| Literature DB >> 30804786 |
Fengjie Huang1,2, Shouli Wang2, Aihua Zhao2, Xiaojiao Zheng2, Yunjing Zhang2, Sha Lei2, Kun Ge2, Chun Qu2, Qing Zhao2, Chao Yan1, Wei Jia1,2,3.
Abstract
Pu-erhEntities:
Keywords: Pu-erh tea; fatty acid β-oxidation; free fatty acids; lipid lowering effect; obesity
Year: 2019 PMID: 30804786 PMCID: PMC6370627 DOI: 10.3389/fphar.2019.00063
Source DB: PubMed Journal: Front Pharmacol ISSN: 1663-9812 Impact factor: 5.810
FIGURE 1Pu-erh tea significantly reduced HFD-induced increase in body weight and lipids in serum and liver of C57BL/6 mice. (A) Body weight of mice fed with control diet, HFD, and HFD with 450 mg/Kg/day of Pu-erh tea across 22 weeks of intervention. (B) Liver weight of mice fed with control diet, HFD, and HFD with 450 mg/Kg/day of Pu-erh tea for 22 weeks. (C) HE staining of liver section of mice fed with control diet, HFD, and HFD with 450 mg/Kg/day of Pu-erh tea for 22 weeks. (D) Concentrations of TC, TG, HDL, and LDL in serum of mice fed with control diet, HFD, and HFD with 450 mg/Kg/day of Pu-erh tea for 22 weeks. (E) Concentration of TC and TG in liver of mice fed with control diet, HFD, and HFD with 450 mg/Kg/day of Pu-erh tea for 22 weeks. Data were expressed as mean ± SEM and differences were assessed by Mann–Whitney U test, ∗p < 0.05, #p < 0.005.
FIGURE 2HFD and Pu-erh tea altered FFA profiles and main FFA species in both serum and liver of mice. (A) Principle component analysis (PCA) plot based on serum FFA profile of mice fed with control diet, HFD, and HFD with 450 mg/Kg/day Pu-erh tea for 22 weeks. (B) PCA plot based on hepatic FFA profile of mice fed with control diet, HFD, and HFD with 450 mg/Kg/day Pu-erh tea for 22 weeks. (C) FFA species in serum of mice fed with control diet, HFD, and HFD with 450 mg/Kg/day Pu-erh tea for 22 weeks. (D) FFA species in liver of mice fed with control diet, HFD, and HFD with 450 mg/Kg/day Pu-erh tea for 22 weeks. Data were expressed as mean ± SEM and differences were assessed by Mann–Whitney U test, ∗p < 0.05, #p < 0.005.
FIGURE 3FFA profile and differential FFAs induced by HFD and Pu-erh tea treatment. (A) Heatmap based on Z-scores of serum FFAs in mice fed with control diet, HFD, and HFD with 450 mg/Kg/day Pu-erh tea for 22 weeks. (B) Heatmap based on Z-scores of hepatic FFA profile of mice fed with control diet, HFD, and HFD with 450 mg/Kg/day Pu-erh tea for 22 weeks. (C) Concentrations of differential FFAs in serum of mice fed with control diet, HFD, and HFD with 450 mg/Kg/day Pu-erh tea for 22 weeks. (D) Concentrations of differential FFA in liver of mice fed with control diet, HFD, and HFD with 450 mg/Kg/day Pu-erh tea for 22 weeks. Data were expressed as mean ± SEM and differences were assessed by Mann–Whitney U test, ∗p < 0.05, #p < 0.005.
FIGURE 4Pu-erh tea altered FFA biomarker of obesity. (A) Concentrations of DGLA and palmitoleic acid in serum of mice fed with control diet, HFD, and HFD with 450 mg/Kg/day Pu-erh tea for 22 weeks. (B) Concentrations of DGLA and palmitoleic acid in liver of mice fed with control diet, HFD, and HFD with 450 mg/Kg/day Pu-erh tea for 22 weeks. (C) Ratios of OA/SA, AA/DGLA, and SA/PA in serum of mice fed with control diet, HFD, and HFD with 450 mg/Kg/day Pu-erh tea for 22 weeks. (D) Ratios of OA/SA, AA/DGLA, and SA/PA in liver of mice fed with control diet, HFD, and HFD with 450 mg/Kg/day Pu-erh tea for 22 weeks. (E) Fasting glucose level in serum of mice fed with control diet, HFD, and HFD with 450 mg/Kg/day Pu-erh tea for 22 weeks. (F) Oral glucose tolerance test (OGTT) and the related area under the curve (AUC) of mice fed with control diet, HFD, and HFD with 450 mg/Kg/day Pu-erh tea at the end of week 18. (G) Insulin tolerance test (ITT) and the related area under the curve (AUC) of mice fed with control diet, HFG, and HFD with 450 mg/Kg/day Pu-erh tea at the end of week 19. Data were expressed as mean ± SEM and differences were assessed by Mann–Whitney U test, ∗p < 0.05, #p < 0.005.
FIGURE 5Pu-erh tea altered FA related enzymatic activities and gene expression. (A) Biochemical synthesis pathway related to FA metabolism and ratios regulated by HFD and Pu-erh tea. Red arrows represent the ratios significantly elevated by HFD but attenuated by Pu-erh tea, while the green arrows represent the ratios significantly lowered by HFD but elevated by Pu-erh tea. (B) Hepatic gene expression related to FA metabolism of mice fed with control diet, HFD, and HFD with 450 mg/Kg/day Pu-erh tea for 22 weeks. Data were expressed as mean ± SEM and differences were assessed by Mann–Whitney U test, ∗p < 0.05, #p < 0.005.