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Molecular Design Properties of OxyVita Hemoglobin, a New Generation Therapeutic Oxygen Carrier: A Review

机译:新一代治疗性氧气载体OxyVita血红蛋白的分子设计特性:综述。

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OxyVita Hb is a new generation hemoglobin based oxygen carrier (HBOC) produced through modification of a zero-linked polymerization mechanism using activators which incorporate cross-linked bovine tetramer hemoglobin into “super-polymeric” macromolecules (Average molecular weight = 17 MDa) for the purpose of oxygen delivery when whole blood or packed red cells are not available. This molecular design approach was generated in order to address several fundamental biochemical and physiological weaknesses of previous generations of HBOCs. Observation during pre-clinical and clinical studies provided evidence that these early generation acellular HBOCs were directly associated with loss of retention within the circulatory system, extravasation across endothelial tissue membranes due to their small molecular size leading to arterial and venous vasoconstriction with coupled increases in mean arterial pressure (MAP). The inherent increase in molecular size and structural stability of the OxyVita Hb is a direct response to addressing these serious weaknesses that have occurred during the evolution of HBOC development within the past two decades. The nature of the zero-linked synthetic route eliminates any chemical linkers remaining in the product, eliminating side reaction concerns, such as reversibility and decomposition due to weak chemical bonds, dependency on temperature and pressure, and residual toxicity
机译:OxyVita Hb是新一代的基于血红蛋白的氧气载体(HBOC),它是通过使用活化剂修改零连接聚合机理而生产的,该活化剂将交联的牛四聚体血红蛋白结合到“超聚合”大分子中(平均分子量= 17 MDa)。当无法获得全血或红细胞堆积时的氧气输送目的。产生这种分子设计方法是为了解决前几代HBOC的一些基本的生化和生理弱点。临床前和临床研究期间的观察提供了证据,这些早期无细胞HBOC与循环系统内滞留的丧失,分子大小小的内皮细胞膜外渗导致动脉和静脉血管收缩以及均值增加直接相关。动脉压(MAP)。 OxyVita Hb分子大小和结构稳定性的内在增加是对解决过去二十年来HBOC发展过程中出现的这些严重缺陷的直接反应。零链接合成路线的性质消除了产品中残留的任何化学连接基,消除了副反应问题,例如由于化学键弱而导致的可逆性和分解,对温度和压力的依赖性以及残留毒性

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