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首页> 外文期刊>Biotechnology Progress >Oxidized mono-, Di-, Tri-, and polysaccharides as potential hemoglobin cross-linking reagents for the synthesis of high oxygen affinity artificial blood substitutes
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Oxidized mono-, Di-, Tri-, and polysaccharides as potential hemoglobin cross-linking reagents for the synthesis of high oxygen affinity artificial blood substitutes

机译:氧化的单糖,二糖,三糖和多糖可作为潜在的血红蛋白交联剂,用于合成高氧亲和力的人工血液替代品

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Various oxidized mono/di/tri/poly saccharides were studied as potential hemoglobin (Hb) cross-linkers in order to produce oxygen carriers with high oxygen affinities (low P-50'S) and high molecular weights (therefore lower macromolecular diffusivities compared to tetrameric Hb). Such physical properties were desired to produce polymerized hemoglobins (PolyHbs) with oxygen release profiles similar to that of human blood, as was demonstrated in work by Winslow (1). In this present study, bovine hemoglobin was cross-linked with a variety of oxidized (ring-opened) saccharides, which resulted in cross-linked Hb species ranging in size from 64 to 6400 kDa (depending on the particular oxidized saccharide used in the reaction) and P-50's ranging from 6 to 15 mmHg. A parallel synthetic approach was used to synthesize these carbohydrate-hemoglobin conjugates, and asymmetric flow field-flow fractionation (AFFF) coupled with multi-angle static light scattering (MASLS) was used to measure the absolute molecular weight distribution of these PolyHb dispersions. Cross-linking reactions were conducted at two pHs (6 and 8), with larger cross-linked Hb species produced at pH 8 (where hydrolysis was most likely to occur between glycosidic bonds linking adjacent saccharide rings) rather than at pH 6. The largest molecular weight species formed from these reactions consisted of Hb cross-linked with ring-opened lactose, maltose, methylglucopyranoside, sucrose, trehalose, and 15 kDa and 71 kDa dextran at high pH (pH 8). The most promising Hb cross-linker was methylglucopyranoside, which resulted in very large cross-linked Hb species, with low P-50's and lower methemoglobin (metHb) levels compared to the other Hb cross-linking reagents.
机译:研究了各种氧化的单/二/三/多糖多糖作为潜在的血红蛋白(Hb)交联剂,以生产具有高氧亲和力(低P-50'S)和高分子量(因此与四聚体Hb相比较低的大分子扩散性)的氧载体)。温斯洛(1)在工作中证明,需要这样的物理性质来产生聚合的血红蛋白(PolyHbs),其氧释放曲线与人血相似。在本研究中,牛血红蛋白与各种氧化的(开环的)糖类交联,这导致交联的Hb种类大小在64至6400 kDa之间(取决于反应中使用的特定氧化糖类) )和P-50,范围从6到15 mmHg。使用平行合成方法合成这些碳水化合物-血红蛋白共轭物,并使用不对称流场流分馏(AFFF)和多角度静态光散射(MASLS)来测量这些PolyHb分散体的绝对分子量分布。交联反应在两个pH值(6和8)下进行,在pH 8(在连接相邻糖环的糖苷键之间最有可能发生水解)而不是pH 6下产生更大的Hb交联物种。由这些反应形成的分子量种类包括在高pH(pH 8)下与开环乳糖,麦芽糖,甲基吡喃葡萄糖苷,蔗糖,海藻糖和15 kDa和71 kDa葡聚糖交联的Hb。最有希望的Hb交联剂是甲基吡喃葡萄糖苷,与其他Hb交联剂相比,它产生了非常大的交联Hb种类,具有低的P-50和较低的高铁血红蛋白(metHb)水平。

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