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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Simple method for preparing poly(ethylene glycol)-surface-conjugated liposome-encapsulated hemoglobins: Physicochemical properties, long-term storage stability, and their reactions with O_2, CO, and NO
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Simple method for preparing poly(ethylene glycol)-surface-conjugated liposome-encapsulated hemoglobins: Physicochemical properties, long-term storage stability, and their reactions with O_2, CO, and NO

机译:制备聚乙二醇表面共轭脂质体包裹的血红蛋白的简单方法:物理化学性质,长期存储稳定性及其与O_2,CO和NO的反应

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During the last few decades, liposome-encapsulated hemoglobin (LEH) dispersions have been investigated for use as red blood cell (RBC) substitutes. However, the process for formulating LEHs is cumbersome, and the composition of the lipid mixture is often complex. This work investigates a simple approach to formulating LEHs from a simple lipid mixture composed of high-phase-transition lipid distearoylphosphatidylcholine (DSPC) and cholesterol. To improve the circulation half-life and colloidal state of LEHs, the surfaces of unmodified LEHs were conjugated with poly(ethylene glycol) (PEG-LEHs). The results of this work show that PEG-LEH dispersions exhibited average diameters ranging from 166 to 195 nm that were colloidally stable for 4 to 5 months, hemoglobin (Hb) concentrations ranging from 9.6 to 14 g/dL, methemoglobin levels of less than 1%, oxygen affinities (i.e., P_(50) values) ranging from 20 to 23 mm Hg, and cooperativity coefficients ranging from 1.4 to 2.2. The reactions of PEG-LEHs with physiologically important ligands, such as oxygen (O_2), carbon monoxide (CO), and nitric oxide (NO), were also measured. It was observed that PEG-LEHs and RBCs exhibited retarded gaseous ligand binding/release kinetics compared to that of acellular Hb's. This result provides important insight into the pivotal role that the intracellular diffusion barrier plays in the transport of gases into and out of these structures. Collectively, our results demonstrate that the PEG-LEH dispersions prepared in this study show good potential as an RBC substitute.
机译:在过去的几十年中,脂质体包裹的血红蛋白(LEH)分散体已被研究用作红细胞(RBC)的替代品。然而,配制LEH的过程很麻烦,并且脂质混合物的组成通常很复杂。这项工作研究了一种简单的方法,可以从由高相转变脂质二硬脂酰磷脂酰胆碱(DSPC)和胆固醇组成的简单脂质混合物中配制LEH。为了改善LEH的循环半衰期和胶体状态,将未修饰的LEH的表面与聚乙二醇(PEG-LEH)偶联。这项工作的结果表明,PEG-LEH分散体的平均直径为166至195 nm,在4至5个月内胶体稳定,血红蛋白(Hb)浓度为9.6至14 g / dL,高铁血红蛋白水平小于1 %,氧亲和力(即,P_(50)值)为20至23mm Hg,合作系数为1.4至2.2。还测量了PEG-LEH与生理上重要的配体(如氧(O_2),一氧化碳(CO)和一氧化氮(NO))的反应。观察到,与无细胞血红蛋白相比,PEG-LEHs和RBCs表现出延迟的气态配体结合/释放动力学。该结果为细胞内扩散屏障在气体进出这些结构的运输中所起的关键作用提供了重要的见识。总的来说,我们的结果表明,在这项研究中制备的PEG-LEH分散体具有作为RBC替代品的良好潜力。

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