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1.
Pancreatology ; 23(1): 48-56, 2023 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-36517351

RESUMEN

BACKGROUND: PRSS1 and PRSS2 constitute the only functional copies of a tandemly-arranged five-trypsinogen-gene cluster (i.e., PRSS1, PRSS3P1, PRSS3P2, TRY7 and PRSS2) on chromosome 7q35. Variants in PRSS1 and PRSS2, including missense and copy number variants (CNVs), have been reported to predispose to or protect against chronic pancreatitis (CP). We wondered whether a common trypsinogen pseudogene deletion CNV (that removes two of the three trypsinogen pseudogenes, PRSS3P2 and TRY7) might be associated with CP causation/predisposition. METHODS: We analyzed the common PRSS3P2 and TRY7 deletion CNV in a total of 1536 CP patients and 3506 controls from France, Germany, India and Japan by means of quantitative fluorescent multiplex polymerase chain reaction. RESULTS: We demonstrated that the deletion CNV variant was associated with a protective effect against CP in the French, German and Japanese cohorts whilst a trend toward the same association was noted in the Indian cohort. Meta-analysis under a dominant model yielded a pooled odds ratio (OR) of 0.68 (95% confidence interval (CI) 0.52-0.89; p = 0.005) whereas an allele-based meta-analysis yielded a pooled OR of 0.84 (95% CI 0.77-0.92; p = 0.0001). This protective effect is explicable by reference to the recent finding that the still functional PRSS3P2/TRY7 pseudogene enhancers upregulate pancreatic PRSS2 expression. CONCLUSIONS: The common PRSS3P2 and TRY7 deletion CNV was associated with a reduced risk for CP. This finding provides additional support for the emerging view that dysregulated PRSS2 expression represents a discrete mechanism underlying CP predisposition or protection.


Asunto(s)
Pancreatitis Crónica , Tripsinógeno , Humanos , Alelos , Variaciones en el Número de Copia de ADN/genética , Predisposición Genética a la Enfermedad , Genotipo , Mutación , Pancreatitis Crónica/genética , Tripsina/genética , Tripsinógeno/genética
2.
Int J Cancer ; 150(8): 1255-1268, 2022 04 15.
Artículo en Inglés | MEDLINE | ID: mdl-34843121

RESUMEN

Bile acids (BAs) play different roles in cancer development. Some are carcinogenic and BA signaling is also involved in various metabolic, inflammatory and immune-related processes. The liver is the primary site of BA synthesis. Liver dysfunction and microbiome compositional changes, such as during hepatocellular carcinoma (HCC) development, may modulate BA metabolism increasing concentration of carcinogenic BAs. Observations from prospective cohorts are sparse. We conducted a study (233 HCC case-control pairs) nested within a large observational prospective cohort with blood samples taken at recruitment when healthy with follow-up over time for later cancer development. A targeted metabolomics method was used to quantify 17 BAs (primary/secondary/tertiary; conjugated/unconjugated) in prediagnostic plasma. Odd ratios (OR) for HCC risk associations were calculated by multivariable conditional logistic regression models. Positive HCC risk associations were observed for the molar sum of all BAs (ORdoubling  = 2.30, 95% confidence intervals [CI]: 1.76-3.00), and choline- and taurine-conjugated BAs. Relative concentrations of BAs showed positive HCC risk associations for glycoholic acid and most taurine-conjugated BAs. We observe an association between increased HCC risk and higher levels of major circulating BAs, from several years prior to tumor diagnosis and after multivariable adjustment for confounders and liver functionality. Increase in BA concentration is accompanied by a shift in BA profile toward higher proportions of taurine-conjugated BAs, indicating early alterations of BA metabolism with HCC development. Future studies are needed to assess BA profiles for improved stratification of patients at high HCC risk and to determine whether supplementation with certain BAs may ameliorate liver dysfunction.


