CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Gastrointestinal Agents

  • "Muscle-Gut-Brain Axis": Can Physical Activity Help Patients with Alzheimer's Disease Due to Microbiome Modulation?

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    Abstract Title:

    "Muscle-Gut-Brain Axis": Can Physical Activity Help Patients with Alzheimer's Disease Due to Microbiome Modulation?

    Abstract Source:

    J Alzheimers Dis. 2019 Aug 24. Epub 2019 Aug 24. PMID: 31476155

    Abstract Author(s):

    Petr Schlegel, Michal Novotny, Blanka Klimova, Martin Valis

    Article Affiliation:

    Petr Schlegel

    Abstract:

    Alzheimer's disease (AD) is one of the most common forms of dementia, which cannot be cured at the moment. Therefore, researchers also look for the alternative approaches to its treatment. It is suggested that changes in human gut microbiome mediated by exercise could influence the development and progression of AD and a new term"muscle-gut-brain axis"is introduced. There is much evidence to support this assumption. The gut microbiology is closely related to a wide range of diseases of the nervous system and therefore any negative qualitative and quantitative changes in the composition of the gut microbiota can potentially contribute to the pathophysiology of AD. Research shows that the treatment of intestinal dysbiosis with probiotics/synbiotics/eubiotics can prevent or alleviate the symptoms of these chronic neurological diseases. Studies also point to the positive effects of movement on the health of seniors. A positive correlation can be found between cognitive functions and physical stress, both in the elderly and in AD patients. Even short-term interventions with a relatively low frequency seem to produce positive results, while physical activities can be performed by using relatively simple and cost-effective means. In addition, physical activity can significantly modulate gut microbiome. Thus, it can be concluded that physical activity in humans seems to correlate with gut microbiome, which can prevent the incidence and development of AD.

  • Aberrant Mitochondrial Morphology and Function in the BTBR Mouse Model of Autism Is Improved by Two Weeks of Ketogenic Diet. 📎

    Abstract Title:

    Aberrant Mitochondrial Morphology and Function in the BTBR Mouse Model of Autism Is Improved by Two Weeks of Ketogenic Diet.

    Abstract Source:

    Int J Mol Sci. 2020 May 5 ;21(9). Epub 2020 May 5. PMID: 32380723

    Abstract Author(s):

    Younghee Ahn, Rasha Sabouny, Bianca R Villa, Nellie C Yee, Richelle Mychasiuk, Golam M Uddin, Jong M Rho, Timothy E Shutt

    Article Affiliation:

    Younghee Ahn

    Abstract:

    Autism spectrum disorder (ASD) is a highly prevalent neurodevelopmental disorder that exhibits a common set of behavioral and cognitive impairments. Although the etiology of ASD remains unclear, mitochondrial dysfunction has recently emerged as a possible causative factor underlying ASD. The ketogenic diet (KD) is a high-fat, low-carbohydrate diet that augments mitochondrial function, and has been shown to reduce autistic behaviors in both humans and in rodent models of ASD. The aim of the current study was to examine mitochondrial bioenergetics in the BTBR mouse model of ASD and to determine whether the KD improves mitochondrial function. We also investigated changes in mitochondrial morphology, which can directly influence mitochondrial function. We found that BTBR mice had altered mitochondrial function and exhibited smaller more fragmented mitochondria compared to C57BL/6J controls, and that supplementation with the KD improved both mitochondrial function and morphology. We also identified activating phosphorylation of two fission proteins, pDRP1and pMFF, in BTBR mice, consistent with the increased mitochondrial fragmentation that we observed. Intriguingly, we found that the KD decreased pDRP1levels in BTBR mice, likely contributing to the restoration of mitochondrial morphology. Overall, these data suggest that impaired mitochondrial bioenergetics and mitochondrial fragmentation may contribute to the etiology of ASD and that these alterations can be reversed with KD treatment.

  • Anti-oxidative and anti-inflammatory effects of ginger in health and physical activity: review of current evidence📎

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    Abstract Title:

    Anti-oxidative and anti-inflammatory effects of ginger in health and physical activity: review of current evidence.

    Abstract Source:

    Int J Prev Med. 2013 Apr ;4(Suppl 1):S36-42. PMID: 23717767

    Abstract Author(s):

    Nafiseh Shokri Mashhadi, Reza Ghiasvand, Gholamreza Askari, Mitra Hariri, Leila Darvishi, Mohammad Reza Mofid

    Article Affiliation:

    Nafiseh Shokri Mashhadi

    Abstract:

    BACKGROUND:Ginger (Zingiber officinale Rosc.) belongs to the family Zingiberaceae. The health-promoting perspective of ginger is attributed to its rich phytochemistry. This study aimed to review the current evidence on ginger effects as an anti-inflammatory and anti-oxidative.

