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1.
Biomed Pharmacother ; 174: 116476, 2024 May.
Article in English | MEDLINE | ID: mdl-38520872

ABSTRACT

BACKGROUND: Increasing global overweight and obesity rates not only increase the prevalence of myocardial infarction (MI), but also exacerbate ischemic injury and result in worsened prognosis. Currently, there are no drugs that can reverse myocardial damage once MI has occurred, therefore discovering drugs that can potentially limit the extent of ischemic damage to the myocardium is critical. Resveratrol is a polyphenol known for its antioxidant properties, however whether prolonged daily intake of resveratrol during obesity can protect against MI-induced damage remains unexplored. METHODS: We established murine models of obesity via high-fat/high-fructose diet, along with daily administrations of resveratrol or vehicle, then performed surgical MI to examine the effects and mechanisms of resveratrol in protecting against myocardial ischemic injury. RESULTS: Daily administration of resveratrol in obese mice robustly protected against myocardial ischemic injury and improved post-MI cardiac function. Resveratrol strongly inhibited oxidative and DNA damage via activating SIRT3/FOXO3a-dependent antioxidant enzymes following MI, which were completely prevented upon administration of 3-TYP, a selective SIRT3 inhibitor. Hence, the cardioprotective effects of prolonged resveratrol intake in protecting obese mice against myocardial ischemic injury was due to reestablishment of intracellular redox homeostasis through activation of SIRT3/FOXO3a signaling pathway. CONCLUSION: Our findings provide important new evidence that supports the daily intake of resveratrol, especially in those overweight or obese, which can robustly decrease the extent of ischemic damage following MI. Our study therefore provides new mechanistic insight and suggests the therapeutic potential of resveratrol as an invaluable drug in the treatment of ischemic heart diseases.


Subject(s)
Forkhead Box Protein O3 , Homeostasis , Mice, Inbred C57BL , Mice, Obese , Obesity , Oxidation-Reduction , Resveratrol , Signal Transduction , Sirtuin 3 , Animals , Resveratrol/pharmacology , Signal Transduction/drug effects , Sirtuin 3/metabolism , Male , Oxidation-Reduction/drug effects , Obesity/drug therapy , Obesity/metabolism , Obesity/complications , Forkhead Box Protein O3/metabolism , Homeostasis/drug effects , Mice , Antioxidants/pharmacology , Myocardial Ischemia/metabolism , Myocardial Ischemia/drug therapy , Oxidative Stress/drug effects , Diet, High-Fat/adverse effects , Myocardial Infarction/prevention & control , Myocardial Infarction/metabolism , Myocardial Infarction/pathology , Myocardial Infarction/drug therapy , Cardiotonic Agents/pharmacology , Stilbenes/pharmacology , Stilbenes/therapeutic use
2.
Article in English | MEDLINE | ID: mdl-31803633

ABSTRACT

Increasingly studies revealed that dysbiosis of gut microbiota plays a pivotal role in the pathogenesis of ulcerative colitis (UC). Fecal microbiota transplantation (FMT) has drawn more and more attention and become an important therapeutic approach. This study aims to examine the facts about the effective components and look into potential mechanisms of FMT. Colitis was induced by 3% (w/v) dextran sulfate sodium (DSS) in drinking water for 7 days. Colitis mice were administered by oral gavage with fecal suspension, fecal supernatant, fecal bacteria, or boiling-killed fecal bacteria from healthy controls and the disease activity index was monitored daily. On the seventh day, mice were euthanized. The length, histological score, parameters related to inflammation, gut barrier functions of the colon, activities of digestive protease and ß-glucuronidase in feces were measured. All of the four fecal components showed certain degree of efficacy in DSS-induced colitis, while transplantation of fecal suspension showed the most potent effect as demonstrated by less body weight loss, lower disease activity scores, more expression of tight junction proteins and TRAF6 and IκBα, less expression of TNF-α, IL-1ß, IL-10, TLR-4, and MyD88 in gut tissue, as well as restoration of fecal ß-glucuronidase and decreases in fecal digestive proteases. These results provide a novel insight into the possible mechanism of FMT and may help to improve and optimize clinical use of FMT.


Subject(s)
Colitis/etiology , Colitis/therapy , Dextran Sulfate/adverse effects , Fecal Microbiota Transplantation , Animals , Biomarkers , Biopsy , Colitis/diagnosis , Cytokines/metabolism , Disease Models, Animal , Fecal Microbiota Transplantation/methods , Feces/chemistry , Feces/microbiology , Gastrointestinal Microbiome , Intestinal Mucosa , Male , Mice , Treatment Outcome
3.
World J Gastroenterol ; 25(15): 1865-1878, 2019 Apr 21.
Article in English | MEDLINE | ID: mdl-31057300

