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模型小鼠肿瘤和自发性犬类肿瘤中肿瘤缺氧的药理学调控

Pharmacological Regulation of Tumor Hypoxia in Model Murine Tumors and Spontaneous Canine Tumors.

作者信息

Benej Martin, Wu Jinghai, Kreamer McKenzie, Kery Martin, Corrales-Guerrero Sergio, Papandreou Ioanna, Williams Terence M, Li Zihai, Graves Edward E, Selmic Laura E, Denko Nicholas C

机构信息

Department of Radiation Oncology, The Ohio State University Wexner Medical Center and OSU Comprehensive Cancer Center, Columbus, OH 43210, USA.

Department of Radiation Oncology, City of Hope National Medical Center, Duarte, CA 91010, USA.

出版信息

Cancers (Basel). 2021 Apr 3;13(7):1696. doi: 10.3390/cancers13071696.

Abstract

BACKGROUND

Hypoxia is found in many solid tumors and is associated with increased disease aggressiveness and resistance to therapy. Reducing oxygen demand by targeting mitochondrial oxidative metabolism is an emerging concept in translational cancer research aimed at reducing hypoxia. We have shown that the U.S. Food and Drug Administration (FDA)-approved drug papaverine and its novel derivative SMV-32 are potent mitochondrial complex I inhibitors.

METHODS

We used a dynamic in vivo luciferase reporter system, pODD-Luc, to evaluate the impact of pharmacological manipulation of mitochondrial metabolism on the levels of tumor hypoxia in transplanted mouse tumors. We also imaged canine patients with blood oxygen level-dependent (BOLD) MRI at baseline and one hour after a dose of 1 or 2 mg/kg papaverine.

RESULTS

We showed that the pharmacological suppression of mitochondrial oxygen consumption (OCR) in tumor-bearing mice increases tumor oxygenation, while the stimulation of mitochondrial OCR decreases tumor oxygenation. In parallel experiments in a small series of spontaneous canine sarcomas treated at The Ohio State University (OSU) Veterinary Medical Center, we observed a significant increase in BOLD signals indicative of an increase in tumor oxygenation of up to 10-50 mm HgO.

CONCLUSION

In both transplanted murine tumors and spontaneous canine tumors we found that decreasing mitochondrial metabolism can decrease tumor hypoxia, potentially offering a therapeutic advantage.

摘要

背景

低氧存在于许多实体瘤中,与疾病侵袭性增加和治疗耐药性相关。通过靶向线粒体氧化代谢来降低氧需求是转化癌症研究中一个旨在减少低氧的新兴概念。我们已经表明,美国食品药品监督管理局(FDA)批准的药物罂粟碱及其新型衍生物SMV-32是强效的线粒体复合物I抑制剂。

方法

我们使用动态体内荧光素酶报告系统pODD-Luc,来评估线粒体代谢的药理学调控对移植小鼠肿瘤中肿瘤低氧水平的影响。我们还在基线时以及给予1或2mg/kg罂粟碱一剂后1小时,对犬类患者进行了血氧水平依赖(BOLD)MRI成像。

结果

我们表明,荷瘤小鼠中线粒体氧消耗(OCR)的药理学抑制增加了肿瘤氧合,而线粒体OCR的刺激则降低了肿瘤氧合。在俄亥俄州立大学(OSU)兽医学院医学中心治疗的一小系列自发性犬肉瘤的平行实验中,我们观察到BOLD信号显著增加,表明肿瘤氧合增加高达10 - 50mmHgO。

结论

在移植的小鼠肿瘤和自发性犬肿瘤中,我们都发现降低线粒体代谢可以减少肿瘤低氧,这可能提供一种治疗优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9cb7/8038388/00792297adcf/cancers-13-01696-g001.jpg

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