    METHODS:We searched MEDLINE for related publications using"ginger"and"anti-oxidative"and"ginger"and"anti-inflammatory"as keywords. This search had considered Papers that had been published between 2000 and 2010 without any filter.

    CONCLUSIONS:The anticancer potential of ginger is well documented and its functional ingredients like gingerols, shogaol, and paradols are the valuable ingredients which can prevent various cancers. This review concludes to favor ginger but some ambiguities necessitate further research before claiming its efficacy.

  • Does Exercise Alter Gut Microbial Composition? A Systematic Review.

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    Abstract Title:

    Does Exercise Alter Gut Microbial Composition? A Systematic Review.

    Abstract Source:

    Med Sci Sports Exerc. 2019 01 ;51(1):160-167. PMID: 30157109

    Abstract Author(s):

    Cassie M Mitchell, Brenda M Davy, Matthew W Hulver, Andrew P Neilson, Brian J Bennett, Kevin P Davy

    Article Affiliation:

    Cassie M Mitchell

    Abstract:

    PURPOSE:The objective of this systematic review of literature was to evaluate and summarize published research that has investigated the association between exercise and gut microbial composition in mammals.

    METHODS:This review was conducted according to the Preferred Reporting Items for Systematic Reviews and Meta-Analyses guidelines. The databases searched for this review included: PubMed; PubMed Central; Medline; Cumulative Index of Nursing and Allied Health Literature; Web of Science; Commonwealth Agricultural Bureaux Direct; Health Source: Nursing Academic Edition; Clinicaltrials.gov; International Prospective Register of Systematic Reviews (PROSPERO); and the Cochrane Library.

    RESULTS:Twenty-five articles met the inclusion criteria: 17 rodent, one canine, two equine, and five human studies. All studies in rodents and equines included control groups; whereas only one study in humans included a control group. The remaining were cross-sectional or cohort studies. All studies in rodents controlled for dietary intake and one study in humans implemented a 3-d dietary control. Eleven studies assessed voluntary exercise and 13 studies used forced exercise. Diversification within the Firmicutes phylum was consistently observed in exercise groups across studies. There were no consistent trends within Bacteroidetes, Actinobacteria, or Proteobacteria phyla. In general, the potential interactions between exercise and diet composition and their respective influences on the intestinal microbiome were not well characterized.

    CONCLUSIONS:Exercise was associated with changes in gut microbial composition, an increase in butyrate producing bacteria and an increase in fecal butyrate concentrations independent of diet in rodents and humans. The overall quality of evidence in the studies in humans was low and the risk of bias was unclear. Future studies with standardized reporting and rigorous dietary control in larger samples are needed to further determine the influence of exercise on gut microbial composition.

  • Effects of Auricular Acupressure on Women With Irritable Bowel Syndrome.

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    Abstract Title:

    Effects of Auricular Acupressure on Women With Irritable Bowel Syndrome.

    Abstract Source:

    Gastroenterol Nurs. 2019 Jun 25. Epub 2019 Jun 25. PMID: 31246633

    Abstract Author(s):

    Gee Youn Go, Hyojung Park

    Article Affiliation:

    Gee Youn Go

    Abstract:

    The purpose of this study was to examine the effect of auricular acupressure on bowel symptoms, stress, mental health, and heart rate variability in women with irritable bowel syndrome (IBS). A quasi-experimental study design with a nonequivalent control group assessed a total sample of 56 women diagnosed with IBS according to Rome III criteria. There were 29 women in the experimental group who received auricular acupressure; 27 women were in the control group. Semen sinapis albae seeds were used to administer acupressure to four auricular points: endocrine, large intestine, lung, and Shenmen for 5 days/week for 4 weeks; the control group received no treatment. Bowel symptoms, stress, mental health, and heart rate variability were measured twice, once before and once after the intervention. Chi-square tests, t tests, and paired t tests were used for analysis. The experimental group had decreased loose stools, abdominal pain, diarrhea, abdominal discomfort, stress, and heart rate variability compared with the control group (p<.05). Auricular acupressure was effective for symptom improvement in patients with IBS.

  • Effects of chronic exercise on gut microbiota and intestinal barrier in human with type 2 diabetes.

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    Abstract Title:

    Effects of chronic exercise on gut microbiota and intestinal barrier in human with type 2 diabetes.