Asunto(s)
Ácidos y Sales Biliares/sangre , Biomarcadores de Tumor/sangre , Carcinoma Hepatocelular/sangre , Neoplasias Hepáticas/sangre , Adulto , Anciano , Estudios de Casos y Controles , Estudios de Cohortes , Femenino , Humanos , Masculino , Persona de Mediana Edad
3.
N Engl J Med ; 390(14): 1339-1341, 2024 Apr 11.
Artículo en Inglés | MEDLINE | ID: mdl-38598804
4.
Gut ; 70(7): 1299-1308, 2021 07.
Artículo en Inglés | MEDLINE | ID: mdl-33004548

RESUMEN

OBJECTIVE: Chronic alcohol consumption is an important cause of liver-related deaths. Specific intestinal microbiota profiles are associated with susceptibility or resistance to alcoholic liver disease in both mice and humans. We aimed to identify the mechanisms by which targeting intestinal microbiota can improve alcohol-induced liver lesions. DESIGN: We used human associated mice, a mouse model of alcoholic liver disease transplanted with the intestinal microbiota of alcoholic patients and used the prebiotic, pectin, to modulate the intestinal microbiota. Based on metabolomic analyses, we focused on microbiota tryptophan metabolites, which are ligands of the aryl hydrocarbon receptor (AhR). Involvement of the AhR pathway was assessed using both a pharmacological approach and AhR-deficient mice. RESULTS: Pectin treatment modified the microbiome and metabolome in human microbiota-associated alcohol-fed mice, leading to a specific faecal signature. High production of bacterial tryptophan metabolites was associated with an improvement of liver injury. The AhR agonist Ficz (6-formylindolo (3,2-b) carbazole) reduced liver lesions, similarly to prebiotic treatment. Conversely, inactivation of the ahr gene in alcohol-fed AhR knock-out mice abrogated the beneficial effects of the prebiotic. Importantly, patients with severe alcoholic hepatitis have low levels of bacterial tryptophan derivatives that are AhR agonists. CONCLUSIONS: Improvement of alcoholic liver disease by targeting the intestinal microbiota involves the AhR pathway, which should be considered as a new therapeutic target.


Asunto(s)
Factores de Transcripción con Motivo Hélice-Asa-Hélice Básico/metabolismo , Intestinos/microbiología , Hepatopatías Alcohólicas/etiología , Microbiota/fisiología , Pectinas/farmacología , Receptores de Hidrocarburo de Aril/metabolismo , Triptófano/metabolismo , Animales , Factores de Transcripción con Motivo Hélice-Asa-Hélice Básico/agonistas , Factores de Transcripción con Motivo Hélice-Asa-Hélice Básico/genética , Carbazoles/farmacología , Modelos Animales de Enfermedad , Trasplante de Microbiota Fecal , Heces/química , Femenino , Humanos , Intestinos/fisiopatología , Hepatopatías Alcohólicas/tratamiento farmacológico , Hepatopatías Alcohólicas/metabolismo , Metaboloma/efectos de los fármacos , Ratones , Ratones Noqueados , Microbiota/efectos de los fármacos , Pectinas/uso terapéutico , Prebióticos , Receptores de Hidrocarburo de Aril/agonistas , Receptores de Hidrocarburo de Aril/genética
5.
J Psychiatry Neurosci ; 46(3): E358-E368, 2021 05 19.
Artículo en Inglés | MEDLINE | ID: mdl-34008933

RESUMEN

Background: The microbiota interacts with the brain through the gut-brain axis, and a distinct dysbiosis may lead to major depressive episodes. Bacteria can pass through the gut barrier and be found in the blood. Using a multiomic approach, we investigated whether a distinct blood microbiome and metabolome was associated with major depressive episodes, and how it was modulated by treatment. Methods: In this case-control multiomic study, we analyzed the blood microbiome composition, inferred bacterial functions and metabolomic profile of 56 patients experiencing a current major depressive episode and 56 matched healthy controls, before and after treatment, using 16S rDNA sequencing and liquid chromatography coupled to tandem mass spectrometry. Results: The baseline blood microbiome in patients with a major depressive episode was distinct from that of healthy controls (patients with a major depressive episode had a higher proportion of Janthinobacterium and lower levels of Neisseria) and changed after antidepressant treatment. Predicted microbiome functions confirmed by metabolomic profiling showed that patients who were experiencing a major depressive episode had alterations in the cyanoamino acid pathway at baseline. High baseline levels of Firmicutes and low proportions of Bosea and Tetrasphaera were associated with response to antidepressant treatment. Based on inferred baseline metagenomic profiles, bacterial pathways that were significantly associated with treatment response were related to xenobiotics, amino acids, and lipid and carbohydrate metabolism, including tryptophan and drug metabolism. Metabolomic analyses showed that plasma tryptophan levels are independently associated with response to antidepressant treatment. Limitations: Our study has some limitations, including a lack of information on blood microbiome origin and the lack of a validation cohort to confirm our results. Conclusion: Patients with depression have a distinct blood microbiome and metabolomic signature that changes after treatment. Dysbiosis could be a new therapeutic target and prognostic tool for the treatment of patients who are experiencing a major depressive episode.


