Metastatic Colorectal Cancer: Redox Metabolism and Malignancy

Burlaka Ap, Yevtushenko Oi, Burlaka АA, Yatsyna Oi, Lukin Sn, G. Ii
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Abstract

Investigating the tumor microenvironment has a direct impact on the understanding of the mechanisms which regulate cancer progression and treatment. Tumor cells undergoing profound changes in their own intrinsic metabolism affect the microenvironment. Colorectal cancer (CRC) is the third most common cancer with the predominant metastases (Mts) into the liver. Mts in liver tissues (LT), adjacent to Mts (AMT) and remote tissues (RMT, taken at the distance of 5 cm from Mts) from 25 patients with metachronous liver Mts after the liver resection as well as blood and urine were studied by electron paramagnetic resonance (EPR) including the spin-trapping EPR for the detection and quantification of the activity of N2 iron-sulfur proteins, levels of NO-N2 complexes, labile iron pool (LIP), lactoferrin (Lf), superoxide and NO radicals. Activity of metalloproteinase MMP-2 and MMP-9 were determined. In adjacent and remote LT low activity of N2 in mitochondrial electron transport chain (EPR signal with g=1.94), loss of functions of detoxification system (cytochrome P450, g=2.25), appearance and growth of NO-N2 complexes (g=2.007) are obtained. Intensive EPR signals from LIP (g=2.2-2.4) and Lf (g=4.3) are registered. Superoxide generation rates were of up to 6 times higher than in the reference LT tissues and blood (p<0.001). NO levels are of 1.7 times higher for the AMT compared to RMT (p<0.05) while being 15 times higher for blood comparing to the reference species (p<0.001). Activity of MMP-2 and MMP-9 was registered both in AMT and RMT and is in 1.7 times higher in ALT (p<0.05). The obtained results can be used to estimate the functional state of organs and tissues with distant metastases, the risk of recurrence, to correct the antitumor therapeutic procedures.
转移性结直肠癌:氧化还原代谢和恶性肿瘤
研究肿瘤微环境对理解调节癌症进展和治疗的机制有直接的影响。肿瘤细胞自身内在代谢发生深刻变化,影响微环境。结直肠癌(CRC)是第三大最常见的癌症,主要转移(Mts)到肝脏。本文采用电子顺磁共振(EPR)技术对25例异时性肝Mts患者肝切除术后肝脏组织(LT)、Mts邻近组织(AMT)和远端组织(RMT)以及血液和尿液中的Mts进行了研究,其中自旋捕获EPR用于检测和定量N2铁硫蛋白活性、NO-N2配合物、不稳定铁池(LIP)、乳铁蛋白(Lf)、超氧化物和NO自由基水平。测定金属蛋白酶MMP-2和MMP-9的活性。在邻近和远端低活性的线粒体电子传递链中(EPR信号,g=1.94),解毒系统(细胞色素P450, g=2.25)功能丧失,NO-N2配合物的出现和生长(g=2.007)。来自LIP (g=2.2-2.4)和Lf (g=4.3)的强EPR信号被记录下来。超氧化物的产生率比参考LT组织和血液高6倍(p<0.001)。与对照品种相比,AMT的NO水平高出1.7倍(p<0.05),而血液中的NO水平高出15倍(p<0.001)。MMP-2和MMP-9的活性在AMT和RMT中均有记录,在ALT中升高1.7倍(p<0.05)。所得结果可用于估计远处转移的器官和组织的功能状态,复发的风险,以纠正抗肿瘤治疗程序。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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