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首页> 外文期刊>Artificial cells, nanomedicine, and biotechnology. >Hemoglobin-albumin cluster: physiological responses after exchange transfusion into rats and blood circulation persistence in dogs
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Hemoglobin-albumin cluster: physiological responses after exchange transfusion into rats and blood circulation persistence in dogs

机译:血红蛋白 - 白蛋白聚类:在犬内交换输血后的生理反应和血液循环持久性

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摘要

A core-shell protein cluster comprising hemoglobin and human serum albumins, hemoglobin-albumin cluster (Hb-HSA(3)), was designed and synthesized for use as an artificial O-2 carrier and red blood cell (RBC) substitute. For initial preclinical safety evaluation of the Hb-HSA(3) solution, we observed blood compatibility in vitro, physiological responses after exchange transfusion into rats and blood circulation lifetime in dogs. Dilution of human whole blood with Hb-HSA(3) showed an appropriate decrease in blood cell number, proportional to the mixing volume ratio. Time courses in the circulation parameters and blood gas parameters after 20% exchange transfusion with Hb-HSA(3) in anesthetized rats were almost identical to those observed in a sham group (without infusion) and an HSA group (with HSA administration) for 6 h. Serum biochemical tests of the withdrawn blood indicated safety of the protein cluster. Furthermore, fluorescent Hb-HSA(3) was infused into beagle dogs to assess blood retention. Fluorescence measurements of the blood samples enabled us to ascertain the cluster half-life within the intravascular space. Histopathologic inspections of the vital organs imply no abnormality in tissues. All these results indicate sufficient initial preclinical safety of Hb-HSA(3) as an alternative material for use in RBC transfusion.
机译:设计并合成了包含血红蛋白和人血清蛋白(HB-HSA(3))的血红蛋白和人血清白蛋白(HB-HSA(3)),用作人造O-2载体和红细胞(RBC)替代品的核 - 壳蛋白簇。对于HB-HSA(3)溶液的初始临床前临床安全评估,我们观察到血液相容性,在狗的大鼠输血后的体外,生理反应。 HB-HSA(3)稀释人类全血,显示出血细胞数的适当降低,与混合体积比成比例。循环参数和血气参数的时间课程在20%交换输血后与HB-HSA(3)在麻醉大鼠中几乎相同,在假手术组(没有输注)和HSA组(与HSA管理)中观察到6 H。血清生化试验的撤回血液表明蛋白质簇的安全性。此外,荧光HB-HSA(3)注入比猎犬犬以评估血液保留。血液样本的荧光测量使我们能够确定血管内空间内的聚类半衰期。重要器官的组织病理学检查意味着组织中没有异常。所有这些结果表明HB-HSA(3)的足够初步的初步安全性,作为用于RBC输血的替代材料。

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