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The Reactivity of Polymersome Encapsulated Hemoglobin with Physiologically Important Gaseous Ligands: Oxygen Carbon Monoxide and Nitric Oxide

机译:氧气一氧化碳和一氧化氮:聚合物泡囊封装血红蛋白与生理上重要的气态配体反应

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摘要

Two distinct preparations of amphiphilic diblock copolymer vesicles (i.e. polymersomes), composed of (poly(ethylene oxide)-poly(butadiene)) (PEO-PBD), with molecular weights of 1.8 kDa and 10.4 kDa, offering different hydrophobic membrane thicknesses, were used to encapsulate the oxygen (O2) storage and transport protein hemoglobin (Hb) for possible application as a red blood cell (RBC) substitute. Key biophysical properties as well as the kinetics of polymersome encapsulated Hb (PEH) interaction with physiologically important gaseous ligands (O2, carbon monoxide and nitric oxide) were measured as a function of the hydrophobic membrane thickness of the PEH particle. Taken together, the results of this work show that PEHs exhibit biophysical properties and retarded ligand binding/release kinetics (compared to cell-free Hb), which are similar to the behavior of RBCs. Therefore, PEHs have the potential to serve as safe and efficacious RBC substitutes for use in transfusion medicine.
机译:由(聚(环氧乙烷)-poly(丁二烯))(PEO-PBD)组成的两种不同的两亲子二嵌段共聚物囊泡(即聚合物)的制剂,其中分子量为1.8kDa和10.4kDa,提供不同的疏水膜厚度用于将氧气(O2)储存和转运蛋白血红蛋白(HB)包封,以作为红细胞(RBC)替代品。作为PEH颗粒的疏水膜厚度测量与生理学上重要的气态配体(O2,一氧化碳和一氧化物)的聚合物封装HB(PEH)相互作用的关键生物物理学性质以及与生理学上的气态配体(O 2,一氧化碳和一氧化氮)的函数。在一起,该工作的结果表明,PEHs表现出生物物理性质和延迟配体结合/释放动力学(与无细胞Hb相比),其类似于RBC的行为。因此,PEH有可能作为用于输血药物的安全和有效的RBC替代品。

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