ABSTRACT

BACKGROUND: Unconjugated bilirubin (UCB) is generally considered toxic but has gained recent prominence for its anti-inflammatory properties. However, the effects of it on the interaction between intestinal flora and organisms and how it influences immune responses remain unresolved. AIM: To investigate the role of UCB in intestinal barrier function and immune inflammation in mice with dextran-sulfate-sodium-induced colitis. METHODS: Acute colitis was induced by 3% (w/v) dextran sulfate sodium salt in drinking water for 6 d followed by untreated water for 2 d. Concurrently, mice with colitis were administered 0.2 mL UCB (400 µmol/L) by intra-gastric gavage for 7 d. Disease activity index (DAI) was monitored daily. Mice were sacrificed at the end of the experiment. The length of the colon and weight of the spleen were recorded. Serum level of D-lactate, intestinal digestive proteases activity, and changes to the gut flora were analyzed. In addition, colonic specimens were analyzed by histology and for expression of inflammatory markers and proteins. RESULTS: Mice treated with UCB had significantly relieved severity of colitis, including lower DAI, longer colon length, and lower spleen weight (colon length: 4.92 ± 0.09 cm vs 3.9 ± 0.15 cm; spleen weight: 0.33 ± 0.04 vs 0.74 ± 0.04, P < 0.001). UCB administration inactivated digestive proteases (chymotrypsin: 18.70 ± 0.69 U/g vs 44.81 ± 8.60 U/g; trypsin: 1.52 ± 0.23 U/g vs 9.05 ± 1.77 U/g, P < 0.01), increased expression of tight junction (0.99 ± 0.05 vs 0.57 ± 0.03, P < 0.001), decreased serum level of D-lactate (31.76 ± 3.37 µmol/L vs 54.25 ± 1.45 µmol/L, P < 0.001), and lowered histopathological score (4 ± 0.57 vs 7 ± 0.57, P < 0.001) and activity of myeloperoxidase (46.79 ± 2.57 U/g vs 110.32 ± 19.19 U/g, P < 0.001). UCB also regulated the intestinal microbiota, inhibited expression of tumor necrosis factor (TNF) α and interleukin 1ß (TNF-α: 52.61 ± 7.81 pg/mg vs 105.04 ± 11.92 pg/mg, interleukin 1ß: 13.43 ± 1.68 vs 32.41 ± 4.62 pg/mg, P < 0.001), decreased expression of Toll-like receptor 4 (0.61 ± 0.09 vs 1.07 ± 0.03, P < 0.001) and myeloid differentiation primary response gene 88 (0.73 ± 0.08 vs 1.01 ± 0.07, P < 0.05), and increased expression of TNF-receptor-associated factor 6 (0.79 ± 0.02 vs 0.43 ± 0.09 P < 0.05) and inhibitor of kappa B α (0.93 ± 0.07 vs 0.72 ± 0.07, P < 0.05) in the colon. CONCLUSION: UCB can protect intestinal barrier function, regulate normal intestinal homeostasis, and suppress inflammation via the Toll-like receptor 4/ nuclear factor-κB signaling pathway.


Subject(s)
Anti-Inflammatory Agents/pharmacology , Bilirubin/pharmacology , Colitis, Ulcerative/drug therapy , Gastrointestinal Microbiome/drug effects , Animals , Anti-Inflammatory Agents/therapeutic use , Bilirubin/therapeutic use , Colitis, Ulcerative/chemically induced , Colitis, Ulcerative/immunology , Colitis, Ulcerative/microbiology , Colon/immunology , Colon/metabolism , Colon/microbiology , Colon/pathology , Dextran Sulfate/toxicity , Disease Models, Animal , Gastrointestinal Microbiome/immunology , Humans , Intestinal Mucosa/immunology , Intestinal Mucosa/metabolism , Intestinal Mucosa/microbiology , Intestinal Mucosa/pathology , Male , Mice , Mice, Inbred C57BL , NF-kappa B/immunology , NF-kappa B/metabolism , Permeability , Signal Transduction/drug effects , Signal Transduction/immunology , Toll-Like Receptor 4/immunology , Toll-Like Receptor 4/metabolism , Treatment Outcome
4.
Biochem Biophys Res Commun ; 513(2): 426-433, 2019 05 28.
Article in English | MEDLINE | ID: mdl-30967260

ABSTRACT

OBJECTIVE: Inflammatory bowel diseases (IBD) including ulcerative colitis and Crohn's disease are devastating diseases of the gut. At present, all the treatments are mainly targeting symptoms like inflammation. The disease remains regarded as incurable, largely due to lacking of knowledge on its etiology. Our previous studies suggested that impaired inactivation of digestive proteases by deconjugated bilirubin in experimental colitis, thus bacterial ß-glucuronidase for catalyzing the reaction, may have played critical role in the pathogenesis of IBD. METHODS: We first analyzed ß-glucuronidase activity in gut tissue and feces of mice by a colitis model. Then the effect of ß-glucuronidase on experimental colitis was investigated in detail by administration of ß-glucuronidase (from E. coli) and fecal material transplantation to mice with 3% DSS in drinking water for 7 days. RESULTS: Mice with colitis showed unchanged activity of ß-glucuronidase in colon tissue but decreased activity in feces. Treatment with bacterial ß-glucuronidase at 100 U or above alleviated DSS-induced colitis as demonstrated by the less body weight loss, less disease activity score, increased expression of tight junction proteins and decreased gut permeability, decreases in MPO, TNF-α, IL-1ß, TLR-4 and MyD88, and increase in IL-10 and IκBα in gut, restored fecal ß-glucuronidase and gut microbiota along with decreases in fecal digestive proteases. Transplantation of fecal material from control to colitis mice showed similar effects as treatment with ß-glucuronidase. CONCLUSIONS: Bacterial ß-glucuronidase showed strong inhibition on colitis along with the reduction in fecal digestive proteases, which may be a crucial diagnostic and therapeutic target for IBD.


Subject(s)
Colitis/drug therapy , Escherichia coli/enzymology , Glucuronidase/therapeutic use , Inflammatory Bowel Diseases/drug therapy , Animals , Colitis/chemically induced , Colitis/pathology , Dextran Sulfate , Disease Models, Animal , Inflammatory Bowel Diseases/chemically induced , Inflammatory Bowel Diseases/pathology , Male , Mice , Mice, Inbred C57BL
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