(PolyHbs)的最新临床评估表明了几种不良副作用。其中最主要的是高血压作用。幸运的是,以前的研究表明,可以通过从PolyHb混合物中去除游离的血红蛋白(Hb)和低分子量(low-MW)的PolyHb来减轻高血压的作用。在这项工作中,合成的人类Hb(PolyhHb)溶液以两个不同的四元态合成,具有高MW,并经过广泛的渗滤以除去游离的Hb和低MW的PolyhHb组分(<500 kDa)。所得的PolyhHb溶液具有高分子量,独特的四元态,与O2和CO的独特反应性,相似的NO脱氧速率常数,独特的自氧化速率常数,高粘度和低胶体渗透压。为了初步评估PolyhHb溶液充氧由血管喂养的周围组织的能力,我们在中空纤维生物反应器的数学模型中评估了PolyhHb将O2转运至培养的肝细胞的能力。生物反应器中单个中空纤维的结构类似于血管,并提供了一种简便的方法来评估PolyhHb的氧化潜力,而无需进行昂贵且费时的动物研究。观察到,与高O2亲和力的PolyhHbs相比,低O2亲和力的PolyhHb在氧合生物反应器内部培养的肝细胞方面更有效。综上所述,我们的结果表明,可以合成不含游离Hb的高分子量PolyhHb和能够将O2转运至培养细胞/组织的低分子量PolyhHb组分。

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