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聚乙二醇-聚丙交酯纳米尺寸人工红细胞在维持全身血红蛋白水平及预防高铁血红蛋白形成方面的分析

Analysis of polyethylene-glycol-polylactide nano-dimension artificial red blood cells in maintaining systemic hemoglobin levels and prevention of methemoglobin formation.

作者信息

Chang Thomas M S, Powanda Douglas, Yu W P

机构信息

Artificial Cells and Organs Research Centre, MSSS-FRSQ Research Group (equipe) on Blood Substitutes in Transfusion Medicine, Faculty of Medicine, McGill University, Montreal, Quebec, Canada.

出版信息

Artif Cells Blood Substit Immobil Biotechnol. 2003 Aug;31(3):231-47. doi: 10.1081/bio-120023155.

DOI:10.1081/bio-120023155
PMID:12906306
Abstract

We have recently reported our study on novel nano-dimension red blood cell (rbc) substitute based on ultrathin PEG-PLA membrane nanocapsules (80-150 nanometer diameter) containing hemoglobin (Hb) and enzymes. These have a markedly increased the circulation half-times as compared to our earlier PLA membrane nanocapsules. In the present study to be reported here, instead of looking at this from a pharmacodynamic point of view, we design the Hb nanocapsules from the point of view of transfusion medicine. For instance, the maximal levels of systemic non-red blood cell (rbc) Hb that can be attained after one infusion of 30% blood volume of 10 gm/dl Hb in the form of different types of PEG-PLA Hb nanocapsules or polyHb. Also the length of time one infusion can maintain a given systemic non-rbc hemoglobin Hb level. Of the two types of polyhemoglobins similar to those in clinical trials but prepared in this laboratory, the maximal levels of Hb reached were 3.35 gm/dl and 3.10 gm/dl respectively. The times for the hemoglobin level to fall to 1.67 gm/dl were 14 hours and 10. hours respectively, corresponding to 24 hours and 17 hours in human. The best PEG-PLA Hb nanocapsules are prepared using a combination of the following 4 factors: use of polymerized Hb, the use of higher M.W. PLA, the use of higher concentrations of PEG-PLA and the crosslinking of the newly formed PEG-PLA Hb nanocapsules. With this, the maximal non-rbc systemic Hb reached was 3.66 gm/dl and the time to reach 1.67 gm/dl was 24.2 hours, or 41.5 hours in human if extrapolated using the results obtained with polyHb in rats.

摘要

我们最近报道了一项关于基于超薄聚乙二醇-聚乳酸(PEG-PLA)膜纳米胶囊(直径80-150纳米)的新型纳米级红细胞(RBC)替代物的研究,这些纳米胶囊含有血红蛋白(Hb)和酶。与我们早期的聚乳酸膜纳米胶囊相比,它们的循环半衰期显著延长。在本研究中,我们不是从药效学角度来研究,而是从输血医学角度设计血红蛋白纳米胶囊。例如,以不同类型的PEG-PLA血红蛋白纳米胶囊或多聚血红蛋白形式输注相当于30%血容量、浓度为10克/分升的Hb后,所能达到的全身非红细胞血红蛋白(Hb)的最高水平。以及一次输注能够维持给定全身非红细胞血红蛋白(Hb)水平的时间长度。在本实验室制备的两种类似于临床试验中使用的多聚血红蛋白中,达到的Hb最高水平分别为3.35克/分升和3.10克/分升。血红蛋白水平降至1.67克/分升的时间分别为14小时和10小时,换算到人体相当于24小时和17小时。最佳的PEG-PLA血红蛋白纳米胶囊是通过以下4个因素的组合制备的:使用聚合血红蛋白、使用较高分子量的聚乳酸、使用较高浓度的PEG-PLA以及对新形成的PEG-PLA血红蛋白纳米胶囊进行交联。由此,达到的最高非红细胞全身Hb为3.66克/分升,降至1.67克/分升的时间为24.2小时,如果根据在大鼠中使用多聚血红蛋白获得的结果进行外推,在人体中则为41.5小时。

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