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解析结直肠癌与肝细胞的相互作用:用于探究肝肿瘤微环境中代谢串扰的多组学平台

Deciphering Colorectal Cancer-Hepatocyte Interactions: A Multiomics Platform for Interrogation of Metabolic Crosstalk in the Liver-Tumor Microenvironment.

作者信息

Nelson Alisa B, Reese Lyndsay E, Rono Elizabeth, Queathem Eric D, Qiu Yinjie, McCluskey Braedan M, Crampton Alexandra, Conniff Eric, Cummins Katherine, Boytim Ella, Dansou Senali, Hwang Justin, Safo Sandra E, Puchalska Patrycja, Wood David K, Schwertfeger Kathryn L, Crawford Peter A

机构信息

Division of Molecular Medicine, Department of Medicine, University of Minnesota, Minneapolis, MN 55455, USA.

Department of Laboratory Medicine and Pathology, University of Minnesota, Minneapolis, MN 55455, USA.

出版信息

Int J Mol Sci. 2025 Feb 25;26(5):1976. doi: 10.3390/ijms26051976.

Abstract

Metabolic reprogramming is a hallmark of cancer, enabling tumor cells to adapt to and exploit their microenvironment for sustained growth. The liver is a common site of metastasis, but the interactions between tumor cells and hepatocytes remain poorly understood. In the context of liver metastasis, these interactions play a crucial role in promoting tumor survival and progression. This study leverages multiomics coverage of the microenvironment via liquid chromatography and high-resolution, high-mass-accuracy mass spectrometry-based untargeted metabolomics, C-stable isotope tracing, and RNA sequencing to uncover the metabolic impact of co-localized primary hepatocytes and a colon adenocarcinoma cell line, SW480, using a 2D co-culture model. Metabolic profiling revealed disrupted Warburg metabolism with an 80% decrease in glucose consumption and 94% decrease in lactate production by hepatocyte-SW480 co-cultures relative to SW480 control cultures. Decreased glucose consumption was coupled with alterations in glutamine and ketone body metabolism, suggesting a possible fuel switch upon co-culturing. Further, integrated multiomics analysis indicates that disruptions in metabolic pathways, including nucleoside biosynthesis, amino acids, and TCA cycle, correlate with altered SW480 transcriptional profiles and highlight the importance of redox homeostasis in tumor adaptation. Finally, these findings were replicated in three-dimensional microtissue organoids. Taken together, these studies support a bioinformatic approach to study metabolic crosstalk and discovery of potential therapeutic targets in preclinical models of the tumor microenvironment.

摘要

代谢重编程是癌症的一个标志,使肿瘤细胞能够适应并利用其微环境以实现持续生长。肝脏是常见的转移部位,但肿瘤细胞与肝细胞之间的相互作用仍知之甚少。在肝转移的背景下,这些相互作用在促进肿瘤存活和进展中起着关键作用。本研究利用液相色谱和基于高分辨率、高质量精度质谱的非靶向代谢组学、C稳定同位素示踪以及RNA测序对微环境进行多组学覆盖,通过二维共培养模型揭示共定位的原代肝细胞和结肠腺癌细胞系SW480的代谢影响。代谢谱分析显示,与SW480对照培养物相比,肝细胞-SW480共培养物中Warburg代谢受到破坏,葡萄糖消耗减少80%,乳酸产生减少94%。葡萄糖消耗的减少与谷氨酰胺和酮体代谢的改变相关,提示共培养时可能发生了燃料转换。此外,综合多组学分析表明,包括核苷生物合成、氨基酸和三羧酸循环在内的代谢途径的破坏与SW480转录谱的改变相关,并突出了氧化还原稳态在肿瘤适应中的重要性。最后,这些发现在三维微组织类器官中得到了重复验证。综上所述,这些研究支持一种生物信息学方法,用于研究肿瘤微环境临床前模型中的代谢串扰并发现潜在的治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a44f/11900982/0e00a94a50f4/ijms-26-01976-g001.jpg

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