    Abstract Source:

    Minerva Med. 2019 Feb ;110(1):3-11. PMID: 30667205

    Abstract Author(s):

    Evasio Pasini, Giovanni Corsetti, Deodato Assanelli, Cristian Testa, Claudia Romano, Francesco S Dioguardi, Roberto Aquilani

    Article Affiliation:

    Evasio Pasini

    Abstract:

    BACKGROUND:Intestinal dysbiosis has been proposed as a possible contributor of the development of type 2 diabetes (T2D). Indeed, commensal fungi and opportunistic bacteria stimulate the local immune system, altering intestinal permeability with consequent leaky gut, which in turn activates systemic inflammation responsible for insulin resistance. It is also well known that chronic exercise improves glucose control and diabetes-induced damage. The aim of this study was to evaluate the role of chronic exercise on gut flora composition and leaky gut in T2D stable patients.

    METHODS:Thirty clinically stable patients with T2D were studied before and after a six months program of endurance, resistance and flexibility training. Metabolic and anthropometric evaluations were carried out. Gut flora and intestinal permeability were measured in stools by selective agar culture medium and molecular biology measurements of zonulin, which is the protein that modulates enterocyte tight junctions.

    RESULTS:Diabetes causes significant intestinal mycetes overgrowth, increased intestinal permeability and systemic low-grade inflammation. However, exercise improved glycemia, functional and anthropometric variables. Moreover, chronic exercise reduced intestinal mycetes overgrowth, leaky gut, and systemic inflammation. Interestingly, these variables are closely correlated.

    CONCLUSIONS:Exercise controls diabetes by also modifying intestinal microbiota composition and gut barrier function. This data shows an additional mechanism of chronic exercise and suggests that improving gut flora could be an important step in tailored therapies of T2D.

  • Efficacy of Non-Invasive Auricular Acupressure for Treating Constipation in Leukemia Patients Undergoing Chemotherapy: A Systematic Review.

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    Abstract Title:

    Efficacy of Non-Invasive Auricular Acupressure for Treating Constipation in Leukemia Patients Undergoing Chemotherapy: A Systematic Review.

    Abstract Source:

    Complement Med Res. 2018 ;25(6):406-412. Epub 2018 Oct 30. PMID: 30372690

    Abstract Author(s):

    Chun-Ye Chen, Xiao-Xu Lin, Xing Wang

    Article Affiliation:

    Chun-Ye Chen

    Abstract:

    BACKGROUND:The aim of this systematic review was to evaluate the available evidence from randomized controlled trials (RCTs) of auricular acupressure (AA) therapy for preventing constipation in leukemia patients undergoing chemotherapy.

    METHODS:We searched 5 English databases and 4 Chinese databases, from their inception until August 2017. Quantitative syntheses of RCTs were conducted using RevMan 5.3 software. Study selection, data extraction, and validation were performed independently by 2 reviewers. Cochrane criteria for risk-of-bias were used to assess the methodological quality of the trials.

    RESULTS:Five RCTs met the inclusion criteria, and most were of low methodological quality. All RCTs compared AA + routine care with routine care alone. Our analysis found that complementary effects of AA can improve the scores of the Bristol Stool Form (BSF), the Constipation Assessment Scale (CAS), and the Patient Assessment of Constipation-Quality of Life (PAC-QOL). However, the same positive results were not found in terms of the Fatigue Severity Scale (FSS), the EuroQoL 5-domain (EQ-5D), and the Hospital Anxiety Depression Scale (HADS).

    CONCLUSIONS:Overall, as a potential safety therapy, AA may be recommended in addition to routine care including use of laxatives to prevent constipation in leukemia patients undergoing chemotherapy. In the future, more rigorous RCTs must be conducted to overcome the limitations of our existing data and to confirm the effect and safety of AA for managing constipation in leukemia patients undergoing chemotherapy.

  • Endurance exercise and gut microbiota: A review📎

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    Abstract Title:

    Endurance exercise and gut microbiota: A review.

    Abstract Source:

    J Sport Health Sci. 2017 Jun ;6(2):179-197. Epub 2016 May 10. PMID: 30356594

    Abstract Author(s):

    Núria Mach, Dolors Fuster-Botella

    Article Affiliation:

    Núria Mach

    Abstract:

    Background:The physiological and biochemical demands of intense exercise elicit both muscle-based and systemic responses. The main adaptations to endurance exercise include the correction of electrolyte imbalance, a decrease in glycogen storage and the increase of oxidative stress, intestinal permeability, muscle damage, and systemic inflammatory response. Adaptations to exercise might be influenced by the gut microbiota, which plays an important role in the production, storage, and expenditure of energy obtained from the diet as well as in inflammation, redox reactions, and hydration status.

