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Condition: Metabolic Syndrome
Nutrition: High Fat

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Total 11 results found since Jan 2013.

The Polyherbal Functional Ingredient Containing Ginger, Chinese Date, and Wood Ear Mushroom Protects against Dementia following Metabolic Syndrome
This study was performed to test this hypothesis and to explore the underlying mechanism. Male Wistar rats weighing 180-220 g were induced metabolic syndrome (MetS) with a 16-week high-carbohydrate high-fat diet (HCHF) feeding. The rats with MetS characteristics were orally administered GCJ at various doses (GCJ100, GCJ200, and GCJ300 mg kg-1 BW) 21 days pre-induction and 21 days post-induction of reperfusion injury (I/R) at the right middle cerebral artery (MCAO). Memory was evaluated every 7 days during the study period. At the end of the study, neuron density, AChE activity, and the expressions of eNOS, BDNF, and pERK/E...
Source: Biomed Res - August 11, 2023 Category: Research Authors: Thuntiva Nakyam Jintanaporn Wattanathorn Wipawee Thukham-Mee Supaporn Muchimapura Source Type: research

Association between Exposure to p,p ′-DDT and Its Metabolite p,p′-DDE with Obesity: Integrated Systematic Review and Meta-Analysis
Conclusions: We classified p,p′-DDT and p,p′-DDE as “presumed” to be obesogenic for humans, based on a moderate level of primary human evidence, a moderate level of primary in vivo evidence, and a moderate level of supporting evidence from in vivo and in vitro studies. https://doi.org/10.1289/EHP527 Received: 17 May 2016 Revised: 04 May 2017 Accepted: 09 May 2017 Published: 18 September 2017 Please address correspondence to M.A. La Merrill, Dept. of Environmental Toxicology, University of California, Davis, 1 Shields Ave., 4245 Meyer Hall, Davis, CA 95616-5270 USA. Telephone: (530) 754-7254. Email: mlamerrill...
Source: EHP Research - September 18, 2017 Category: Environmental Health Authors: Daniil Lyalko Tags: Review Source Type: research

A High-Fat and High-Cholesterol Diet Induces Cardiac Fibrosis, Vascular Endothelial, and Left Ventricular Diastolic Dysfunction in SHRSP5/Dmcr Rats.
CONCLUSIONS: SHRSP5/Dmcr rats may be a suitable animal model for elucidating the organ interaction between NASH and cardiac or vascular dysfunction. PMID: 29162773 [PubMed - as supplied by publisher]
Source: Journal of Atherosclerosis and Thrombosis - November 23, 2017 Category: Cardiology Tags: J Atheroscler Thromb Source Type: research

Bromocriptine-QR therapy for the management of type 2 diabetes mellitus: developmental basis and therapeutic profile summary.
Authors: Raskin P, Cincotta AH Abstract An extended series of studies indicate that endogenous phase shifts in circadian neuronal input signaling to the biological clock system centered within the hypothalamic suprachiasmatic nucleus (SCN) facilitates shifts in metabolic status. In particular, a diminution of the circadian peak in dopaminergic input to the peri-SCN facilitates the onset of fattening, insulin resistance and glucose intolerance while reversal of low circadian peak dopaminergic activity to the peri-SCN via direct timed dopamine administration to this area normalizes the obese, insulin resistant, gluco...
Source: Expert Review of Endocrinology and Metabolism - August 2, 2018 Category: Endocrinology Tags: Expert Rev Endocrinol Metab Source Type: research

Association of non-alcoholic fatty liver disease with cardiovascular disease and subclinical atherosclerosis.
Authors: Sao R, Aronow WS Abstract Non-alcoholic fatty liver disease (NAFLD) refers to fatty infiltration of liver in the absence of significant alcohol intake, use of steatogenic medication, or hereditary disorders. It is a common cause of chronic liver disease with a worldwide estimated prevalence ranging from 6.3% to 33%. The NAFLD is considered a hepatic manifestation of the metabolic syndrome. Insulin resistance and increased oxidative stress are central to pathogenesis of NAFLD, and risk factors include metabolic syndrome, diabetes mellitus, obesity, lack of physical activity, smoking, and high fat diet. NAFL...
Source: Archives of Medical Science - November 6, 2018 Category: Biomedical Science Tags: Arch Med Sci Source Type: research

Nrf2 as a Potential Mediator of Cardiovascular Risk in Metabolic Diseases
Conclusion Activation of the Nrf2-dependent antioxidant system plays an important role in cell defense against oxidative stress damage, whereas the insufficiency of the Nrf2 system is associated with multiple aspects of the genesis and progression of metabolic diseases, posing a great risk to the cardiovascular system (Figure 1). The systemic increase of Nrf2 activity by several activators may be beneficial in the treatment of metabolic diseases. In addition, selective upregulation of Nrf2 genes may represent a potential therapy in obesity, diabetes and atherosclerosis. Looking to the future, experimental research that el...
Source: Frontiers in Pharmacology - April 11, 2019 Category: Drugs & Pharmacology Source Type: research

Atrial Transcriptional Profiles of Molecular Targets Mediating Electrophysiological Function in Aging and Pgc-1 β Deficient Murine Hearts
Conclusion: These findings limit the possible roles of gene transcriptional changes in previously reported age-dependent pro-arrhythmic electrophysiologial changes observed in Pgc-1β-/- atria to an altered Ca2+-ATPase (Atp2a2) expression. This directly parallels previously reported arrhythmic mechanism associated with p21-activated kinase type 1 deficiency. This could add to contributions from the direct physiological outcomes of mitochondrial dysfunction, whether through reactive oxygen species (ROS) production or altered Ca2+ homeostasis. Introduction Atrial arrhythmias constitute a major public health pro...
Source: Frontiers in Physiology - April 23, 2019 Category: Physiology Source Type: research

Use of a bioengineered antioxidant in mouse models of metabolic syndrome.
Conclusions: PEG-HCC can improve some parameters of disease in these models and this may be due to a resulting increase in peripheral insulin sensitivity. However, additional studies are needed to elucidate how PEG-HCCs are producing these effects. PMID: 31937152 [PubMed - as supplied by publisher]
Source: Expert Opinion on Investigational Drugs - January 17, 2020 Category: Drugs & Pharmacology Tags: Expert Opin Investig Drugs Source Type: research

Akebia saponin D ameliorates metabolic syndrome (MetS) via remodeling gut microbiota and attenuating intestinal barrier injury
Biomed Pharmacother. 2021 Feb 27;138:111441. doi: 10.1016/j.biopha.2021.111441. Online ahead of print.ABSTRACTMetabolic syndrome (MetS) is a complex, multifactorial disease which lead to an increased risk of cardiovascular disease, type 2 diabetes, and stroke. However, selective, and potent drugs for the treatment of MetS are still lacking. Previous studies have found that Akebia saponin D (ASD) has beneficial effects on metabolic diseases such as obesity, atherosclerosis, and non-alcoholic fatty liver disease (NAFLD). Therefore, our study was designed to determine the effect and mechanism of action of ASD against MetS in ...
Source: Biomedicine and pharmacotherapy = Biomedecine and pharmacotherapie - March 2, 2021 Category: Drugs & Pharmacology Authors: Song Yang Ting Hu He Liu Ya-Li Lv Wen Zhang Han Li Lingling Xuan Li-Li Gong Li-Hong Liu Source Type: research