首页> 美国卫生研究院文献>British Journal of Cancer >The effect of flunarizine on erythrocyte suspension viscosity under conditions of extreme hypoxia low pH and lactate treatment.
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The effect of flunarizine on erythrocyte suspension viscosity under conditions of extreme hypoxia low pH and lactate treatment.

机译:在极端缺氧低pH和乳酸处理条件下氟硝利嗪对红细胞悬液粘度的影响。

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摘要

Flunarizine is a class IV calcium channel blocker which increases oxygen delivery to hypoxic regions in solid tumours, exerting a radiosensitising effect in vivo in animal tumour models. Precisely how the drug improves oxygenation is not well understood. We hypothesised that metabolic conditions present within solid tumours reduce red blood cell (RBC) deformability and that flunarizine exerts its in vivo effect by preventing this loss of RBC deformability. A microrheometer was used to compare the viscosity of rat and human RBC suspensions in conditions of hypoxia (pO2 < 10 mmHg), acidic environment (pH 6.8), and elevated lactate concentration (lactate 5 mMol l-1), without or with flunarizine at concentrations of 5, 10, and 50 mg l-1. The effects of flunarizine on RBC density and morphology were also recorded. Hypoxia, low pH, and lactate exposure together increased both human and rat RBC suspension viscosity. Flunarizine at concentrations of 5 and 10 mg l-1 prevented the increases in viscosity. The drug caused dose-dependent shifts toward lower cell density while inducing a characteristic cupped shape (stomatcytic morphology), suggesting a mechanism involving calmodulin inhibition. The results support the hypothesis that flunarizine improves tumour blood flow and oxygenation by enhancing flow properties of RBC's in solid tumours.
机译:氟那利嗪是一种IV类钙通道阻滞剂,可增加向实体瘤中低氧区域的氧气输送,在动物肿瘤模型中在体内发挥放射增敏作用。确切地讲,该药物如何改善氧合还不清楚。我们假设实体瘤中存在的代谢状况会降低红细胞(RBC)的可变形性,而氟尿利嗪通过防止这种RBC变形性的丧失而发挥其体内作用。微量流变仪用于比较在缺氧或未加氟那利嗪的条件下,在缺氧(pO2 <10 mmHg),酸性环境(pH 6.8)和乳酸浓度升高(乳酸5 mMol -1)下大鼠和人RBC悬浮液的粘度。 5、10和50 mg l-1的浓度。还记录了氟尿利嗪对红细胞密度和形态的影响。低氧,低pH值和乳酸暴露共同增加了人和大鼠RBC悬浮液的粘度。氟那利嗪的浓度为5和10 mg l-1可以防止粘度增加。该药物引起剂量依赖性的向低细胞密度的转变,同时诱导出典型的杯状形状(细胞形态),提示涉及钙调蛋白抑制作用的机制。该结果支持以下假说:氟那利嗪通过增强实体瘤中RBC的流动特性来改善肿瘤血流和氧合。

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