Lu Xiaodan, Huang Luyao, Chen Yanjun, Hu Ling, Zhong Rongbin, Chen Lijiao, Cheng Wenjian, Zheng Baodong, Liang Peng
Engineering Research Centre of Fujian-Taiwan Special Marine Food Processing and Nutrition Ministry of Education, Fuzhou 350002, China.
College of Food Science, Fujian Agriculture and Forestry University, Fuzhou 350002, China.
Foods. 2023 Apr 18;12(8):1687. doi: 10.3390/foods12081687.
Lipid metabolism disorder has become an important hidden danger threatening human health, and various supplements to treat lipid metabolism disorder have been studied. Our previous studies have shown that DHA-enriched phospholipids from large yellow croaker () roe (LYCRPLs) have lipid-regulating effects. To better explain the effect of LYCRPLs on lipid regulation in rats, the fecal metabolites of rats were analyzed from the level of metabolomics in this study, and GC/MS metabolomics measurements were performed to figure out the effect of LYCRPLs on fecal metabolites in rats. Compared with the control (K) group, 101 metabolites were identified in the model (M) group. There were 54, 47, and 57 metabolites in the low-dose (GA), medium-dose (GB), and high-dose (GC) groups that were significantly different from that of group M, respectively. Eighteen potential biomarkers closely related to lipid metabolism were screened after intervention with different doses of LYCRPLs on rats, which were classified into several metabolic pathways in rats, including pyrimidine metabolism, the citric acid cycle (TCA cycle), the metabolism of L-cysteine, carnitine synthesis, pantothenate and CoA biosynthesis, glycolysis, and bile secretion. L-cysteine was speculated to be a useful biomarker of LYCRPLs acting on rat fecal metabolites. Our findings indicated that LYCRPLs may regulate lipid metabolism disorders in SD rats by activating these metabolic pathways.
脂质代谢紊乱已成为威胁人类健康的重要隐患,人们对各种治疗脂质代谢紊乱的补充剂进行了研究。我们之前的研究表明,大黄鱼()鱼籽富含DHA的磷脂(LYCRPLs)具有调节脂质的作用。为了更好地解释LYCRPLs对大鼠脂质调节的作用,本研究从代谢组学水平分析了大鼠的粪便代谢产物,并进行了GC/MS代谢组学测量,以了解LYCRPLs对大鼠粪便代谢产物的影响。与对照组(K)相比,模型组(M)共鉴定出101种代谢产物。低剂量组(GA)、中剂量组(GB)和高剂量组(GC)分别有54、47和57种代谢产物与M组有显著差异。对大鼠给予不同剂量的LYCRPLs干预后,筛选出18种与脂质代谢密切相关的潜在生物标志物,这些标志物在大鼠体内可分为几个代谢途径,包括嘧啶代谢、柠檬酸循环(TCA循环)、L-半胱氨酸代谢、肉碱合成、泛酸和辅酶A生物合成、糖酵解以及胆汁分泌。推测L-半胱氨酸是LYCRPLs作用于大鼠粪便代谢产物的一种有用的生物标志物。我们的研究结果表明,LYCRPLs可能通过激活这些代谢途径来调节SD大鼠的脂质代谢紊乱。