Asunto(s)
Antidepresivos/uso terapéutico , Sangre/microbiología , Eje Cerebro-Intestino/efectos de los fármacos , Trastorno Depresivo Mayor/tratamiento farmacológico , Trastorno Depresivo Mayor/microbiología , Disbiosis/microbiología , Metaboloma/efectos de los fármacos , Microbiota/efectos de los fármacos , Adulto , Antidepresivos/farmacología , Bacterias/clasificación , Bacterias/efectos de los fármacos , Sangre/efectos de los fármacos , Metabolismo de los Hidratos de Carbono/efectos de los fármacos , Estudios de Casos y Controles , Trastorno Depresivo Mayor/sangre , Trastorno Depresivo Mayor/complicaciones , Disbiosis/sangre , Disbiosis/complicaciones , Disbiosis/metabolismo , Femenino , Microbioma Gastrointestinal/efectos de los fármacos , Humanos , Metabolismo de los Lípidos/efectos de los fármacos , Masculino
7.
Gut ; 67(5): 891-901, 2018 05.
Artículo en Inglés | MEDLINE | ID: mdl-28550049

RESUMEN

OBJECTIVE: Alcoholic liver disease (ALD) is a global health problem with limited therapeutic options. Intestinal barrier integrity and the microbiota modulate susceptibility to ALD. Akkermansia muciniphila, a Gram-negative intestinal commensal, promotes barrier function partly by enhancing mucus production. The aim of this study was to investigate microbial alterations in ALD and to define the impact of A. muciniphila administration on the course of ALD. DESIGN: The intestinal microbiota was analysed in an unbiased approach by 16S ribosomal DNA (rDNA) sequencing in a Lieber-DeCarli ALD mouse model, and faecal A. muciniphila abundance was determined in a cohort of patients with alcoholic steatohepatitis (ASH). The impact of A. muciniphila on the development of experimental acute and chronic ALD was determined in a preventive and therapeutic setting, and intestinal barrier integrity was analysed. RESULTS: Patients with ASH exhibited a decreased abundance of faecal A. muciniphila when compared with healthy controls that indirectly correlated with hepatic disease severity. Ethanol feeding of wild-type mice resulted in a prominent decline in A. muciniphila abundance. Ethanol-induced intestinal A. muciniphila depletion could be restored by oral A. muciniphila supplementation. Furthermore, A. muciniphila administration when performed in a preventive setting decreased hepatic injury, steatosis and neutrophil infiltration. A. muciniphila also protected against ethanol-induced gut leakiness, enhanced mucus thickness and tight-junction expression. In already established ALD, A. muciniphila used therapeutically ameliorated hepatic injury and neutrophil infiltration. CONCLUSION: Ethanol exposure diminishes intestinal A. muciniphila abundance in both mice and humans and can be recovered in experimental ALD by oral supplementation. A. muciniphila promotes intestinal barrier integrity and ameliorates experimental ALD. Our data suggest that patients with ALD might benefit from A. muciniphila supplementation.


Asunto(s)
Etanol/efectos adversos , Microbioma Gastrointestinal/fisiología , Hepatopatías Alcohólicas/microbiología , Verrucomicrobia/efectos de los fármacos , Adulto , Anciano , Animales , Modelos Animales de Enfermedad , Ensayo de Inmunoadsorción Enzimática , Heces/microbiología , Femenino , Técnica del Anticuerpo Fluorescente , Microbioma Gastrointestinal/genética , Humanos , Inmunohistoquímica , Hígado , Masculino , Ratones , Ratones Endogámicos C57BL , Persona de Mediana Edad , Verrucomicrobia/fisiología
8.
J Hepatol ; 66(4): 806-815, 2017 04.
Artículo en Inglés | MEDLINE | ID: mdl-27890791

