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间质无机磷酸盐作为肿瘤进展的肿瘤微环境标志物。

Interstitial Inorganic Phosphate as a Tumor Microenvironment Marker for Tumor Progression.

机构信息

In Vivo Multifunctional Magnetic Resonance center, Robert C. Byrd Health Sciences Center, West Virginia University, Morgantown, WV 26506, United States.

Department of Biochemistry, West Virginia University School of Medicine, Morgantown, WV 26506, United States.

出版信息

Sci Rep. 2017 Jan 24;7:41233. doi: 10.1038/srep41233.

Abstract

Noninvasive in vivo assessment of chemical tumor microenvironment (TME) parameters such as oxygen (pO), extracellular acidosis (pH), and concentration of interstitial inorganic phosphate (Pi) may provide unique insights into biological processes in solid tumors. In this work, we employ a recently developed multifunctional trityl paramagnetic probe and electron paramagnetic resonance (EPR) technique for in vivo concurrent assessment of these TME parameters in various mouse models of cancer. While the data support the existence of hypoxic and acidic regions in TME, the most dramatic differences, about 2-fold higher concentrations in tumors vs. normal tissues, were observed for interstitial Pi - the only parameter that also allowed for discrimination between non-metastatic and highly metastatic tumors. Correlation analysis between [Pi], pO, pH and tumor volumes reveal an association of high [Pi] with changes in tumor metabolism and supports different mechanisms of protons and Pi accumulation in TME. Our data identifies interstitial inorganic phosphate as a new TME marker for tumor progression. Pi association with tumor metabolism, buffer-mediated proton transport, and a requirement of high phosphorus content for the rapid growth in the "growth rate hypothesis" may underline its potential role in tumorigenesis and tumor progression.

摘要

非侵入性的活体评估化学肿瘤微环境(TME)参数,如氧(pO)、细胞外酸中毒(pH)和间质无机磷酸盐(Pi)浓度,可能为实体瘤中的生物学过程提供独特的见解。在这项工作中,我们采用了最近开发的多功能三苯甲基顺磁探针和电子顺磁共振(EPR)技术,用于活体评估各种癌症小鼠模型中的这些 TME 参数。虽然数据支持 TME 中存在缺氧和酸性区域,但最显著的差异是间质 Pi 高约 2 倍 - 这是唯一可区分非转移性和高转移性肿瘤的参数。[Pi]、pO、pH 和肿瘤体积之间的相关分析表明,[Pi]与肿瘤代谢的变化有关,并支持质子和 Pi 在 TME 中积累的不同机制。我们的数据将间质无机磷酸盐鉴定为肿瘤进展的新 TME 标志物。Pi 与肿瘤代谢、缓冲介导的质子转运以及“生长率假说”中快速生长所需的高磷含量的关联,可能强调了其在肿瘤发生和肿瘤进展中的潜在作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1fa0/5259743/c5db60eed757/srep41233-f1.jpg

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