    Methods:A systematic and comprehensive search of electronic databases, including MEDLINE, Scopus, ClinicalTrials.gov, ScienceDirect, Springer Link, and EMBASE was done. The search process was completed using the keywords:"endurance","exercise","immune response","microbiota","nutrition", and"probiotics".

    Results:Reviewed literature supports the hypothesis that intestinal microbiota might be able to provide a measureable, effective marker of an athlete's immune function and that microbial composition analysis might also be sensitive enough to detect exercise-induced stress and metabolic disorders. The review also supports the hypothesis that modifying the microbiota through the use of probiotics could be an important therapeutic tool to improve athletes' overall general health, performance, and energy availability while controlling inflammation and redox levels.

    Conclusion:The present review provides a comprehensive overview of how gut microbiota may have a key role in controlling the oxidative stress and inflammatory responses as well as improving metabolism and energy expenditure during intense exercise.

  • Exercise Alters Gut Microbiota Composition and Function in Lean and Obese Humans.

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    Abstract Title:

    Exercise Alters Gut Microbiota Composition and Function in Lean and Obese Humans.

    Abstract Source:

    Med Sci Sports Exerc. 2018 04 ;50(4):747-757. PMID: 29166320

    Abstract Author(s):

    Jacob M Allen, Lucy J Mailing, Grace M Niemiro, Rachel Moore, Marc D Cook, Bryan A White, Hannah D Holscher, Jeffrey A Woods

    Article Affiliation:

    Jacob M Allen

    Abstract:

    PURPOSE:Exercise is associated with altered gut microbial composition, but studies have not investigated whether the gut microbiota and associated metabolites are modulated by exercise training in humans. We explored the impact of 6 wk of endurance exercise on the composition, functional capacity, and metabolic output of the gut microbiota in lean and obese adults with multiple-day dietary controls before outcome variable collection.

    METHODS:Thirty-two lean (n = 18 [9 female]) and obese (n = 14 [11 female]), previously sedentary subjects participated in 6 wk of supervised, endurance-based exercise training (3 d·wk) that progressed from 30 to 60 min·d and from moderate (60% of HR reserve) to vigorous intensity (75% HR reserve). Subsequently, participants returned to a sedentary lifestyle activity for a 6-wk washout period. Fecal samples were collected before and after 6 wk of exercise, as well as after the sedentary washout period, with 3-d dietary controls in place before each collection.

    RESULTS:β-diversity analysis revealed that exercise-induced alterations of the gut microbiota were dependent on obesity status. Exercise increased fecal concentrations of short-chain fatty acids in lean, but not obese, participants. Exercise-induced shifts in metabolic output of the microbiota paralleled changes in bacterial genes and taxa capable of short-chain fatty acid production. Lastly, exercise-induced changes in the microbiota were largely reversed once exercise training ceased.

    CONCLUSION:These findings suggest that exercise training induces compositional and functional changes in the human gut microbiota that are dependent on obesity status, independent of diet and contingent on the sustainment of exercise.

  • Exercise influence on the microbiome-gut-brain axis.

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    Abstract Title:

    Exercise influence on the microbiome-gut-brain axis.

    Abstract Source:

    Gut Microbes. 2019 Jan 31:1-14. Epub 2019 Jan 31. PMID: 30704343

    Abstract Author(s):

    Alyssa Dalton, Christine Mermier, Micah Zuhl

    Article Affiliation:

    Alyssa Dalton

    Abstract:

    The microbiome in the gut is a diverse environment, housing the majority of our bacterial microbes. This microecosystem has a symbiotic relationship with the surrounding multicellular organism, and a balance and diversity of specific phyla of bacteria support general health. When gut bacteria diversity diminishes, there are systemic consequences, such as gastrointestinal and psychological distress. This pathway of communication is known as the microbiome-gut-brain axis. Interventions such as probiotic supplementation that influence microbiome also improve both gut and brain disorders. Recent evidence suggests that aerobic exercise improves the diversity and abundance of genera from the Firmcutes phylum, which may be the link between the positive effects of exercise on the gut and brain. The purpose of this review is to explain the complex communication pathway of the microbiome-gut-brain axis and further examine the role of exercise on influencing this communication highway.

  • Exercise therapy of patients with irritable bowel syndrome: A systematic review of randomized controlled trials.

