Purpose: In metabolic syndrome, the composition of gut microbiota has been disrupted, and is associated with left ventricular (LV) dysfunction. Several types of prebiotics, probiotics, and synbiotics have been shown to exert cardioprotection by restoring gut microbiota from dysbiosis and reducing systemic inflammation. However, the effects of prebiotics such as xylooligosaccharides (XOS); probiotics such as Lactobacillus paracasei STII01 HP4, and synbiotics on metabolic and LV function in obese insulin-resistant rats have not been investigated. In this study, we hypothesized that prebiotics and probiotics improve metabolic parameters, heart rate variability (HRV), blood pressure (BP), and LV function by attenuating cardiac mitochondrial dysfunction, systemic inflammation, and oxidative stress, and that synbiotics provide greater efficacy than a single regimen in obese insulin resistance.
Methods: Rats were fed with either normal diet or high-fat diet (HFD) for 12 weeks and then rats in each dietary group were randomly subdivided into four subgroups to receive either a vehicle, prebiotics, probiotics, or synbiotics for another 12 weeks. Metabolic parameters, BP, HRV, LV function, cardiac mitochondrial function, systemic inflammation, and oxidative stress were determined.
Results: HFD-fed rats had obese insulin resistance with markedly increased systemic inflammatory marker [Serum LPS; ND; 0.6 ± 0.1 EU/ml vs. HFD; 5.7 ± 1.2 EU/ml (p < 0.05)], depressed HRV, and increased BP and LV dysfunction [%ejection fraction; ND; 93 ± 2% vs. HFD; 83 ± 2% (p < 0.05)]. Prebiotics, probiotics, and synbiotics attenuated insulin resistance by improving insulin sensitivity and lipid profiles. All interventions also improved HRV, BP, LV function [%ejection fraction; HFV; 81 ± 2% vs. HFPE; 93 ± 3%, HFPO; 92 ± 1%, HFC; 92 ± 2% (p < 0.05)] by attenuating mitochondrial dysfunction, oxidative stress, and systemic inflammation in obese insulin-resistant rats.
Conclusion: Prebiotics, probiotics, and synbiotics shared similar efficacy in reducing insulin resistance and LV dysfunction in obese insulin-resistant rats.
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http://dx.doi.org/10.1007/s00394-017-1482-3 | DOI Listing |
Commun Integr Biol
January 2025
Department of Psychiatry, DeBusk College of Osteopathic Medicine, Harrogate, TN, USA.
Emerging research has highlighted the significant role of microbiota-gut-brain communication in child psychiatric disorders, including autism spectrum disorder (ASD) and anxiety disorders. Despite this, mainstream psychiatric interventions for children continue to focus predominantly on neurological and psychological therapies, neglecting the critical influence of gut microbiota on brain development and behavior. This commentary underscores the need for greater integration of microbiota-targeted therapies, such as dietary interventions, prebiotics, and probiotics, into early psychiatric intervention strategies.
View Article and Find Full Text PDFArch Gerontol Geriatr
December 2024
Department of Laboratory Medicine, Affiliated Hangzhou First People's Hospital, Westlake University School of Medicine, Hangzhou, Zhejiang Province, China. Electronic address:
Background: The relationship between dietary live microbe intake, non-dietary prebiotics/probiotics, and mortality in older adults remains unclear.
Methods: Participants from the National Health and Nutrition Examination Survey 2003-2018 were included. Participants were categorized into three groups based on estimated live microbe intake: low, medium, and high.
J Food Sci
January 2025
Department of Fruit and Vegetable Technology, CSIR-Central Food Technological Research Institute, Mysuru, India.
Sleep disturbances are increasingly prevalent, significantly impacting physical and mental health. Recent research reveals a bidirectional relationship between gut microbiota and sleep, mediated through the microbiota-gut-brain axis. This review examines the role of gut microbiota in sleep physiology and explores how biotics, including probiotics, prebiotics, synbiotics, postbiotics, and fermented foods, can enhance sleep quality.
View Article and Find Full Text PDFPlant Cell Environ
January 2025
Key Laboratory of the State Forestry and Grassland Administration for the Cultivation of Forests in the Lower Reaches of the Yellow River, College of Forestry, Shandong Agricultural University, Tai'an, China.
How different stress responses by male and female plants are influenced by interactions with rhizosphere microbes remains unclear. In this study, we employed poplar as a dioecious model plant and quantified biotic associations between microorganisms to explore the relationship between microbial associations and plant adaptation. We propose a health index (HI) to comprehensively characterize the physiological characteristics and adaptive capacity of plants under stress.
View Article and Find Full Text PDFBackground: Chronic kidney disease (CKD) is a highly prevalent condition with complications such as constipation, inflammation, and dietary restrictions. Gut microbiota is an ecosystem of trillions of bacteria and other microorganisms such as viruses, fungi, and other eukaryotes. This review aimed to analyze the correlation between CKD and the microbiota.
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