RESUMEN

BACKGROUND & AIMS: Alcoholic liver disease (ALD) is a leading cause of liver failure and mortality. In humans, severe alcoholic hepatitis is associated with key changes to intestinal microbiota (IM), which influences individual sensitivity to develop advanced ALD. We used the different susceptibility to ALD observed in two distinct animal facilities to test the efficiency of two complementary strategies (fecal microbiota transplantation and prebiotic treatment) to reverse dysbiosis and prevent ALD. METHODS: Mice were fed alcohol in two distinct animal facilities with a Lieber DeCarli diet. Fecal microbiota transplantation was performed with fresh feces from alcohol-resistant donor mice to alcohol-sensitive receiver mice three times a week. Another group of mice received pectin during the entire alcohol consumption period. RESULTS: Ethanol induced steatosis and liver inflammation, which were associated with disruption of gut homeostasis, in alcohol-sensitive, but not alcohol resistant mice. IM analysis showed that the proportion of Bacteroides was specifically lower in alcohol-sensitive mice (p<0.05). Principal coordinate analysis showed that the IM of sensitive and resistant mice clustered differently. We targeted IM using two different strategies to prevent alcohol-induced liver lesions: (1) pectin treatment which induced major modifications of the IM, (2) fecal microbiota transplantation which resulted in an IM very close to that of resistant donor mice in the sensitive recipient mice. Both methods prevented steatosis, liver inflammation, and restored gut homeostasis. CONCLUSIONS: Manipulation of IM can prevent alcohol-induced liver injury. The IM should be considered as a new therapeutic target in ALD. LAY SUMMARY: Sensitivity to alcoholic liver disease (ALD) is driven by intestinal microbiota in alcohol fed mice. Treatment of mice with alcohol-induced liver lesions by fecal transplant from alcohol fed mice resistant to ALD or with prebiotic (pectin) prevents ALD. These findings open new possibilities for treatment of human ALD through intestinal microbiota manipulation.


Asunto(s)
Disbiosis/microbiología , Disbiosis/prevención & control , Microbioma Gastrointestinal/fisiología , Hepatopatías Alcohólicas/microbiología , Hepatopatías Alcohólicas/prevención & control , Animales , Bacteroides/genética , Bacteroides/aislamiento & purificación , Bacteroides/fisiología , Ácidos y Sales Biliares/metabolismo , Fibras de la Dieta/administración & dosificación , Modelos Animales de Enfermedad , Susceptibilidad a Enfermedades/microbiología , Trasplante de Microbiota Fecal , Femenino , Humanos , Ratones , Ratones Endogámicos C57BL , Pectinas/administración & dosificación , Prebióticos/administración & dosificación
10.
Nat Rev Microbiol ; 22(5): 291-308, 2024 May.
Artículo en Inglés | MEDLINE | ID: mdl-38110694

RESUMEN

Inter-individual human variability, driven by various genetic and environmental factors, complicates the ability to develop effective population-based early disease detection, treatment and prognostic assessment. The microbiome, consisting of diverse microorganism communities including viruses, bacteria, fungi and eukaryotes colonizing human body surfaces, has recently been identified as a contributor to inter-individual variation, through its person-specific signatures. As such, the microbiome may modulate disease manifestations, even among individuals with similar genetic disease susceptibility risks. Information stored within microbiomes may therefore enable early detection and prognostic assessment of disease in at-risk populations, whereas microbiome modulation may constitute an effective and safe treatment tailored to the individual. In this Review, we explore recent advances in the application of microbiome data in precision medicine across a growing number of human diseases. We also discuss the challenges, limitations and prospects of analysing microbiome data for personalized patient care.


Asunto(s)
Microbiota , Medicina de Precisión , Humanos , Hongos , Bacterias/genética
11.
Soins Gerontol ; (102): 33-6, 2013.
Artículo en Francés | MEDLINE | ID: mdl-23951872

RESUMEN

One of the missions of the Centre mobile geriatrics unit in Marseille is to ensure the orientation towards the most suitable medical services of elderly patients seen in emergency departments who require admission to hospital. This regulation is preceded by the collection of geriatric and gerontological clinical data which are transferred to the ward to which the patient is being admitted. The 1 039 patients assessed in 2011 were fragile, polypathological people requiring specific geriatric patient management.