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    Abstract Title:

    Exercise therapy of patients with irritable bowel syndrome: A systematic review of randomized controlled trials.

    Abstract Source:

    Neurogastroenterol Motil. 2019 02 ;31(2):e13461. Epub 2018 Sep 19. PMID: 30232834

    Abstract Author(s):

    Changli Zhou, Enfa Zhao, Yuewei Li, Yong Jia, Feng Li

    Article Affiliation:

    Changli Zhou

    Abstract:

    BACKGROUND:As drug use has limitations in the treatment of irritable bowel syndrome (IBS), increasing attention is being paid to nondrug therapies and complementary treatments, especially exercise. It is known that bowel movements are more frequent and colon transit is more rapid in physically active individuals than in sedentary individuals. However, the effects of exercise on IBS are unclear.

    PURPOSE:We conducted a systematic review to assess the effects of exercise on IBS.

    METHODS:We searched PubMed, Web of Science, EMBASE, Cochrane Library, and two Chinese databases (Wanfang Database and Chinese Biomedical Literature [CBM]) for eligible studies. We extracted and pooled relevant information regarding the effects of exercise in patients with IBS. The primary outcomes were gastrointestinal symptoms, quality of life, depression, and anxiety.

    KEY RESULTS:A total of 683 patients with IBS from 14 randomized controlled trials met our inclusion criteria. The exercise interventions in this review were yoga, walking/aerobic physical activity, Tai Ji, mountaineering, and Baduanjin qigong activity. The results of this review suggested exercise had significant benefits for patients with IBS, but studies were limited by the strong risk of bias.

    CONCLUSIONS AND INFERENCES:Our findings suggest that exercise is potentially a feasible and effective treatment for IBS patients. However, because of methodologic issues, no firm conclusions could be drawn about the true effects of this intervention. Researchers should design a rigorous study to assess the effects of exercise on IBS.

  • Exercise Training Modulates Gut Microbiota Profile and Improves Endotoxemia📎

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    Abstract Title:

    Exercise Training Modulates Gut Microbiota Profile and Improves Endotoxemia.

    Abstract Source:

    Med Sci Sports Exerc. 2019 Aug 16. Epub 2019 Aug 16. PMID: 31425383

    Abstract Author(s):

    Kumail K Motiani, M Carmen Collado, Jari-Joonas Eskelinen, Kirsi A Virtanen, Eliisa Löyttyniemi, Seppo Salminen, Pirjo Nuutila, Kari K Kalliokoski, Jarna C Hannukainen

    Article Affiliation:

    Kumail K Motiani

    Abstract:

    INRTRODUCTION:Intestinal metabolism and microbiota profiles are impaired in obesity and insulin resistance. Moreover, dysbiotic gut microbiota has been suggested to promote systemic low-grade inflammation and insulin resistance through the release of endotoxins particularly lipopolysaccharides. We have previously shown that exercise training improves intestinal metabolism in healthy men. To understand whether changes in intestinal metabolism interact with gut microbiota and its release of inflammatory markers, we studied the effects of sprint interval (SIT) and moderate intensity continuous training (MICT) on intestinal metabolism and microbiota in insulin resistance.

    METHODS:Twenty-six, sedentary subjects (prediabetic n=9, T2D n=17; age 49[SD 4] years; BMI 30.5[SD 3]) were randomized into SIT or MICT. Intestinal insulin-stimulated glucose uptake (GU) and fatty acid uptake (FAU) from circulation were measured using PET. Gut microbiota composition was analysed by 16S rRNA gene sequencing and serum inflammatory markers with multiplex assays and enzyme-linked immunoassay kit.

    RESULTS:VO2peak improved only after SIT (p=0.01). Both training modes reduced systematic and intestinal inflammatory markers (TNFα, LBP) (time p<0.05). Training modified microbiota profile by increasing Bacteroidetes phylum (time p=0.03) and decreasing Firmicutes/Bacteroidetes ratio (time p=0.04). Moreover, there was a decrease in Clostridium genus (time p=0.04) and Blautia (time p=0.051). Only MICT decreased jejunal FAU (p=0.02). Training had no significant effect on intestinal GU. Colonic GU associated positively with Bacteroidetes and inversely with Firmicutes phylum, ratio Firmicutes/Bacteroidetes and Blautia genus.

    CONCLUSION:Intestinal substrate uptake associates with gut microbiota composition and activity and whole-body insulin sensitivity. Exercise training improves gut microbiota profiles and reduces endotoxemia.

