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缺氧和代谢微环境对实体瘤放疗的影响。一项多机构研究项目介绍。

Impact of hypoxia and the metabolic microenvironment on radiotherapy of solid tumors. Introduction of a multi-institutional research project.

作者信息

Zips Daniel, Adam Markus, Flentje Michael, Haase Axel, Molls Michael, Mueller-Klieser Wolfgang, Petersen Cordula, Philbrook Christine, Schmitt Peter, Thews Oliver, Walenta Stefan, Baumann Michael

机构信息

Department of Radiotherapy and Radiation Oncology, Medical Faculty, University of Technology, Dresden, Germany.

出版信息

Strahlenther Onkol. 2004 Oct;180(10):609-15. doi: 10.1007/s00066-004-1285-3.

Abstract

BACKGROUND

Recent developments in imaging technology and tumor biology have led to new techniques to detect hypoxia and related alterations of the metabolic microenvironment in tumors. However, whether these new methods can predict radiobiological hypoxia and outcome after fractionated radiotherapy still awaits experimental evaluation.

MATERIAL AND METHODS

The present article will introduce a multi-institutional research project addressing the impact of hypoxia and the metabolic microenvironment on radiotherapy of solid tumors. The four laboratories involved are situated at the universities of Dresden, Mainz, Munich and Würzburg, Germany.

RESULTS

The joint scientific project started to collect data obtained on a set of ten different human tumor xenografts growing in nude mice by applying various imaging techniques to detect tumor hypoxia and related parameters of the metabolic microenvironment. These techniques include magnetic resonance imaging and spectroscopy, metabolic mapping with quantitative bioluminescence and single-photon imaging, histological multiparameter analysis of biochemical hypoxia, perfusion and vasculature, and immunohistochemistry of factors related to angiogenesis, invasion and metastasis. To evaluate the different methods, baseline functional radiobiological data including radiobiological hypoxic fraction and outcome after fractionated irradiation will be determined.

CONCLUSION

Besides increasing our understanding of tumor biology, the project will focus on new, clinically applicable strategies for microenvironment profiling and will help to identify those patients that might benefit from targeted interventions to improve tumor oxygenation.

摘要

背景

成像技术和肿瘤生物学的最新进展催生了检测肿瘤缺氧及代谢微环境相关改变的新技术。然而,这些新方法能否预测分次放疗后的放射生物学缺氧及治疗结果仍有待实验评估。

材料与方法

本文将介绍一项多机构研究项目,该项目旨在探讨缺氧及代谢微环境对实体瘤放疗的影响。参与的四个实验室分别位于德国德累斯顿、美因茨、慕尼黑和维尔茨堡的大学。

结果

该联合科研项目已开始收集数据,这些数据来自于在裸鼠体内生长的一组十种不同人类肿瘤异种移植模型,通过应用各种成像技术来检测肿瘤缺氧及代谢微环境的相关参数。这些技术包括磁共振成像和光谱分析、定量生物发光和单光子成像的代谢图谱分析、生化缺氧、灌注和脉管系统的组织学多参数分析以及与血管生成、侵袭和转移相关因子的免疫组织化学分析。为评估不同方法,将确定包括放射生物学缺氧分数和分次照射后治疗结果在内的基线功能放射生物学数据。

结论

除了增进我们对肿瘤生物学的理解外,该项目将专注于新的、临床适用的微环境分析策略,并将有助于识别那些可能从改善肿瘤氧合的靶向干预中获益的患者。

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