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首页> 外文期刊>British Journal of Cancer >The effects of whole body hyperthermia on the pharmacokinetics and toxicity of the basic 2-nitroimidazole radiosensitizer Ro 03-8799 in mice
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The effects of whole body hyperthermia on the pharmacokinetics and toxicity of the basic 2-nitroimidazole radiosensitizer Ro 03-8799 in mice

机译:全身热疗对碱性2-硝基咪唑放射增敏剂Ro 03-8799在小鼠体内的药代动力学和毒性的影响

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摘要

We have investigated the effects of 50 min whole-body hyperthermia (WBH; 15 min equilibration followed by 41 degrees C for 35 min) on the toxicity and pharmacokinetics of the radiosensitizer Ro 03-8799 in mice. WBH markedly reduced Ro 03-8799 LD50/7d from 779 to 259 micrograms g-1 (P less than 0.001). Pharmacokinetics were studied at 175 micrograms g-1 (approximately 0.6 WBH LD50/7d) with and without heat and 437 micrograms g-1 (approximately 0.6 control LD50/7d) without heat. WBH increased Ro 03-8799 plasma concentrations and prolonged its elimination t1/2 by 26% (P less than 0.01). Total plasma area under the curve (AUC0-infinity) was increased by 22%, but was still less than 50% of the unheated high-dose value. Ro 03-8799 concentrated 300-400% in tumour and brain relative to plasma. Absolute tumour and brain levels were unaltered by WBH, giving reduced tissue/plasma ratios. WBH greatly inhibited glomerular filtration (51Cr EDTA clearance) during heating, contributing to the increased plasma Ro 03-8799 concentrations. WBH increased peak plasma concentrations of the Ro 03-8799 N-oxide metabolite Ro 31-0313 by 61% and the beta-phase AUC of i.v. administered Ro 31-0313 by 36%. Since Ro 31-0313 levels were increased to a greater extent after Ro 03-8799 and WBH than Ro 31-0313 and WBH, WBH must both increase metabolite production and decrease its plasma clearance. WBH had no effect on Ro 31-0313 tumour concentrations or its exclusion from brain. These complex effects of WBH on Ro 03-8799 pharmacokinetics may contribute to the enhanced toxicity, possibly through hyperthermia-stimulated bioreductive drug activation, but do not wholly explain it.
机译:我们已经研究了50分钟全身热疗(WBH; 15分钟平衡,然后在41摄氏度下持续35分钟)对放射增敏剂Ro 03-8799在小鼠中的毒性和药代动力学的影响。 WBH将Ro 03-8799 LD50 / 7d从779大大降低到259微克g-1(P小于0.001)。在有和没有热的情况下以175微克g-1(约0.6 WBH LD50 / 7d)和没有热的437微克g-1(约0.6对照LD50 / 7d)研究了药代动力学。 WBH增加Ro 03-8799血浆浓度,并将其消除t1 / 2延长26%(P小于0.01)。曲线下的总血浆面积(AUC0-无穷大)增加了22%,但仍小于未加热的高剂量值的50%。 Ro 03-8799相对于血浆在肿瘤和脑中的浓度为300-400%。 WBH不会改变肿瘤和大脑的绝对水平,从而降低了组织/血浆比例。 WBH极大地抑制了加热过程中的肾小球滤过(51Cr EDTA清除),导致血浆Ro 03-8799浓度增加。 WBH使Ro 03-8799 N氧化物代谢产物Ro 31-0313的血浆峰值浓度增加61%,而i.v.的β相AUC升高。将Ro 31-0313分配给了36%。由于Ro 03-8799和WBH后Ro 31-0313的水平比Ro 31-0313和WBH更大程度地增加,因此WBH必须既增加代谢物的产生又降低其血浆清除率。 WBH对Ro 31-0313肿瘤浓度或从脑中排除均无影响。 WBH对Ro 03-8799药代动力学的这些复杂影响可能是通过热疗刺激的生物还原药物活化而导致毒性增加的原因,但并未完全解释。

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