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Polymersome Encapsulated Hemoglobin (Peh): a Novel Type of Oxygen Carrier

机译:聚合物组包封的血红蛋白(PEH):一种新型氧载体类型

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Bovine hemoglobin (Hb) was encapsulated inside polymer vesicles (polymersomes) to form encapsulated Hb (PEH) dispersions. PEH particles are 100% surface PEGylated with longer PEG chains and thicker hydrophobic membranes as compared to conventional liposomes. Polymersomes were selfassembled from poly(butadiene)-poly(ethylene glycol) (PBD-PEO) amphiphilic diblock copolymers with PBD-PEO molecular weights of 22-12.6 kDa, 5-2.3 kDa, 2.5-1.3 kDa, and 1.8-0.9 kDa. The first two diblock copolymers possessed linear hydrophobic PBD blocks, while the later possessed branched PBD blocks. PEH dispersions were extruded through 100 and 200 nm pore radii membranes. The size distribution, Hb encapsulation efficiency, P50, cooperativity coefficient and methemoglobin (metHb) level of PEH dispersions are consistent with the values required for efficient oxygen delivery in the systemic circulation. The influence of different molecular weight diblock copolymers on the physical properties of PEH dispersions was analyzed. PBD-PEO copolymers with molecular weights of 22-12.6 kDa and 2.5-1.3 kDa completely dissolved in aqueous solution to form polymersomes, while the other two copolymers formed a mixture of solid copolymer precipitates and polymersomes. PEHs selfassembled from 22-12.6 kDa and 2.5-1.3 kDa PBD-PEO copolymers possessed Hb loading capacities greater than PEG-LEHs, PEGylated actin-containing LEHs, and non-modified LEHs, although their sizes were smaller and their hydrophobic membranes were thicker. The Hb loading capacities of these polymersomes were also higher than lipogel encapsulated hemoglobin particles and nanoscale hydrogel encapsulated hemoglobin particles. PEH dispersions exhibited average radii larger than 50 nm, and exhibited oxygen affinities comparable to human erythrocytes. Polymersomes did not induce Hb oxidation. The interaction between Hb and the membrane of 2.5-1.3 kDa PBD-PEO polymersomes improved the monodispersity of these particular PEH dispersions. These results suggest that PEHs could serve as efficient oxygen therapeutics.
机译:牛血红蛋白(Hb)被包封在聚合物囊泡(聚合物)内,形成包封的Hb(PEH)分散体。与常规脂质体相比,PEH颗粒用较长的PEG链和较厚的疏水性膜,与较长的PEG链和较厚的疏水性膜。聚合物从聚(丁二烯)-poly(乙二醇)(PBD-PEO)(PBD-PEO)两亲二嵌段共聚物自体叠叠,具有22-12.6kDa,5-2.3kDa,2.5-1.3kDa和1.8-0.9kDa的PBD-PEO分子量。前两种二嵌段共聚物具有线性疏水性PBD嵌段,而后来具有分支的PBD嵌段。将PEH分散体通过100和200nm孔径膜挤出。 PEH分散体的尺寸分布,Hb封装效率,P50,合作系数和甲基酚(甲基)水平与系统循环中有效氧输送所需的值一致。分析了不同分子量二嵌段共聚物对PEH分散体物理性质的影响。 PBD-PEO共聚物的分子量为22-12.6kDa和2.5-1.3kDa,完全溶解在水溶液中以形成聚合物,而另外两种共聚物形成固体共聚物沉淀物和聚合物的混合物。从22-12.6kDa和2.5-1.3 KDA PBD-PEO共聚物的PEHS具有大于PEG-LEH的HB加载能力,含有含有聚蛋白的致动蛋白的LEH和未改性的lehs,尽管它们的尺寸较小,并且它们的疏水膜较厚。这些聚合物的HB加载能力也高于Lipogel包封的血红蛋白颗粒和纳米级水凝胶包封的血红蛋白颗粒。 PEH分散体表现出大于50nm的平均半径,并表现出与人红细胞相当的氧亲态。聚合物未诱导Hb氧化。 HB与2.5-1.3kDA PBD-PEO聚合物的相互作用改善了这些特定PEH分散体的单反叠性。这些结果表明PEHS可以用作高效的氧气治疗方法。

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