Department of Radiology, Second Affiliated Hospital, Shantou University Medical College, Shantou 515041, Guangdong Province, China.
Department of Radiation Oncology, Affiliated Tumor Hospital, Shantou University Medical College, Shantou 515041, Guangdong Province, China.
World J Gastroenterol. 2019 Jul 7;25(25):3218-3230. doi: 10.3748/wjg.v25.i25.3218.
Several studies have demonstrated a correlation between esophageal cancer (EC) and perturbed urinary metabolomic profiles, but none has described the correlation between urine metabolite profiles and those of the tumor and adjacent esophageal mucosa in the same patient.
To investigate how urinary metabolic phenotypes were linked to the changes in the biochemical landscape of esophageal tumors.
Nuclear magnetic resonance-based metabolomics were applied to esophageal tumor tissues and adjacent normal mucosal tissues alongside patient-matched urine samples.
Analysis revealed that specific metabolite changes overlapped across both metrics, including glucose, glutamate, citrate, glycine, creatinine and taurine, indicating that the networks for metabolic pathway perturbations in EC, potentially involved in but not limited to disruption of fatty acid metabolism, glucose and glycolytic metabolism, tricarboxylic acid cycle and glutaminolysis. Additionally, changes in most urinary biomarkers correlated with changes in biomarker candidates in EC tissues, implying enhanced energy production for rapid cell proliferation.
Overall, these associations provide evidence for distinct metabolic signatures and pathway disturbances between the tumor tissues and urine of EC patients, and changes in urinary metabolic signature could reflect reprogramming of the aforementioned metabolic pathways in EC tissues. Further investigation is needed to validate these initial findings using larger samples and to establish the underlying mechanism of EC progression.
多项研究表明食管癌(EC)与尿液代谢组特征紊乱有关,但尚无研究描述同一患者尿液代谢特征与肿瘤和相邻食管黏膜之间的关系。
探究尿液代谢表型与食管肿瘤生化特征变化的关联。
应用基于核磁共振的代谢组学方法分析食管肿瘤组织、相邻正常黏膜组织及患者配对尿液样本。
分析发现,两种指标均存在特定代谢物变化重叠,包括葡萄糖、谷氨酸、柠檬酸、甘氨酸、肌酸和牛磺酸,表明 EC 中代谢途径紊乱的网络,可能涉及但不限于脂肪酸代谢、糖酵解代谢、三羧酸循环和谷氨酰胺分解的破坏。此外,大多数尿液生物标志物的变化与 EC 组织中生物标志物候选物的变化相关,提示快速细胞增殖时增强了能量产生。
总体而言,这些关联为 EC 患者肿瘤组织和尿液之间存在独特的代谢特征和途径紊乱提供了证据,尿液代谢特征的变化可能反映了 EC 组织中上述代谢途径的重编程。需要进一步研究,使用更大的样本量来验证这些初步发现,并确定 EC 进展的潜在机制。