Abbott Keene L, Ali Ahmed, Reinfeld Bradley I, Deik Amy, Subudhi Sonu, Landis Madelyn D, Hongo Rachel A, Young Kirsten L, Kunchok Tenzin, Nabel Christopher S, Crowder Kayla D, Kent Johnathan R, Madariaga Maria Lucia L, Jain Rakesh K, Beckermann Kathryn E, Lewis Caroline A, Clish Clary B, Muir Alexander, Rathmell W Kimryn, Rathmell Jeffrey C, Vander Heiden Matthew G
Department of Biology, Massachusetts Institute of Technology, Cambridge, MA, USA.
Koch Institute for Integrative Cancer Research, Massachusetts Institute of Technology, Cambridge, MA, USA.
bioRxiv. 2024 Apr 8:2023.12.24.573250. doi: 10.1101/2023.12.24.573250.
The tumor microenvironment is a determinant of cancer progression and therapeutic efficacy, with nutrient availability playing an important role. Although it is established that the local abundance of specific nutrients defines the metabolic parameters for tumor growth, the factors guiding nutrient availability in tumor compared to normal tissue and blood remain poorly understood. To define these factors in renal cell carcinoma (RCC), we performed quantitative metabolomic and comprehensive lipidomic analyses of tumor interstitial fluid (TIF), adjacent normal kidney interstitial fluid (KIF), and plasma samples collected from patients. TIF nutrient composition closely resembles KIF, suggesting that tissue-specific factors unrelated to the presence of cancer exert a stronger influence on nutrient levels than tumor-driven alterations. Notably, select metabolite changes consistent with known features of RCC metabolism are found in RCC TIF, while glucose levels in TIF are not depleted to levels that are lower than those found in KIF. These findings inform tissue nutrient dynamics in RCC, highlighting a dominant role of non-cancer driven tissue factors in shaping nutrient availability in these tumors.
肿瘤微环境是癌症进展和治疗效果的决定因素,营养物质的可利用性起着重要作用。虽然已经确定特定营养物质的局部丰度决定了肿瘤生长的代谢参数,但与正常组织和血液相比,指导肿瘤中营养物质可利用性的因素仍知之甚少。为了确定肾细胞癌(RCC)中的这些因素,我们对从患者收集的肿瘤间质液(TIF)、相邻正常肾间质液(KIF)和血浆样本进行了定量代谢组学和全面的脂质组学分析。TIF的营养成分与KIF非常相似,这表明与癌症存在无关的组织特异性因素对营养水平的影响比肿瘤驱动的改变更强。值得注意的是,在RCC TIF中发现了与RCC代谢已知特征一致的特定代谢物变化,而TIF中的葡萄糖水平并未降低到低于KIF中的水平。这些发现揭示了RCC中的组织营养动态,突出了非癌症驱动的组织因素在塑造这些肿瘤中营养物质可利用性方面的主导作用。