  • Gastrointestinal Agents

  • Gut-Joint Axis: The Role of Physical Exercise on Gut Microbiota Modulation in Older People with Osteoarthritis. 📎

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    Abstract Title:

    Gut-Joint Axis: The Role of Physical Exercise on Gut Microbiota Modulation in Older People with Osteoarthritis.

    Abstract Source:

    Nutrients. 2020 Feb 22 ;12(2). Epub 2020 Feb 22. PMID: 32098380

    Abstract Author(s):

    Alessandro de Sire, Roberto de Sire, Valentina Petito, Letizia Masi, Carlo Cisari, Antonio Gasbarrini, Franco Scaldaferri, Marco Invernizzi

    Article Affiliation:

    Alessandro de Sire

    Abstract:

    Osteoarthritis (OA) is considered one of the most common joint disorders worldwide and its prevalence is constantly increasing due to the global longevity and changes in eating habits and lifestyle. In this context, the role of gut microbiota (GM) in the pathogenesis of OA is still unclear. Perturbation of GM biodiversity and function, defined as 'gut dysbiosis', might be involved in the development of inflammaging, one of the main risk factors of OA development. It is well known that physical exercise could play a key role in the prevention and treatment of several chronic diseases including OA, and it is recommended by several guidelines as a first line intervention. Several studies have shown that physical exercise could modulate GM composition, boosting intestinal mucosal immunity, increasing the Bacteroidetes-Firmicutes ratio, modifying the bile acid profile, and improving the production of short chain fatty acids. Moreover, it has been shown that low intensity exercise might reduce the risk of gastrointestinal diseases, confirming the hypothesis of a strict correlation between skeletal muscle and GM. However, up to date, there is still a lack of clinical trials focusing on this research field. Therefore, in this narrative, we aimed to summarize the state-of-the-art of the literature regarding the correlation between these conditions, supporting the hypothesis of a 'gut-joint axis' and highlighting the role of physical exercise combined with adequate diet and probiotic supplements in rebalancing microbial dysbiosis.

  • Human Breast Milk Promotes the Secretion of Potentially Beneficial Metabolites by ProbioticDSM 17938. 📎

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    Abstract Title:

    Human Breast Milk Promotes the Secretion of Potentially Beneficial Metabolites by ProbioticDSM 17938.

    Abstract Source:

    Nutrients. 2019 Jul 9 ;11(7). Epub 2019 Jul 9. PMID: 31323989

    Abstract Author(s):

    Tu T Mai, Dat Q Tran, Stefan Roos, J Marc Rhoads, Yuying Liu

    Article Affiliation:

    Tu T Mai

    Abstract:

    Human breast milk (HBM) may have beneficial effects onDSM 17938 (LR 17938) -mediated immunomodulation. We aimed to determine the effects of HBM on proliferation of LR 17938 in vitro and its associated proteins and metabolites in culture, in order to provide mechanistic insights into the health benefits of LR 17938. LR 17938 was cultured anaerobically in MRS bacterial culture media, HBM (from 6 mothers), and 2 types of cow-milk formula. The colony-forming unit (CFU) was calculated to evaluate LR 17938 growth. Sixteen-hour-fermented supernatants were used for metabolomics, and bacterial lysates were used for proteomics analysis. We found that growth of LR 17938 was 10 times better in HBM than in formula. We detected 261/452 metabolites upregulated when LR 17938 cultured in HBM compared to in formula, mainly participating in the glyoxylate cycle (succinate), urea cycle (citrulline), methionine methylation (N-acetylcysteine), and polyamine synthesis (spermidine). The significantly up-regulated enzymes were also involved in the formation of acetyl-CoA in the glyoxylate cycle and the antioxidant N-acetylcysteine. In conclusion, HBM enhances the growth of LR 17938 compared to formula and promotes LR 17938-associated metabolites that relate to energy and antioxidant status, which may be linked to the physiological effects of.

  • Impact of Physical Exercise on Gut Microbiome, Inflammation, and the Pathobiology of Metabolic Disorders📎

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    Abstract Title:

    Impact of Physical Exercise on Gut Microbiome, Inflammation, and the Pathobiology of Metabolic Disorders.

