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Co-imaging of the tumor oxygenation and metabolism using electron paramagnetic resonance imaging and 13-C hyperpolarized magnetic resonance imaging before and after irradiation

机译:辐射前后使用电子顺磁共振成像和13-C超极化磁共振成像对肿瘤氧合和代谢进行共同成像

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摘要

To examine the relationship between local oxygen partial pressure and energy metabolism in the tumor, electron paramagnetic resonance imaging (EPRI) and magnetic resonance imaging (MRI) with hyperpolarized [1-13C] pyruvate were performed.SCCVII and HT29 solid tumors implanted in the mouse leg were imaged by EPRI using OX063, a paramagnetic probe and 13C-MRI using hyperpolarized [1-13C] pyruvate. Local partial oxygen pressure and pyruvate metabolism in the two tumor implants were examined. The effect of a single dose of 5-Gy irradiation on the pO2 and metabolism was also investigated by sequential imaging of EPRI and 13C-MRI in HT29 tumors.A phantom study using tubes filled with different concentration of [1-13C] pyruvate, [1-13C] lactate, and OX063 at different levels of oxygen confirmed the validity of this sequential imaging of EPRI and hyperpolarized 13C-MRI. In vivo studies revealed SCCVII tumor had a significantly larger hypoxic fraction (pO2 < 8 mmHg) compared to HT29 tumor. The flux of pyruvate-to-lactate conversion was also higher in SCCVII than HT29. The lactate-to-pyruvate ratio in hypoxic regions (pO2 < 8 mmHg) 24 hours after 5-Gy irradiation was significantly higher than those without irradiation (0.76 vs. 0.36) in HT29 tumor. The in vitro study showed an increase in extracellular acidification rate after irradiation.In conclusion, co-imaging of pO2 and pyruvate-to-lactate conversion kinetics successfully showed the local metabolic changes especially in hypoxic area induced by radiation therapy.
机译:为了检查局部氧分压与肿瘤中能量代谢之间的关系,进行了超极化[1- 13 C]丙酮酸的电子顺磁共振成像(EPRI)和磁共振成像(MRI)。使用OX063,顺磁性探针和 13 C-MRI通过超极化的[1- 13 C]丙酮酸EPRI对植入小鼠腿中的HT29和HT29实体瘤进行成像。检查了两个肿瘤植入物中的局部氧分压和丙酮酸代谢。还通过顺序成像EPRI和 13 C-MRI对HT29肿瘤进行了单剂量5-Gy辐照对pO2和代谢的影响。 [1- 13 C]丙酮酸,[1- 13 C]乳酸和OX063在不同的氧气水平下证实了EPRI和超极化的 13 C-MRI。体内研究表明,与HT29肿瘤相比,SCCVII肿瘤具有明显更大的低氧分数(pO2 <8 mmHg)。丙酮酸转化为乳酸的通量在SCCVII中也比HT29高。在5-Gy照射后24小时,低氧区域(pO2 <8 mmHg)中的乳酸与丙酮酸之比显着高于HT29肿瘤中未照射的区域(0.76比0.36)。体外研究表明,辐照后细胞外酸化率增加。总而言之,对pO2和丙酮酸-乳酸转化动力学的共同成像成功地显示了局部代谢变化,尤其是在放射治疗引起的低氧区域。

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