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Carboxylated nanodiamonds inhibit gamma-irradiation damage of human red blood cells

机译:羧酸盐纳米金刚石抑制人类红细胞的辐照损伤

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Nanodiamonds when carboxylated (cNDs) act as reducing agents and hence could limit oxidative damage in biological systems. Gamma (gamma)-irradiation of whole blood or its components is required in immunocompetent patients to prevent transfusion-associated graft versus host disease (TA-GVHD). However, gamma-irradiation of blood also deoxygenates red blood cells (RBCs) and induces oxidative damage, including abnormalities in cellular membranes and hemolysis. Using atomic force microscopy (AFM) and Raman spectroscopy, we examined the effect of cNDs on gamma-irradiation mediated deoxygenation and morphological damage of RBCs. gamma-Radiation induced several morphological phenotypes, including stomatocytes, codocytes and echinocytes. While stomatocytes and codocytes are reversibly damaged RBCs, echinocytes are irreversibly damaged. AFM images show significantly fewer echinocytes among cNDtreated gamma-irradiated RBCs. The Raman spectra of gamma-irradiated RBCs had more oxygenated hemoglobin patterns when cND-treated, resembling those of normal, non-irradiated RBCs, compared to the non-cND-treated RBCs. cND inhibited hemoglobin deoxygenation and morphological damage, possibly by neutralizing the free radicals generated during gamma-irradiation. Thus cNDs have the therapeutic potential to preserve the quality of stored blood following gamma-irradiation.
机译:纳米金刚石在羧酸盐(cnd)充当减少代理,因此可能会限制氧化损伤的生物系统。γ-射线全血或其在免疫活性的组件是必需的病人防止transfusion-associated贪污与宿主病(TA-GVHD)。γ辐照血液也去氧红色红细胞(红血球)和诱导氧化损伤,包括在细胞膜和异常溶血。和拉曼光谱,我们检查的影响cnd辐照介导脱氧红血球和形态学损伤。引起一些形态学表型,包括stomatocytes codocytes和echinocytes。红细胞表面可逆受损,echinocytes不可逆转的损坏。显著减少echinocytes cNDtreated之一gamma-irradiated红血球。gamma-irradiated红细胞表面有更多的氧气当cND-treated血红蛋白模式,类似正常的红细胞表面non-irradiated相比non-cND-treated红血球。血红蛋白脱氧和形态损坏,可能通过中和自由在辐照自由基生成。cnd保存有治疗潜力存储后血液的质量γ辐照。

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