Asunto(s)
Servicio de Urgencia en Hospital , Evaluación Geriátrica , Geriatría , Unidades Hospitalarias/estadística & datos numéricos , Anciano , Anciano de 80 o más Años , Femenino , Francia , Humanos , Masculino
12.
Acta Physiol (Oxf) ; 238(3): e14001, 2023 07.
Artículo en Inglés | MEDLINE | ID: mdl-37222395

RESUMEN

The microbial community of the gut, collectively termed the gut microbiota, modulates both host metabolism and disease development in a variety of clinical contexts. The microbiota can have detrimental effects and be involved in disease development and progression, but it can also offer benefits to the host. This has led in the last years to the development of different therapeutic strategies targeting the microbiota. In this review, we will focus on one of these strategies that involve the use of engineered bacteria to modulate gut microbiota in the treatment of metabolic disorders. We will discuss the recent developments and challenges in the use of these bacterial strains with an emphasis on their use for the treatment of metabolic diseases.


Asunto(s)
Microbioma Gastrointestinal , Microbiota , Bacterias/metabolismo
13.
Front Immunol ; 14: 1241851, 2023.
Artículo en Inglés | MEDLINE | ID: mdl-38274796

RESUMEN

Background: Perioperative anaphylaxis is a rare and acute systemic manifestation of drug-induced hypersensitivity reactions that occurs following anesthesia induction; the two main classes of drugs responsible for these reactions being neuromuscular blocking agents (NMBA) and antibiotics. The sensitization mechanisms to the drugs are not precisely known, and few risk factors have been described. A growing body of evidence underlines a link between occurrence of allergy and microbiota composition. However, no data exist on microbiota in perioperative anaphylaxis. The aim of this study was to compare circulating microbiota richness and composition between perioperative anaphylaxis patients and matched controls. Methods: Circulating 16s rDNA was quantified and sequenced in serum samples from 20 individuals with fully characterized IgE-mediated NMBA-related anaphylaxis and 20 controls matched on sex, age, NMBA received, type of surgery and infectious status. Microbiota composition was analyzed with a published bioinformatic pipeline and links with patients clinical and biological data investigated. Results: Analysis of microbiota diversity showed that anaphylaxis patients seem to have a richer circulating microbiota than controls, but no major differences of composition could be detected with global diversity indexes. Pairwise comparison showed a difference in relative abundance between patients and controls for Saprospiraceae, Enterobacteriaceae, Veillonellaceae, Escherichia-Shigella, Pseudarcicella, Rhodoferax, and Lewinella. Some taxa were associated with concentrations of mast cell tryptase and specific IgE. Conclusion: We did not find a global difference in terms of microbiota composition between anaphylaxis patient and controls. However, several taxa were associated with anaphylaxis patients and with their biological data. These findings must be further confirmed in different settings to broaden our understanding of drug anaphylaxis pathophysiology and identify predisposition markers.


Asunto(s)
Anafilaxia , Hipersensibilidad a las Drogas , Bloqueantes Neuromusculares , Humanos , Anafilaxia/etiología , Triptasas , Factores de Riesgo , Bloqueantes Neuromusculares/efectos adversos , Inmunoglobulina E/efectos adversos
14.
Nutrients ; 15(1)2022 Dec 29.
Artículo en Inglés | MEDLINE | ID: mdl-36615814

RESUMEN

Alterations in the composition of the gut microbiota (dysbiosis) are observed in nutritional liver diseases, including non-alcoholic fatty liver disease (NAFLD) and alcoholic liver disease (ALD) and have been shown to be associated with the severity of both. Editing the composition of the microbiota by fecal microbiota transfer or by application of probiotics or prebiotics/fiber in rodent models and human proof-of-concept trials of NAFLD and ALD have demonstrated its possible contribution to reducing the progression of liver damage. In this review, we address the role of a soluble fiber, pectin, in reducing the development of liver injury in NAFLD and ALD through its impact on gut bacteria.


