Zheng Jia-San, Wei Ren-Yue, Wang Zheng, Song Jun, Ge Yan-Song, Wu Rui
College of Animal Science and Veterinary Medicine, Heilongjiang Bayi Agricultural University, Daqing, 163319, China.
J Vet Res. 2020 Nov 6;64(4):581-588. doi: 10.2478/jvetres-2020-0070. eCollection 2020 Dec.
To date, there have been no panoramic studies of the serum metabolome in feline mammary carcinoma. As the first such study, metabolomics techniques were used to analyse the serum of cats with these tumours. Three important metabolic pathways of screened differential metabolites closely related to feline mammary carcinomas were analysed to lay a theoretical basis for further study of the pathogenesis of these carcinomas.
Blood in a 5-8 mL volume was sampled from twelve cats of the same breed and similar age (close to nine years on average). Six were feline mammary carcinoma patients and six were healthy. L glutamate, L alanine, succinate, adenine, hypoxanthine, and inosine were screened as were alanine, aspartate, and glutamate metabolism, the tricarboxylid acid (TCA) cycle, and purine metabolism. Data were acquired with LC-MS non-target metabolomics, multiple reaction monitoring target metabolomics, and multivariate statistical and bioinformatic analysis.
Expression of five of the metabolites was upregulated and only inosine expression was downregulated. Up- and downregulation of metabolites related to glycometabolism, potentiation of the TCA cycle, greater content of lipid mobilisation metabolites, and abnormality of amino acid metabolism were closely related to the occurrence of the carcinomas.
These findings provide a new direction for further study of the mechanisms associated with cat mammary neoplasms.
迄今为止,尚未对猫乳腺癌血清代谢组进行全景研究。作为首次此类研究,采用代谢组学技术分析了患有这些肿瘤的猫的血清。分析了筛选出的与猫乳腺癌密切相关的差异代谢物的三个重要代谢途径,为进一步研究这些癌症的发病机制奠定理论基础。
从12只同一品种、年龄相近(平均接近9岁)的猫身上采集5 - 8毫升血液。其中6只为猫乳腺癌患者,6只为健康猫。筛选了L - 谷氨酸、L - 丙氨酸、琥珀酸、腺嘌呤、次黄嘌呤和肌苷,以及丙氨酸、天冬氨酸和谷氨酸代谢、三羧酸(TCA)循环和嘌呤代谢。通过液相色谱 - 质谱非靶向代谢组学、多反应监测靶向代谢组学以及多元统计和生物信息学分析获取数据。
5种代谢物的表达上调,只有肌苷表达下调。与糖代谢相关的代谢物的上调和下调、TCA循环的增强、脂质动员代谢物含量的增加以及氨基酸代谢的异常与癌症的发生密切相关。
这些发现为进一步研究猫乳腺肿瘤相关机制提供了新方向。