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Oxidation and haem loss kinetics of poly(ethylene glycol)-conjugated haemoglobin (MP4): dissociation between in vitro and in vivo oxidation rates

机译:聚乙二醇-共轭血红蛋白(MP4)的氧化和血红素丧失动力学:体内和体外氧化速率之间的解离

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摘要

Haemoglobin-based oxygen carriers can undergo oxidation of ferrous haemoglobin into a non-functional ferric form with enhanced rates of haem loss. A recently developed human haemoglobin conjugated to maleimide-activated poly(ethylene glycol), termed MP4, has unique physicochemical properties (increased molecular radius, high oxygen affinity and low cooperativity) and lacks the typical hypertensive response observed with most cell-free haemoglobin solutions. The rate of in vitro MP4 autoxidation is higher compared with the rate for unmodified SFHb (stroma-free haemoglobin), both at room temperature (20–22 °C) and at 37 °C (P<0.001). This appears to be attributable to residual catalase activity in SFHb but not MP4. In contrast, MP4 and SFHb showed the same susceptibility to oxidation by reactive oxygen species generated by a xanthine–xanthine oxidase system. Once fully oxidized to methaemoglobin, the rate of in vitro haem loss was five times higher in MP4 compared with SFHb in the fast phase, which we assign to the β subunits, whereas the slow phase (i.e. haem loss from α chains) showed similar rates for the two haemoglobins. Formation of MP4 methaemoglobin in vivo following transfusion in rats and humans was slower than predicted by its first-order in vitro autoxidation rate, and there was no appreciable accumulation of MP4 methaemoglobin in plasma before disappearing from the circulation. These results show that MP4 oxidation and haem loss characteristics observed in vitro provide information regarding the effect of poly(ethylene glycol) conjugation on the stability of the haemoglobin molecule, but do not correspond to the oxidation behaviour of MP4 in vivo.
机译:基于血红蛋白的氧气载体可将血红蛋白亚铁氧化为无功能的铁形式,并增加血红素流失率。与马来酰亚胺活化的聚乙二醇偶联的最近开发的人类血红蛋白称为MP4,具有独特的理化性质(分子半径增加,高氧亲和力和低协同性),并且缺乏在大多数无细胞血红蛋白溶液中观察到的典型高血压反应。在室温(20–22°C)和37°C(P <0.001)时,体外MP4自氧化的速率均高于未修饰的SFHb(无基质血红蛋白)的速率。这似乎归因于SFHb中的残留过氧化氢酶活性,而不是MP4。相反,MP4和SFHb对黄嘌呤-黄嘌呤氧化酶系统产生的活性氧的氧化敏感性相同。一旦被完全氧化成血红蛋白,MP4的体外血红素损失率是快速阶段的SFHb的五倍,这是我们将其分配给β亚基的快相,而慢速阶段(即α链的血红素损失)的发生率相似两个血红蛋白。在大鼠和人体内输注后,体内MP4血红蛋白的形成比其一级体外自氧化率所预测的要慢,并且血浆中没有明显的MP4血红蛋白积聚,然后从循环中消失。这些结果表明,体外观察到的MP4氧化和血红素损失特性提供了有关聚(乙二醇)共轭对血红蛋白分子稳定性的影响的信息,但与体内MP4的氧化行为不符。

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