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Synthesis, characterization, and modeling of novel bovine hemoglobin-based oxygen carriers.

机译:新型牛血红蛋白基氧气载体的合成,表征和建模。

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摘要

Second generation hemoglobin-based O2 carriers (HBOCs) are being developed with high O2 affinity (low P50) in order to suppress vasoconstriction elicited by over-oxygenating tissues, a problem associated with low O2 affinity first generation HBOCs. Two novel reactive dialdehydes were synthesized by ring-opening 2-chloroethyl-beta-D-fructopyranoside (2-CEFP) and 1-o-octyl-beta-D-glucopyranoside (1-OGP) at the 1,2-diol position, respectively, to yield novel Hb polymerizing reagents. High-affinity polymerized HBOCs were synthesized by reacting R-state bovine hemoglobin (bHb) with ring-opened 2-CEFP and 1-OGP at cross-linker to bHb molar ratios ranging from 10:1 to 30:1. The resulting polymerized bovine HBOCs (bHBOCs) displayed P 50s ranging from 7-18 mmHg, cooperativities ranging from 0.8-1.4, and methemoglobin (metHb) levels ranging from 3-10%. The cross-linking reaction also stabilized the third stepwise Adair coefficient for 1-OGP20, 1-OGP30, and 2-CEFP30. Additionally, the number-averaged molecular weight of each polymerized bHBOC was larger compared to bHb.;bHb was purified from bovine red blood cells (bRBCs) via anion exchange chromatography preceded by dialysis. Q Sepharose XL, a strong anion exchange resin, was found to have twice the binding capacity for bHb compared to three other anion exchange resins that were studied in this work. MetHb levels remained below 2% with bHb concentrations between 0.7 and 1.7 mM.;The effect that increasing the cross-linker to bHb molar ratio to 100:1 had on metHb levels and size distributions was further studied in detail. Purified bHb was found to elute from a size exclusion chromatography column as a dimer. bHBOCs synthesized with ring-opened 1-OGP and 2-CEFP each showed an increase in bHb species having both decreased and increased M w distributions compared to bHb as the ring-opened 1-OGP to bHb molar ratio increased. However, for bHBOCs synthesized with 2-CEFP, the Mw distributions at cross-linker to bHb molar ratios between 50:1 and 70:1 remained constant. Furthermore, bHBOCs synthesized with 2-CEFP created Mw species centered at 63.6 and 96 kDa, correlating to intact tetrameric bHb and tetrameric bHb bound to a bHb dimer, respectively.;Autoregulatory theory has been presented as a possible explanation for increased vasoconstriction observed in the transfusion of low-affinity HBOCs, where it is hypothesized that low-affinity HBOCs over-deliver O2 to tissues surrounding capillaries thereby eliciting vasoconstriction. An a priori model has been developed in which the performance of mixtures of acellular HBOCs (having P50s between 5 and 55 mmHg) and hRBCs has been simulated using a Krogh tissue cylinder model. At normoxic inlet pO2s, there was no correlation between O 2 flux out of the capillary and the O2 affinity of the HBOC. However, a correlation was found between the average pO2 tension in the capillary and the O2 affinity of the HBOC.
机译:正在开发具有高O2亲和力(低P50)的第二代基于血红蛋白的O2载体(HBOC),以抑制因组织过氧化而引起的血管收缩,这是与低O2亲和力的第一代HBOC相关的问题。通过在1,2-二醇位置开环2-氯乙基-β-D-果糖吡喃糖苷(2-CEFP)和1-o-辛基-β-D-吡喃葡萄糖苷(1-OGP)合成了两种新型反应性二醛,分别产生新型的Hb聚合试剂。高亲和力聚合的HBOC是通过R型牛血红蛋白(bHb)与开环的2-CEFP和1-OGP在交联剂与bHb的摩尔比为10:1至30:1的条件下反应而合成的。所得的聚合牛HBOC(bHBOC)的P 50为7-18 mmHg,协同作用为0.8-1.4,高铁血红蛋白(metHb)的水平为3-10%。交联反应还稳定了1-OGP20、1-OGP30和2-CEFP30的第三阶Adair系数。此外,与bHb相比,每种聚合的bHBOC的数均分子量都更大。bHb是在进行透析之前通过阴离子交换色谱法从牛红细胞(bRBC)中纯化得到的。 Q Sepharose XL(一种强阴离子交换树脂)与bHb的结合能力是本研究中研究的其他三种阴离子交换树脂的两倍。 MetHb水平保持在2%以下,并且bHb浓度在0.7至1.7 mM之间。进一步详细研究了将交联剂与bHb摩尔比提高至100:1对metHb水平和尺寸分布的影响。发现纯化的bHb从大小排阻色谱柱中以二聚体洗脱。与开环的1-OGP与bHb的摩尔比增加相比,用开环的1-OGP和2-CEFP合成的bHBOCs各自显示出bHb种类的增加,与bHb相比,Mw分布减少和增加。但是,对于用2-CEFP合成的bHBOC,交联剂与bHb摩尔比在50:1和70:1之间的Mw分布保持恒定。此外,用2-CEFP合成的bHBOCs产生了以63.6和96 kDa为中心的Mw物种,分别与完整的四聚体bHb和结合于bHb二聚体的四聚体bHb相关。;自调控理论已被提出作为可能的解释,可以观察到血管收缩的增加假设低亲和力的HBOCs输血时,低亲和力的HBOCs将O2过分输送到毛细血管周围的组织中,从而引起血管收缩。已开发出先验模型,其中已使用Krogh组织圆柱模型模拟了无细胞HBOC(P50在5至55 mmHg之间)和hRBC混合物的性能。在常氧入口pO2处,流出毛细管的O 2通量与HBOC的O2亲和力之间没有相关性。但是,在毛细管中的平均pO2张力与HBOC的O2亲和力之间存在相关性。

著录项

  • 作者

    Dimino, Michael Louis.;

  • 作者单位

    University of Notre Dame.;

  • 授予单位 University of Notre Dame.;
  • 学科 Engineering Biomedical.;Engineering Chemical.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 137 p.
  • 总页数 137
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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