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肿瘤微环境中细胞间的代谢协作对肿瘤生长的影响微不足道。

Metabolic collaboration between cells in the tumor microenvironment has a negligible effect on tumor growth.

作者信息

Gustafsson Johan, Roshanzamir Fariba, Hagnestål Anders, Patel Sagar M, Daudu Oseeyi I, Becker Donald F, Robinson Jonathan L, Nielsen Jens

机构信息

Department of Life Sciences, Chalmers University of Technology, SE- 412 96 Gothenburg, Sweden.

Hagnesia AB, SE-43854 Hindås, Sweden.

出版信息

Innovation (Camb). 2024 Jan 30;5(2):100583. doi: 10.1016/j.xinn.2024.100583. eCollection 2024 Mar 4.

Abstract

The tumor microenvironment is composed of a complex mixture of different cell types interacting under conditions of nutrient deprivation, but the metabolism therein is not fully understood due to difficulties in measuring metabolic fluxes and exchange of metabolites between different cell types . Genome-scale metabolic modeling enables estimation of such exchange fluxes as well as an opportunity to gain insight into the metabolic behavior of individual cell types. Here, we estimated the availability of nutrients and oxygen within the tumor microenvironment using concentration measurements from blood together with a metabolite diffusion model. In addition, we developed an approach to efficiently apply enzyme usage constraints in a comprehensive metabolic model of human cells. The combined modeling reproduced severe hypoxic conditions and the Warburg effect, and we found that limitations in enzymatic capacity contribute to cancer cells' preferential use of glutamine as a substrate to the citric acid cycle. Furthermore, we investigated the common hypothesis that some stromal cells are exploited by cancer cells to produce metabolites useful for the cancer cells. We identified over 200 potential metabolites that could support collaboration between cancer cells and cancer-associated fibroblasts, but when limiting to metabolites previously identified to participate in such collaboration, no growth advantage was observed. Our work highlights the importance of enzymatic capacity limitations for cell behaviors and exemplifies the utility of enzyme-constrained models for accurate prediction of metabolism in cells and tumor microenvironments.

摘要

肿瘤微环境由不同细胞类型在营养剥夺条件下相互作用的复杂混合物组成,但由于测量代谢通量以及不同细胞类型之间代谢物交换存在困难,其中的代谢情况尚未完全了解。基因组规模的代谢建模能够估计此类交换通量,并为深入了解单个细胞类型的代谢行为提供机会。在此,我们利用血液中的浓度测量数据以及代谢物扩散模型,估计了肿瘤微环境中营养物质和氧气的可用性。此外,我们开发了一种方法,可在人类细胞的综合代谢模型中有效应用酶使用限制。联合建模再现了严重的缺氧条件和瓦伯格效应,并且我们发现酶能力的限制有助于癌细胞优先利用谷氨酰胺作为柠檬酸循环的底物。此外,我们研究了一种常见假设,即某些基质细胞被癌细胞利用以产生对癌细胞有用的代谢物。我们鉴定出200多种可能支持癌细胞与癌症相关成纤维细胞之间协作的潜在代谢物,但当仅限于先前确定参与此类协作的代谢物时,未观察到生长优势。我们的工作突出了酶能力限制对细胞行为的重要性,并例证了酶约束模型在准确预测细胞和肿瘤微环境中的代谢方面的效用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3501/10912649/47531ef20668/fx1.jpg

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