    Abstract Source:

    Rev Diabet Stud. 2019 ;15:35-48. Epub 2019 Aug 4. PMID: 31380886

    Abstract Author(s):

    Muhammad U Sohail, Hadi M Yassine, Aaqib Sohail, Asmaa A Al Thani

    Article Affiliation:

    Muhammad U Sohail

    Abstract:

    BACKGROUND:The gastrointestinal tract (GIT) harbors a complex and diverse microbial composition that outnumbers our own body cells and their gene contents. These microbes play a significant role in host metabolism and energy homeostasis. Emerging evidence suggests that the GIT microbiome significantly contributes to host health and that impairments in the microbiome may cause the development of metabolic diseases. The microbiome architecture is shaped by several genetic and environmental factors, including nutrition and physical activity. Physical exercise has preventive or therapeutic effects in respiratory, cardiovascular, neuroendocrine, and muscular diseases. Yet, we still have little information of the beneficial effects of physical exercise on GIT health and microbial composition. Furthermore, we are not aware whether exercise-derived benefits on microbiome diversity can beneficially influence other tissues and body organs.

    OBJECTIVES:The aim of this article is to review the available literature on exercise-induced microbiome changes and to explain how these changes may induce inflammatory, immune, and oxidative responses that may contribute to the improvement of metabolic disorders.

    METHODS:A systemic and comprehensive search of the relevant literature using MEDLINE and Google Scholar databases was conducted during fall 2018 and spring 2019. The search identified sixty-two research and review articles that discussed exercise-induced microbiome changes.

    RESULTS:The review of the relevant literature suggests that exercise-induced microbial changes affect the host's immune pathways and improve energy homeostasis. Microbes release certain neuroendocrine and immune-modulatory factors that may lower inflammatory and oxidative stress and relieve patients suffering from metabolic disorders.

    CONCLUSIONS:Exercise-induced changes in microbial diversity are able to improve tissue metabolism, cardiorespiratory fitness, and insulin resistance.

  • Ketogenic Diets Alter the Gut Microbiome Resulting in Decreased Intestinal Th17 Cells. 📎

    Abstract Title:

    Ketogenic Diets Alter the Gut Microbiome Resulting in Decreased Intestinal Th17 Cells.

    Abstract Source:

    Cell. 2020 May 14. Epub 2020 May 14. PMID: 32437658

    Abstract Author(s):

    Qi Yan Ang, Margaret Alexander, John C Newman, Yuan Tian, Jingwei Cai, Vaibhav Upadhyay, Jessie A Turnbaugh, Eric Verdin, Kevin D Hall, Rudolph L Leibel, Eric Ravussin, Michael Rosenbaum, Andrew D Patterson, Peter J Turnbaugh

    Article Affiliation:

    Qi Yan Ang

    Abstract:

    Very low-carbohydrate, high-fat ketogenic diets (KDs) induce a pronounced shift in metabolic fuel utilization that elevates circulating ketone bodies; however, the consequences of these compounds for host-microbiome interactions remain unknown. Here, we show that KDs alter the human and mouse gut microbiota in a manner distinct from high-fat diets (HFDs). Metagenomic and metabolomic analyses of stool samples from an 8-week inpatient study revealed marked shifts in gut microbial community structure and function during the KD. Gradient diet experiments in mice confirmed the unique impact of KDs relative to HFDs with a reproducible depletion of bifidobacteria. In vitro and in vivo experiments showed that ketone bodies selectively inhibited bifidobacterial growth. Finally, mono-colonizations and human microbiome transplantations into germ-free mice revealed that the KD-associated gut microbiota reduces the levels of intestinal pro-inflammatory Th17 cells.Together, these results highlight the importance of trans-kingdom chemical dialogs for mediating the host response to dietary interventions.

  • Moderate Exercise Has Limited but Distinguishable Effects on the Mouse Microbiome📎

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    Abstract Title:

    Moderate Exercise Has Limited but Distinguishable Effects on the Mouse Microbiome.

    Abstract Source:

    mSystems. 2017 Jul-Aug;2(4). Epub 2017 Aug 22. PMID: 28845459

    Abstract Author(s):

    Emily V Lamoureux, Scott A Grandy, Morgan G I Langille

    Article Affiliation:

    Emily V Lamoureux

    Abstract:

