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肿瘤缺氧作为癌症治疗的障碍:水平为何重要。

Tumor Hypoxia as a Barrier in Cancer Therapy: Why Levels Matter.

作者信息

Hompland Tord, Fjeldbo Christina Sæten, Lyng Heidi

机构信息

Department of Radiation Biology, Norwegian Radium Hospital, Oslo University Hospital, 0424 Oslo, Norway.

Department of Physics, University of Oslo, 0371 Oslo, Norway.

出版信息

Cancers (Basel). 2021 Jan 28;13(3):499. doi: 10.3390/cancers13030499.

Abstract

Hypoxia arises in tumor regions with insufficient oxygen supply and is a major barrier in cancer treatment. The distribution of hypoxia levels is highly heterogeneous, ranging from mild, almost non-hypoxic, to severe and anoxic levels. The individual hypoxia levels induce a variety of biological responses that impair the treatment effect. A stronger focus on hypoxia levels rather than the absence or presence of hypoxia in our investigations will help development of improved strategies to treat patients with hypoxic tumors. Current knowledge on how hypoxia levels are sensed by cancer cells and mediate cellular responses that promote treatment resistance is comprehensive. Recently, it has become evident that hypoxia also has an important, more unexplored role in the interaction between cancer cells, stroma and immune cells, influencing the composition and structure of the tumor microenvironment. Establishment of how such processes depend on the hypoxia level requires more advanced tumor models and methodology. In this review, we describe promising model systems and tools for investigations of hypoxia levels in tumors. We further present current knowledge and emerging research on cellular responses to individual levels, and discuss their impact in novel therapeutic approaches to overcome the hypoxia barrier.

摘要

缺氧出现在氧气供应不足的肿瘤区域,是癌症治疗中的一个主要障碍。缺氧水平的分布高度不均一,范围从轻度、几乎无缺氧到重度和无氧水平。个体缺氧水平会引发多种损害治疗效果的生物学反应。在我们的研究中,更关注缺氧水平而非缺氧的有无,将有助于开发出改善的策略来治疗缺氧肿瘤患者。目前关于癌细胞如何感知缺氧水平并介导促进治疗抗性的细胞反应的知识很全面。最近,很明显缺氧在癌细胞、基质和免疫细胞之间的相互作用中也具有重要的、尚未充分探索的作用,影响肿瘤微环境的组成和结构。确定这些过程如何依赖于缺氧水平需要更先进的肿瘤模型和方法。在这篇综述中,我们描述了用于研究肿瘤缺氧水平的有前景的模型系统和工具。我们还介绍了关于细胞对个体水平反应的当前知识和新兴研究,并讨论它们在克服缺氧障碍的新型治疗方法中的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7699/7866096/ffc0106b3bfc/cancers-13-00499-g001.jpg

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