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金属有机框架封装血红蛋白作为高稳定和长循环的氧载体治疗失血性休克。

Metal-Organic Framework Encapsulating Hemoglobin as a High-Stable and Long-Circulating Oxygen Carriers to Treat Hemorrhagic Shock.

出版信息

ACS Appl Mater Interfaces. 2019 Oct 2;11(39):35604-35612. doi: 10.1021/acsami.9b15037. Epub 2019 Sep 19.

Abstract

As an oxygen-transporting protein, free hemoglobin (Hb) often suffers from the disadvantage of undesirable stability and short blood circulation, which severely impairs the potential clinical applications as the blood substitute. In this work, Hb was facilely encapsulated into a kind of metal-organic frameworks (MOFs) (ZIF-8) inspired by the natural biomineralization process. The obtained ZIF-8 encapsulating Hb (ZIF-8@Hb) showed the small hydrodynamic size of 180.8 nm and neutral zeta potential of -2.1 mV by adjusting the ratio of Hb in ZIF-8 frameworks. Intriguingly, Hb encapsulated by ZIF-8 exhibited significantly enhanced stability in alkaline, oxidation, high temperature, or enzymatic environment compared with free Hb because of the excellent protective MOF coatings. More importantly, the negative charge of Hb neutralized the original positive charge of ZIF-8, which led to the better biocompatibility, lower protein adsorption, and macrophage uptake of ZIF-8@Hb than bare ZIF-8 nanoparticles. Furthermore, ZIF-8@Hb displayed extended blood circulation with the elimination half-life of 13.9 h as well as reduced nonspecific distribution in normal organs compared with free Hb or ZIF-8 nanoparticles. With the above advantages, ZIF-8@Hb showed significantly extended survival time of mice in a disease model of hemorrhagic shock compared with free Hb or bare ZIF-8 nanoparticles. Overall, this work offers a high-stable and long-circulating oxygen carrier platform, which may find wide applications as a blood substitute to treat various oxygen-relevant diseases.

摘要

作为一种携氧蛋白,游离血红蛋白(Hb)通常因其稳定性差和血液循环时间短而受到不利影响,这严重限制了其作为血液代用品的潜在临床应用。在这项工作中,血红蛋白(Hb)通过模拟自然生物矿化过程被简便地封装到一种金属有机骨架(MOFs)(ZIF-8)中。通过调整 Hb 在 ZIF-8 骨架中的比例,得到的 ZIF-8 封装 Hb(ZIF-8@Hb)的水动力粒径为 180.8nm,表面zeta 电位为-2.1mV。有趣的是,与游离 Hb 相比,ZIF-8 封装的 Hb 由于具有优异的保护 MOF 涂层,在碱性、氧化、高温或酶环境下表现出显著增强的稳定性。更重要的是,Hb 的负电荷中和了 ZIF-8 的原始正电荷,这导致 ZIF-8@Hb 比裸露的 ZIF-8 纳米颗粒具有更好的生物相容性、更低的蛋白质吸附和巨噬细胞摄取。此外,ZIF-8@Hb 具有延长的血液循环半衰期(13.9h),与游离 Hb 或 ZIF-8 纳米颗粒相比,在正常器官中的非特异性分布减少。具有以上优势,ZIF-8@Hb 在失血性休克疾病模型中与游离 Hb 或裸露的 ZIF-8 纳米颗粒相比,显著延长了小鼠的存活时间。总之,这项工作提供了一个高稳定性和长循环的氧载体平台,可能作为治疗各种与氧相关疾病的血液代用品得到广泛应用。

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