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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Porosity and semipermeability of hemoglobin-loaded polymeric nanoparticles as potential blood substitutes.
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Porosity and semipermeability of hemoglobin-loaded polymeric nanoparticles as potential blood substitutes.

机译:载有血红蛋白的聚合物纳米颗粒的孔隙率和半渗透性可作为潜在的血液替代品。

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Porosity and semipermeability, allowing life-sustaining small molecules to penetrate, but hemoglobin (Hb) and other enzymes to cut off, predominantly affect the functionalities of the Hb-loaded polymeric nanoparticles (HbPNPs) as blood substitutes. In this article, HbPNPs formulated in the size range of 110-122 nm were prepared by a modified double-emulsion method with poly(lactic acid) (PLA)-based polymers. The influences of the main preparation conditions, including solvent composition, stirring speed, Hb concentration and polymer matrix, on the porosity were investigated in details. To evaluate the porosity of HbPNPs, a novel nondestructive testing method based on molecular weight cut-off (MWCO) was developed, and an effusion approach was applied to investigate the pore size in the particle shells with poly(ethylene glycol)s (PEGs) of different molecular weights (PEG200, PEG400, PEG600) as probes. Moreover, in vitro diffusion behaviors of ascorbic acid and reduced glutathione from HbPNPs fabricated with various polymer matrices were studied. The MWCO of HbPNPs by changing solvent composition, stirring speed, Hb concentration, and polymer composition varied from 200 to 600, especially the PEGylation of the polymer, which exhibited obvious influence on the MWCO of HbPNPs. Ascorbic acid with molecular weight 176.1 could diffuse into PEGylated nanoparticles with mPEG content of 5-30 wt % freely, while reduced glutathione with molecular weight 307.3 could not penetrate when mPEG content reached 30 wt %. These results suggest that the HbPNPs optimized with MWCO between 400 and 600 can facilitate the transport of all those life-sustaining small molecules.
机译:孔隙率和半渗透性允许维持生命的小分子渗透,但血红蛋白(Hb)和其他酶的截留作用主要影响作为血液替代品的Hb负载的聚合物纳米颗粒(HbPNP)的功能。在本文中,采用改进的双乳液法,以聚乳酸(PLA)为基础的聚合物制备了尺寸在110-122 nm之间的HbPNP。详细研究了溶剂组成,搅拌速度,Hb浓度和聚合物基体等主要制备条件对孔隙率的影响。为了评估HbPNPs的孔隙率,开发了一种基于分子量截止(MWCO)的新型无损检测方法,并采用渗流方法研究了聚乙二醇(PEGs)颗粒壳中的孔径不同分子量(PEG200,PEG400,PEG600)作为探针。此外,研究了抗坏血酸和还原型谷胱甘肽从各种聚合物基质制备的HbPNPs的体外扩散行为。 HbPNPs的MWCO随溶剂组成,搅拌速度,Hb浓度和聚合物组成的变化在200-600之间变化,尤其是聚合物的PEG化,这对HbPNPs的MWCO有明显的影响。分子量为176.1的抗坏血酸可以自由地扩散到mPEG含量为5-30 wt%的聚乙二醇化纳米颗粒中,而当mPEG含量达到30 wt%时,分子量为307.3的还原型谷胱甘肽不能渗透。这些结果表明,用MWCO在400至600之间优化的HbPNP可以促进所有这些维持生命的小分子的转运。

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