Ben May Department for Cancer Research, University of Chicago, Chicago, United States.
Metabolomics Platform, Comprehensive Cancer Center, University of Chicago, Chicago, United States.
Elife. 2023 May 31;12:e81289. doi: 10.7554/eLife.81289.
Nutrient stress in the tumor microenvironment requires cancer cells to adopt adaptive metabolic programs for survival and proliferation. Therefore, knowledge of microenvironmental nutrient levels and how cancer cells cope with such nutrition is critical to understand the metabolism underpinning cancer cell biology. Previously, we performed quantitative metabolomics of the interstitial fluid (the local perfusate) of murine pancreatic ductal adenocarcinoma (PDAC) tumors to comprehensively characterize nutrient availability in the microenvironment of these tumors. Here, we develop umor nterstitial luid edium (TIFM), a cell culture medium that contains nutrient levels representative of the PDAC microenvironment, enabling us to study PDAC metabolism ex vivo under physiological nutrient conditions. We show that PDAC cells cultured in TIFM adopt a cellular state closer to that of PDAC cells present in tumors compared to standard culture models. Further, using the TIFM model, we found arginine biosynthesis is active in PDAC and allows PDAC cells to maintain levels of this amino acid despite microenvironmental arginine depletion. We also show that myeloid derived arginase activity is largely responsible for the low levels of arginine in PDAC tumors. Altogether, these data indicate that nutrient availability in tumors is an important determinant of cancer cell metabolism and behavior, and cell culture models that incorporate physiological nutrient availability have improved fidelity to in vivo systems and enable the discovery of novel cancer metabolic phenotypes.
肿瘤微环境中的营养压力要求癌细胞采取适应性代谢程序来生存和增殖。因此,了解微环境中的营养水平以及癌细胞如何应对这些营养物质对于理解癌症细胞生物学的代谢至关重要。此前,我们对小鼠胰腺导管腺癌 (PDAC) 肿瘤的间质液(局部灌注液)进行了定量代谢组学分析,全面描述了这些肿瘤微环境中的营养可用性。在这里,我们开发了肿瘤间质液培养基 (TIFM),它是一种细胞培养基,其中含有代表 PDAC 微环境的营养水平,使我们能够在生理营养条件下对 PDAC 代谢进行离体研究。我们发现,与标准培养模型相比,在 TIFM 中培养的 PDAC 细胞采用的细胞状态更接近肿瘤中存在的 PDAC 细胞。此外,使用 TIFM 模型,我们发现精氨酸生物合成在 PDAC 中是活跃的,这使得 PDAC 细胞能够维持这种氨基酸的水平,尽管微环境中的精氨酸耗竭。我们还表明,髓源性精氨酸酶活性在很大程度上导致了 PDAC 肿瘤中精氨酸水平低。总之,这些数据表明,肿瘤中的营养可用性是癌症细胞代谢和行为的重要决定因素,并且包含生理营养可用性的细胞培养模型对体内系统具有更高的保真度,并能够发现新的癌症代谢表型。