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首页> 外文期刊>Transfusion: The Journal of the American Association of Blood Banks >Evaluation of riboflavin photochemical treatment for inactivation of HCT116 tumor cells mixed in simulative intraoperative salvage blood
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Evaluation of riboflavin photochemical treatment for inactivation of HCT116 tumor cells mixed in simulative intraoperative salvage blood

机译:核黄素光化学治疗对血液术术术后血液中HCT116肿瘤细胞失活的评价

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摘要

BACKGROUND Radiation and filtration have achieved satisfactory results in inactivation or removal of tumor cells mixed in salvage blood, but some drawbacks remain. This study evaluated the inactivation on HCT116 cells mixed in simulative salvage blood by riboflavin photochemical treatment. METHODS HCT116 cells were added to the whole blood to simulate contaminated salvaged blood. The mixed blood was added with riboflavin of 50?μmol/L final concentration and illuminated by ultraviolet light. The samples were divided into control group and Experimental Groups 1 (18?J/cm 2 ), 2 (23.4 J/cm 2 ), and 3 (28.8 J/cm 2 ). An autotransfusion system (Cell Saver Elite, Haemonetics) was used to simulate the intraoperative blood salvage procedure to deal with whole blood. The apoptosis rate and tumorigenicity of HCT116 cells and the superimposed damage to red blood cells (RBCs) were evaluated. RESULTS The apoptosis rates of HCT116 in Experimental Groups 1, 2, and 3 were much higher than that in the control group. Tumor growth was found in the control group, but no tumor growth was found in the three experimental groups. The hemolysis rates in the three experimental groups were significantly higher than that in the control group, but much lower than the quality standard of RBCs at the end of preservation. The concentration of adenosine triphosphate in RBCs was comparable in the control and experimental groups. CONCLUSION Riboflavin at a 50?μmol/L final concentration and 18?J/cm 2 ultraviolet illumination can effectively inactivate HCT116 cells in salvaged blood, with minimum damage to the structure and function of RBCs, and the main quality indexes of salvaged RBCs were within the standard range.
机译:背景技术辐射和过滤达到了令人满意的导致灭活或去除拯救血液中混合的肿瘤细胞,但仍然存在一些缺点。本研究评估了通过核黄素光化学处理在模拟救生中混合的HCT116细胞的失活。方法将HCT116细胞加入到全血中以模拟污染的营销血液。将混合血液加入到50Ωμmol/ L最终浓度的核黄素,并通过紫外光照射。将样品分为对照组,实验组1(18〜J / cm 2),2(23.4J / cm 2)和3(28.8J / cm 2)。自动反弹系统(Cell Saver Elite,Haemonetics)用于模拟术中血液挽救程序以处理全血。评估了HCT116细胞的凋亡率和致瘤性和对红细胞(RBC)的叠加损伤。结果实验组1,2和3中HCT116的凋亡率远高于对照组的凋亡率。在对照组中发现肿瘤生长,但在三个实验组中没有发现肿瘤生长。三个实验组中的溶血率明显高于对照组,但远端低于RBC的质量标准。 RBC中腺苷三磷酸的浓度在对照和实验组中相当。结论50Ωμmol/ l最终浓度和18〜j / cm 2紫外线的核黄素可以有效地在拯救血液中灭活HCT116细胞,对RBC的结构和功能的最小损害,并在内部销售RBC的主要质量指标标准范围。

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    The Medical School of Chinese PLABeijing China;

    Department of Blood TransfusionFirst Medical Center of Chinese PLA General HospitalBeijing China;

    Department of Blood TransfusionFirst Medical Center of Chinese PLA General HospitalBeijing China;

    Department of Blood TransfusionFirst Medical Center of Chinese PLA General HospitalBeijing China;

    Department of Blood TransfusionFirst Medical Center of Chinese PLA General HospitalBeijing China;

    Department of Blood TransfusionFirst Medical Center of Chinese PLA General HospitalBeijing China;

    The Medical School of Chinese PLABeijing China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 治疗学;
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