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首页> 外文期刊>Nanoscale >ZIF-8 metal organic framework nanoparticle loaded with tense quaternary state polymerized bovine hemoglobin: potential red blood cell substitute with antioxidant properties
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ZIF-8 metal organic framework nanoparticle loaded with tense quaternary state polymerized bovine hemoglobin: potential red blood cell substitute with antioxidant properties

机译:ZIF-8金属有机骨架纳米颗粒负载紧张的四元态聚合牛血红蛋白:具有抗氧化特性的潜在红细胞替代品

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Due to several limitations associated with blood transfusion, such as the relatively short shelf life of stored blood, low risk of developing acute immune hemolytic reactions and graft-versus-host disease, many strategies have been developed to synthesize hemoglobin-based oxygen carriers (HBOCs) as universal red blood cell (RBC) substitutes. Recently, zeolite imidazole framework-8 (ZIF-8), a metal–organic framework, has attracted considerable attention as a protective scaffold for encapsulation of hemoglobin (Hb). Despite the exceptional thermal and chemical stability of ZIF-8, the major impediments to implementing ZIF-8 for Hb encapsulation are the structural distortions associated with loading large quantities of Hb in the scaffold as the Hb molecule has a larger hydrodynamic diameter than the pore size of ZIF-8. Therefore to reduce the structural distortion caused by Hb encapsulation, we established and optimized a continuous-injection method to synthesize nanoparticle (NP) encapsulated polymerized bovine Hb (PolybHb) using ZIF-8 precursors (ZIF-8P-PolybHb NPs). The synthesis method was further modified by adding EDTA as a chelating agent, which reduced the ZIF-8P-PolybHb NP size to <300 nm. ZIF-8P-PolybHb NPs exhibited lower oxygen affinity (36.4 ± 3.2 mm Hg) compared to unmodified bovine Hb, but was similar in magnitude to unencapsulated PolybHb. The use of the chemical cross-linker glutaraldehyde to polymerize bovine Hb resulted in the low Hill coefficient of PolybHb, indicating loss of Hb's oxygen binding cooperativity, which could be a limitation when using PolybHb as an oxygen carrier for encapsulation inside the ZIF-8 matrix. ZIF-8P-PolybHb NPs exhibited slower oxygen offloading kinetics compared to unencapsulated PolybHb, demonstrating successful encapsulation of PolybHb. ZIF-8P-PolybHb NPs also exhibited favorable antioxidant properties when exposed to H2O2. Incorporation of PolybHb into the ZIF-8 scaffold resulted in reduced cytotoxicity towards human umbilical vein endothelial cells compared to unloaded ZIF-8 NPs and ZIF-8 NPs loaded with bovine Hb. We envisage that such a monodisperse and biocompatible HBOC with low oxygen affinity and antioxidant properties may broaden its use as an RBC substitute.
机译:由于一些局限性与血液有关输血,如相对较短的架子上生活储存的血液,低风险的发展急性溶血反应和免疫移植物抗宿主病,许多策略开发合成hemoglobin-based氧载体体)作为普遍的血红细胞(RBC)的替代品。咪唑framework-8 (ZIF-8),有机配合框架,吸引了越来越多的关注作为一个保护支架的封装血红蛋白(Hb)。ZIF-8和化学稳定性,专业障碍实现ZIF-8 Hb封装结构扭曲与加载大量的Hb脚手架作为乙肝分子更大水动力直径比孔隙大小ZIF-8。失真引起的Hb封装,我们建立和优化连续注入方法合成纳米颗粒(NP)封装聚合牛Hb (PolybHb)使用ZIF-8前体(ZIF-8P-PolybHb NPs)。通过添加合成方法进一步修改EDTA为络合剂,减少了NPs表现出低氧亲和力(36.4±3.2毫米汞柱)与普通牛Hb相比,但是程度堪比未密封的PolybHb。使用化学交联戊二醛聚合牛Hb在希尔PolybHb系数低,指示Hb失去氧气绑定当协同,这可能是一个限制使用PolybHb作为氧载体封装在ZIF-8矩阵。ZIF-8P-PolybHb NPs氧上比较慢卸载比未密封的动力学PolybHb,展示成功的封装PolybHb。当接触到良好的抗氧化性能过氧化氢。支架导致降低细胞毒性人类脐静脉内皮细胞进行比较ZIF-8 NPs ZIF-8 NPs加载和卸载牛Hb。和生物相容性HBOC在低氧亲和力和抗氧化性能可能扩大使用加拿大皇家银行替代。

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