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首页> 外文期刊>Transfusion: The Journal of the American Association of Blood Banks >Comparative assessment of normal and methoxypolyethylene glycol-modified murine red cells on swimming endurance and hippocampal injury in hypoxic mice.
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Comparative assessment of normal and methoxypolyethylene glycol-modified murine red cells on swimming endurance and hippocampal injury in hypoxic mice.

机译:正常和甲氧基聚乙二醇修饰的鼠红细胞对低氧小鼠游泳耐力和海马损伤的比较评估。

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BACKGROUND: Membrane grafting of methoxypolyethylene glycol (mPEG) provides a unique strategy in preventing the immunologic recognition in blood transfusion. mPEG-modified red blood cells (mPEG-RBCs) have acceptable in vitro properties and provide a useful solution to problems with clinical blood matching. The aim of this study was to demonstrate the physiologic normality of mPEG-RBCs in mice. STUDY DESIGN AND METHODS: Mouse RBCs were withdrawn via cardiac bleed and modified with 1.0 mmol per L mPEG with succinimidyl propionate linker. The fluorescein-labeled mPEG-RBCs were then transfused into recipient mice for in vivo survival analysis. At the same time, the exsanguine mouse model was produced, and mice were transfused with mPEG-RBCs. The effects of mPEG-RBC transfusion on the hemoglobin (Hb) level, swimming endurance capacity, and hypoxic-ischemic injury in hippocampal pyramidal cells of exsanguine mice were investigated. RESULTS: mPEG-RBCs showed the same in vivo survival curve and t((1/2)) as those of untreated RBCs. Transfusion of mPEG-RBCs could elevate Hb level of exsanguine mice and improve their swimming endurance capacity, and histologic studies showed that mPEG-RBCs could also restore the hypoxic-ischemic injury of hippocampal pyramidal cells in exsanguine mice, which were similar with control RBCs. That is, mPEG-RBCs functioned in a similar fashion to untreated RBCs in exsanguine mice. Therefore, these results revealed that mPEG-RBCs had normal oxygen-carrying capacity. CONCLUSION: In conclusion, the results confirmed that mPEG-RBCs could perform their in vivo function of carrying O(2) and improve some physiologic indexes of exsanguine mice, and the physiologic normality of mPEG-RBCs provides new findings for clinical use.
机译:背景:甲氧基聚乙二醇(mPEG)的膜移植为防止输血中的免疫学识别提供了独特的策略。 mPEG修饰的红细胞(mPEG-RBC)具有可接受的体外特性,可为临床血液匹配问题提供有用的解决方案。这项研究的目的是证明小鼠中mPEG-RBC的生理正常性。研究设计和方法:通过心脏出血抽出小鼠红细胞,并用每毫升mPEG和丙二酸琥珀酰亚胺基丙酸酯连接1.0毫摩尔修饰。然后将荧光素标记的mPEG-RBCs输运到受体小鼠体内进行体内存活分析。同时,产生了exsanguine小鼠模型,并用mPEG-RBCs输血了小鼠。研究了mPEG-RBC输注对exsanguine小鼠海马锥体细胞血红蛋白(Hb)水平,游泳耐力和缺氧缺血性损伤的影响。结果:mPEG-RBCs的体内存活曲线和t((1/2))与未处理的RBCs相同。输注mPEG-RBCs可以提高exsanguine小鼠的血红蛋白水平并提高其游泳耐力,组织学研究表明mPEG-RBCs还可以恢复exsanguine小鼠海马锥体细胞的缺氧缺血性损伤,与对照RBCs相似。即,mPEG-RBCs以与未处理的红血球小鼠中未经处理的RBCs相似的方式起作用。因此,这些结果表明,mPEG-RBC具有正常的携氧能力。结论:结论,结果证实mPEG-RBCs可以发挥其体内携带O(2)的功能并改善exsanguine小鼠的某些生理指标,并且mPEG-RBCs的生理正常性为临床使用提供了新的发现。

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