Asunto(s)
Hepatopatías Alcohólicas , Enfermedad del Hígado Graso no Alcohólico , Probióticos , Humanos , Enfermedad del Hígado Graso no Alcohólico/metabolismo , Pectinas/metabolismo , Hígado/metabolismo , Prebióticos , Probióticos/uso terapéutico , Hepatopatías Alcohólicas/metabolismo , Disbiosis/microbiología
15.
Cells ; 11(6)2022 03 11.
Artículo en Inglés | MEDLINE | ID: mdl-35326419

RESUMEN

Reshaping the intestinal microbiota by the ingestion of fiber, such as pectin, improves alcohol-induced liver lesions in mice by modulating bacterial metabolites, including indoles, as well as bile acids (BAs). In this context, we aimed to elucidate how oral supplementation of pectin affects BA metabolism in alcohol-challenged mice receiving feces from patients with alcoholic hepatitis. Pectin reduced alcohol liver disease. This beneficial effect correlated with lower BA levels in the plasma and liver but higher levels in the caecum, suggesting that pectin stimulated BA excretion. Pectin modified the overall BA composition, favoring an augmentation in the proportion of hydrophilic forms in the liver, plasma, and gut. This effect was linked to an imbalance between hydrophobic and hydrophilic (less toxic) BAs in the gut. Pectin induced the enrichment of intestinal bacteria harboring genes that encode BA-metabolizing enzymes. The modulation of BA content by pectin inhibited farnesoid X receptor signaling in the ileum and the subsequent upregulation of Cyp7a1 in the liver. Despite an increase in BA synthesis, pectin reduced BA serum levels by promoting their intestinal excretion. In conclusion, pectin alleviates alcohol liver disease by modifying the BA cycle through effects on the intestinal microbiota and enhanced BA excretion.


Asunto(s)
Microbioma Gastrointestinal , Hepatopatías Alcohólicas , Animales , Ácidos y Sales Biliares , Humanos , Ratones , Pectinas/farmacología
16.
Sci Rep ; 11(1): 5926, 2021 03 15.
Artículo en Inglés | MEDLINE | ID: mdl-33723291

RESUMEN

Recent studies have provided evidence of a close link between specific microbiota and inflammatory disorders. While the vessel wall microbiota has been recently described in large vessel vasculitis (LVV) and controls, the blood microbiome in these diseases has not been previously reported (LVV). We aimed to analyse the blood microbiome profile of LVV patients (Takayasu's arteritis [TAK], giant cell arteritis [GCA]) and healthy blood donors (HD). We studied the blood samples of 13 patients with TAK (20 samples), 9 patients with GCA (11 samples) and 15 HD patients. We assessed the blood microbiome profile by sequencing the 16S rDNA blood bacterial DNA. We used linear discriminant analysis (LDA) coupled with linear discriminant effect size measurement (LEfSe) to investigate the differences in the blood microbiome profile between TAK and GCA patients. An increase in the levels of Clostridia, Cytophagia and Deltaproteobacteria and a decrease in Bacilli at the class level were found in TAK patients compared with HD patients (LDA > 2, p < 0.05). Active TAK patients had significantly lower levels of Staphylococcus compared with inactive TAK patients. Samples of GCA patients had an increased abundance of Rhodococcus and an unidentified member of the Cytophagaceae family. Microbiota of TAK compared with GCA patients was found to show higher levels of Candidatus Aquiluna and Cloacibacterium (LDA > 2; p < 0.05). Differences highlighted in the blood microbiome were also associated with a shift of bacterial predicted metabolic functions in TAK in comparison with HD. Similar results were also found in patients with active versus inactive TAK. In conclusion, patients with TAK were found to present a specific blood microbiome profile in comparison with healthy donors and GCA subjects. Significant changes in the blood microbiome profiles of TAK patients were associated with specific metabolic functions.


Asunto(s)
Susceptibilidad a Enfermedades , Arteritis de Células Gigantes/etiología , Microbiota , Arteritis de Takayasu/etiología , Anciano , Anciano de 80 o más Años , Biomarcadores/sangre , Biología Computacional/métodos , Femenino , Arteritis de Células Gigantes/tratamiento farmacológico , Arteritis de Células Gigantes/metabolismo , Arteritis de Células Gigantes/patología , Humanos , Masculino , Metagenoma , Metagenómica/métodos , Persona de Mediana Edad , Sepsis/complicaciones , Sepsis/microbiología , Arteritis de Takayasu/tratamiento farmacológico , Arteritis de Takayasu/metabolismo , Arteritis de Takayasu/patología
17.
Nutrients ; 13(11)2021 Oct 22.
Artículo en Inglés | MEDLINE | ID: mdl-34835981