    The gut microbiome is known to have a complex yet vital relationship with host health. While both exercise and the gut microbiome have been shown to impact human health independently, the direct effects of moderate exercise on the intestinal microbiota remain unclear. In this study, we compared gut microbial diversity and changes in inflammatory markers associated with exercise over an 8-week period in mice that performed either voluntary exercise (VE) (n = 10) or moderate forced exercise (FE) (n = 11) and mice that did not perform any exercise (n = 21). VE mice, but not FE mice, had increased food intake and lean body mass compared to sedentary mice. The levels of inflammatory markers associated with exercise were similar for mice in all three groups. Traditional microbial profiles comparing operational taxonomic units (OTUs) in samples (P>0.1) and multivariate analysis of beta diversity via Adonis testing (P>0.1) did not identify significantly altered taxonomic profiles in the voluntary or forced exercise group compared to the sedentary controls. However, a random forests machine learning model, which takes into account the relationships between bacteria in a community, classified voluntary exercisers and nonexercisers with 97% accuracy at 8 weeks. The top bacteria used by the model allowed us to identify known taxa (Bacteroides, S24-7, and Lactobacillus) and novel taxa (Rikenellaceae and Lachnospiraceae) associated with exercise. Although aerobic exercise in mice did not result in significant changes of abundance in gut microbes or in host inflammatory response, more sophisticated computational methods could identify some microbial shifts. More study is needed on the effects of various exercise intensities and their impact on the gut microbiome. IMPORTANCE The bacteria that live in our gut have a complex yet vital relationshipwith our health. Environmental factors that influence the gut microbiome are of great interest, as recent research demonstrates that these microbes, mostly bacteria, are important for normal host physiology. Diseases such as obesity, diabetes, inflammatory bowel disease, and colon cancer have also been linked to shifts in the microbiome. Exercise is known to have beneficial effects on these diseases; however, much less is known about its direct impact on the gut microbiome. Our results illustrate that exercise has a moderate but measurable effect on gut microbial communities in mice. These methods can be used to provide important insight into other factors affecting the microbiome and our health.

  • Preventive Effect of Spontaneous Physical Activity on the Gut-Adipose Tissue in a Mouse Model That Mimics Crohn's Disease Susceptibility📎

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    Abstract Title:

    Preventive Effect of Spontaneous Physical Activity on the Gut-Adipose Tissue in a Mouse Model That Mimics Crohn's Disease Susceptibility.

    Abstract Source:

    Cells. 2019 Jan 9 ;8(1). Epub 2019 Jan 9. PMID: 30634469

    Abstract Author(s):

    Florie Maillard, Emilie Vazeille, Pierre Sauvanet, Pascal Sirvent, Richard Bonnet, Lydie Combaret, Pierre Chausse, Caroline Chevarin, Yolanda Fernandez Otero, Geoffrey Delcros, Vivien Chavanelle, Nathalie Boisseau, Nicolas Barnich

    Article Affiliation:

    Florie Maillard

    Abstract:

    Crohn's disease is characterized by abnormal ileal colonization by adherent-invasive(AIEC) and expansion of mesenteric adipose tissue. This study assessed the preventive effect of spontaneous physical activity (PA) on the gut-adipose tissue in a mouse model that mimics Crohn's disease susceptibility. Thirty-five CEABAC10 male mice performed spontaneous PA (wheel group; n = 24) or not (controls; n = 11) for 12 weeks. At week 12, mice were orally challenged with the AIEC LF82 strain for 6 days. Body composition, glycaemic control, intestinal permeability, gut microbiota composition, and fecal short-chain fatty acids were assessed in both groups. Animals were fed a high fat/high sugar diet throughout the study. After exposure to AIEC, mesenteric adipose tissue weight was lower in the wheel group. Tight junction proteins expression increased with spontaneous PA, whereas systemic lipopolysaccharides were negatively correlated with the covered distance.anddecreased in controls, whereasandincreased in the wheel group. Fecal propionate and butyrate were also higher in the wheel group. In conclusion, spontaneous physical activity promotes healthy gut microbiota composition changes and increases short-chain fatty acids in CEABAC10 mice fed a Western diet and exposed to AIEC to mimic Crohn's disease.

  • Progress of the mechanism research of acupuncture in treatment of diet-induced obesity

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    Abstract Title:

    [Progress of the mechanism research of acupuncture in treatment of diet-induced obesity].

    Abstract Source:

    Zhen Ci Yan Jiu. 2020 Mar 25 ;45(3):255-9. PMID: 32202720

    Abstract Author(s):

    Feng Ya Zhu, Zi Meng Li, Li Jie Tang, Zheng Kang Liu, Xi Wu

    Article Affiliation:

    Feng Ya Zhu

    Abstract:

    The literature of experimental research on diet-induced obesity treated with acupuncture was retrieved. The aspects of epigenetics, neuroendocrine system, intestinal flora, inflammatory response, oxidative stress and substance metabolism of the mechanism of acupuncture in the treatment of diet-induced obesity were summarized. It is suggested that the potential mechanism of acupuncture in the treatment of diet-induced obesity should be discussed in the aspects of the interaction of Toll-like receptors on obesity-intestinal flora-immune function, the improvement of insulin resistance, epigenetics and antioxidant stress.

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