RSR13,一种合成的血红蛋白变构调节剂,作为放疗的辅助:EMT6细胞和小鼠肿瘤及正常组织的初步研究

S Rockwell, M Kelley
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引用次数: 23

摘要

rsr13,2[4-[[(3,5二甲基苯基)羰基]甲基]苯氧基]-2-甲基丙酸是一种合成的血红蛋白变构改性剂,可降低血红蛋白对氧的亲和力。本文报道的实验研究了RSR13联合氧气呼吸治疗对BALB/c小鼠EMT6乳腺肿瘤和两种正常组织辐射反应的影响。RSR13加氧呼吸增加了EMT6肿瘤对辐照的反应。RSR13对因氮窒息而极度缺氧的肿瘤没有明显的作用,对EMT6肿瘤没有明显的细胞毒性作用,在有氧或缺氧条件下对体外EMT6细胞的活力或辐射反应没有影响。因此,RSR13的作用反映了肿瘤氧合的变化,而不是药物的直接细胞毒性或放射增敏作用。RSR13加氧气将缺氧比例从呼吸空气和呼吸氧气的小鼠的24%降低到9%。RSR13加氧治疗没有改变骨髓祖细胞(CFU-S)的辐射反应或皮肤的急性辐射反应。RSR13加氧治疗对肿瘤放射反应的改善,再加上正常组织中没有增强的放射反应,支持了RSR13作为放疗辅助的进一步测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
RSR13, a synthetic allosteric modifier of hemoglobin, as an adjunct to radiotherapy: preliminary studies with EMT6 cells and tumors and normal tissues in mice.

RSR13, 2[4-[[(3,5dimethylanilino)carbonyl]methyl]phenoxy]-2-methylpropion ic acid, a synthetic allosteric modifier of hemoglobin, reduces the affinity of hemoglobin for oxygen. The experiments reported here examined the effect of treatment with RSR13, combined with oxygen breathing, on the radiation response of EMT6 mammary tumors in BALB/c mice and of two normal tissues. RSR13 plus oxygen breathing increased the response of EMT6 tumors to irradiation. RSR13 had no discernible effects on tumors rendered maximally hypoxic by nitrogen asphyxiation, no discernible cytotoxic effects in EMT6 tumors, and no effect on the viability or radiation response of EMT6 cells in vitro under either aerobic or hypoxic conditions. The effects of RSR13 therefore reflect changes in tumor oxygenation, rather than a direct cytotoxic or radiosensitizing effect of the drug. RSR13 plus oxygen reduced the hypoxic fraction to 9% from the value of 24% found in both air-breathing and oxygen-breathing mice. Treatment with RSR13 plus oxygen did not alter the radiation response of the bone marrow progenitor cells (CFU-S) or acute radiation reactions in the skin. The improvement in tumor radiation response produced by treatment with RSR13 plus oxygen, combined with the absence of enhanced radiation reactions in the normal tissues, support further testing of RSR13 as an adjunct to radiotherapy.

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