RESUMEN

Pectin, a soluble fiber, improves non-alcoholic fatty-liver disease (NAFLD), but its mechanisms are unclear. We aimed to investigate the role of pectin-induced changes in intestinal microbiota (IM) in NAFLD. We recovered the IM from mice fed a high-fat diet, treated or not with pectin, to perform a fecal microbiota transfer (FMT). Mice fed a high-fat diet, which induces NAFLD, were treated with pectin or received a fecal microbiota transfer (FMT) from mice treated with pectin before (preventive FMT) or after (curative FMT) being fed a high-fat diet. Pectin prevented the development of NAFLD, induced browning of adipose tissue, and modified the IM without increasing the abundance of proteobacteria. Preventive FMT also induced browning of white adipose tissue but did not improve liver steatosis, in contrast to curative FMT, which induced an improvement in steatosis. This was associated with an increase in the concentration of short-chain fatty acids (SCFAs), in contrast to preventive FMT, which induced an increase in the concentration of branched SCFAs. Overall, we show that the effect of pectin may be partially mediated by gut bacteria.


Asunto(s)
Hígado Graso/microbiología , Microbioma Gastrointestinal/efectos de los fármacos , Pectinas/farmacología , Tejido Adiposo Blanco/patología , Animales , Dieta Alta en Grasa , Hígado Graso/terapia , Trasplante de Microbiota Fecal , Masculino , Ratones Endogámicos C57BL , Ratones Obesos
18.
JHEP Rep ; 3(2): 100230, 2021 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-33665587

RESUMEN

BACKGROUND & AIMS: Bile-acid metabolism and the intestinal microbiota are impaired in alcohol-related liver disease. Activation of the bile-acid receptor TGR5 (or GPBAR1) controls both biliary homeostasis and inflammatory processes. We examined the role of TGR5 in alcohol-induced liver injury in mice. METHODS: We used TGR5-deficient (TGR5-KO) and wild-type (WT) female mice, fed alcohol or not, to study the involvement of liver macrophages, the intestinal microbiota (16S sequencing), and bile-acid profiles (high-performance liquid chromatography coupled to tandem mass spectrometry). Hepatic triglyceride accumulation and inflammatory processes were assessed in parallel. RESULTS: TGR5 deficiency worsened liver injury, as shown by greater steatosis and inflammation than in WT mice. Isolation of liver macrophages from WT and TGR5-KO alcohol-fed mice showed that TGR5 deficiency did not increase the pro-inflammatory phenotype of liver macrophages but increased their recruitment to the liver. TGR5 deficiency induced dysbiosis, independently of alcohol intake, and transplantation of the TGR5-KO intestinal microbiota to WT mice was sufficient to worsen alcohol-induced liver inflammation. Secondary bile-acid levels were markedly lower in alcohol-fed TGR5-KO than normally fed WT and TGR5-KO mice. Consistent with these results, predictive analysis showed the abundance of bacterial genes involved in bile-acid transformation to be lower in alcohol-fed TGR5-KO than WT mice. This altered bile-acid profile may explain, in particular, why bile-acid synthesis was not repressed and inflammatory processes were exacerbated. CONCLUSIONS: A lack of TGR5 was associated with worsening of alcohol-induced liver injury, a phenotype mainly related to intestinal microbiota dysbiosis and an altered bile-acid profile, following the consumption of alcohol. LAY SUMMARY: Excessive chronic alcohol intake can induce liver disease. Bile acids are molecules produced by the liver and can modulate disease severity. We addressed the specific role of TGR5, a bile-acid receptor. We found that TGR5 deficiency worsened alcohol-induced liver injury and induced both intestinal microbiota dysbiosis and bile-acid pool remodelling. Our data suggest that both the intestinal microbiota and TGR5 may be targeted in the context of human alcohol-induced liver injury.

