Cai Rongzhi, Ke LiXin, Zhao Yan, Zhao Jiayun, Zhang Huanian, Zheng Peie, Xin Lijing, Ma Changchun, Lin Yan
Radiology Department, Second Affiliated Hospital, Shantou University Medical College, Shantou City, Guangdong Province, China.
Animal Imaging and Technology Core, Center for Biomedical Imaging, Ecole Polytechnique Fédérale de Lausanne, Lausanne, Switzerland.
Int J Cancer. 2025 Apr 15;156(8):1644-1655. doi: 10.1002/ijc.35273. Epub 2024 Dec 4.
Colorectal cancer (CRC) still remains the leading cause of cancer death worldwide. This study aimed to profile the metabolic differences of colorectal cancer tissues (CCT) at different stages and sites, as compared with their distant noncancerous tissues (DNT), to investigate the temporal and spatial heterogeneities of metabolic characterization. Our NMR-based metabolomics fingerprinting revealed that many of the metabolite levels were significantly altered in CCT compared to DNT and esophageal cancer tissues, indicating deregulations of glucose metabolism, one-carbon metabolism, glutamine metabolism, amino acid metabolism, fatty acid metabolism, TCA cycle, choline metabolism, and so forth. A total of five biomarker metabolites, including glucose, glutamate, alanine, valine and histidine, were identified to distinguish between early and advanced stages of CCT. Metabolites that distinguish the different anatomical sites of CCT include glucose, glycerol, glutamine, inositol, succinate, and citrate. Those significant metabolic differences in CRC tissues at different pathological stages and sites suggested temporal and spatial heterogeneities of metabolic characterization in CCT, providing a metabolic foundation for further study on biofluid metabolism in CRC early detection.
结直肠癌(CRC)仍是全球癌症死亡的主要原因。本研究旨在剖析不同阶段和部位的结直肠癌组织(CCT)与其远处非癌组织(DNT)相比的代谢差异,以探究代谢特征的时空异质性。我们基于核磁共振的代谢组学指纹图谱显示,与DNT和食管癌组织相比,CCT中的许多代谢物水平发生了显著变化,表明糖代谢、一碳代谢、谷氨酰胺代谢、氨基酸代谢、脂肪酸代谢、三羧酸循环、胆碱代谢等出现失调。共鉴定出五种生物标志物代谢物,包括葡萄糖、谷氨酸、丙氨酸、缬氨酸和组氨酸,以区分CCT的早期和晚期阶段。区分CCT不同解剖部位的代谢物包括葡萄糖、甘油、谷氨酰胺、肌醇琥珀酸和柠檬酸。CRC组织在不同病理阶段和部位的这些显著代谢差异表明CCT中代谢特征的时空异质性,为进一步研究CRC早期检测中的生物流体代谢提供了代谢基础。