19.
Clin Mol Hepatol ; 24(2): 100-107, 2018 06.
Artículo en Inglés | MEDLINE | ID: mdl-29268595

RESUMEN

Alcoholic liver disease (ALD) is a major cause of morbidity and mortality worldwide. Only 20% of heavy alcohol consumers develop alcoholic liver cirrhosis. The intestinal microbiota (IM) has been recently identified as a key player in the severity of liver injury in ALD. Common features of ALD include a decrease of gut epithelial tight junction protein expression, mucin production, and antimicrobial peptide levels. This disruption of the gut barrier, which is a prerequisite for ALD, leads to the passage of bacterial products into the blood stream (endotoxemia). Moreover, metabolites produced by bacteria, such as short chain fatty acids, volatile organic compounds (VOS), and bile acids (BA), are involved in ALD pathology. Probiotic treatment, IM transplantation, or the consumption of dietary fiber, such as pectin, which all alter the ratio of bacterial species, have been shown to improve liver injury in animal models of ALD and to be associated with an improvement in gut barrier function. Although the connections between the microbiota and the host in ALD are well established, the underlying mechanisms are still an active area of research. Targeting the microbiome through the use of prebiotic, probiotic, and postbiotic modalities could be an attractive new approach to manage ALD.


Asunto(s)
Microbioma Gastrointestinal , Hepatopatías Alcohólicas/patología , Animales , Bacterias/aislamiento & purificación , Fibras de la Dieta/uso terapéutico , Trasplante de Microbiota Fecal , Hongos/aislamiento & purificación , Hongos/fisiología , Humanos , Hepatopatías Alcohólicas/dietoterapia , Hepatopatías Alcohólicas/terapia , Probióticos/uso terapéutico , Índice de Severidad de la Enfermedad
20.
Aliment Pharmacol Ther ; 48(9): 961-974, 2018 11.
Artículo en Inglés | MEDLINE | ID: mdl-30144108

RESUMEN

BACKGROUND: Intestinal microbiota plays an important role in bile acid homeostasis. AIM: To study the structure of the intestinal microbiota and its function in bile acid homeostasis in alcoholic patients based on the severity of alcoholic liver disease. METHODS: In this prospective study, we included four groups of active alcoholic patients (N = 108): two noncirrhotic, with (noCir_AH, n = 13) or without alcoholic hepatitis (noCir_noAH, n = 61), and two cirrhotic, with (Cir_sAH, n = 17) or without severe alcoholic hepatitis (Cir_noAH, n = 17). Plasma and faecal bile acid profiles and intestinal microbiota composition were assessed. RESULTS: Plasma levels of total bile acids (84.6 vs 6.8 µmol/L, P < 0.001) and total ursodeoxycholic acid (1.3 vs 0.3 µmol/L, P = 0.03) were higher in cirrhosis with severe alcoholic hepatitis (Cir_sAH) than Cir_noAH, whereas total faecal (2.4 vs 11.3, P = 0.01) and secondary bile acids (0.7 vs 10.7, P < 0.01) levels were lower. Cir_sAH patients had a different microbiota than Cir_noAH patients: at the phyla level, the abundance of Actinobacteria (9 vs 1%, P = 0.01) was higher and that of Bacteroidetes was lower (25 vs 40%, P = 0.04). Moreover, the microbiota of Cir_sAH patients showed changes in the abundance of genes involved in 15 metabolic pathways, including upregulation of glutathione metabolism, and downregulation of biotin metabolism. CONCLUSIONS: Patients with Cir_sAH show specific changes of the bile acid pool with a shift towards more hydrophobic and toxic species that may be responsible for the specific microbiota changes. Conversely, the microbiota may also alter the bile acid pool by transforming primary to secondary bile acids, leading to a vicious cycle.


Asunto(s)
Ácidos y Sales Biliares/fisiología , Disbiosis/epidemiología , Microbioma Gastrointestinal/fisiología , Hepatitis Alcohólica/epidemiología , Hepatitis Alcohólica/microbiología , Homeostasis/fisiología , Adulto , Anciano , Diarrea/diagnóstico , Diarrea/epidemiología , Diarrea/microbiología , Disbiosis/diagnóstico , Heces/microbiología , Femenino , Francia/epidemiología , Hepatitis Alcohólica/diagnóstico , Humanos , Cirrosis Hepática Alcohólica/diagnóstico , Cirrosis Hepática Alcohólica/epidemiología , Cirrosis Hepática Alcohólica/microbiología , Masculino , Persona de Mediana Edad , Estudios Prospectivos
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