Modulation of the gut microbiome-adipose tissue axis by maqui supplementation improved insulin resistance and lipid metabolism in mice under a high-fat diet.

dc.contributor.authorTume, Rafael
dc.contributor.authorCruz, Meryl
dc.contributor.authorSandoval, Viviana
dc.contributor.authorIglesias-Vejar, Lorena
dc.contributor.authorSanz Lamora, Héctor
dc.contributor.authorPérez-Martí, A.
dc.contributor.authorTorres-Oteros, Daniel
dc.contributor.authorCubedo-Cullere, Marta
dc.contributor.authorCarmona Pontaque, Francesc
dc.contributor.authorMartínez Huélamo, Miriam
dc.contributor.authorMarrero González, Pedro F.
dc.contributor.authorHaro Bautista, Diego
dc.contributor.authorCanudas Puig, Sílvia
dc.contributor.authorAndrés Lacueva, Ma. Cristina
dc.contributor.authorRelat, Joana
dc.contributor.authorMeroño, Tomás
dc.date.accessioned2026-04-13T06:58:52Z
dc.date.available2026-04-13T06:58:52Z
dc.date.issued2026-03-03
dc.date.updated2026-04-13T06:58:53Z
dc.description.abstractTo assess the impact of maqui (Aristotelia chilensis) supplementation on the gut microbiome-adipose tissue axis, and to associate it with gene expression changes in white adipose tissue (WAT) in mice fed a high-fat diet. Our hypothesis is that the gut microbiome-adipose tissue axis will be involved in Maqui's effect on WAT browning. Twenty-nine 4-week-old C57BL/6 J mice were randomly assigned to a high-fat diet (HFD, n = 15) or HFD + Maqui (n = 14) for 16 weeks. Plasma samples were analyzed using an UPLC-QTRAP exposome-based metabolomics method. Gut microbiome was studied by fecal 16S rRNA gene sequencing. Gene expression in WAT was assessed by real-time PCR. Data were analyzed by multivariate methods and integrated through multiomics analyses. Maqui supplementation induced an increase in Lactobacillus, Lactococcus and Bifidobacterum and a reduction in Desulfovibrium, and Acetatifactor. Out of 19 metabolites altered by maqui supplementation, 9 were derived from gut bacterial fermentation of anthocyanins. Increases in L. gasseri and L. johnsonii in the gut were associated to increased production of phenyllactic acid, 4-O-methylgallic acid, and 3-(3′-hydroxyphenyl)-γ-valerolactone. Integrative analysis revealed a concerted role of Lactobacillus spp. and its ability to ferment maqui polyphenols, along with increased expression of Chrebpb, Pgc1a and Ucp1 in WAT. Enrichment of Lactobacillus gasseri and johnsonii and exposure to 2-hydroxybenzoic acid derived from polyphenols fermentation are evidences of the involvment of the gut-microbiome-adipose tissue axis in WAT browning induced by maqui.
dc.format.extent13 p.
dc.format.mimetypeapplication/pdf
dc.identifier.idgrec768819
dc.identifier.urihttps://hdl.handle.net/2445/228849
dc.language.isoeng
dc.publisherElsevier Ltd.
dc.relation.isformatofReproducció del document publicat a: https://doi.org/10.1016/j.fochms.2026.100383
dc.relation.ispartofFood Chemistry: Molecular Sciences, 2026, vol. 12
dc.relation.urihttps://doi.org/10.1016/j.fochms.2026.100383
dc.rightscc-by (c) Tumea, R. et al., 2026
dc.rights.accessRightsinfo:eu-repo/semantics/openAccess
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/
dc.sourceArticles publicats en revistes (Genètica, Microbiologia i Estadística)
dc.subject.classificationMicrobiota intestinal
dc.subject.classificationInsulina
dc.subject.classificationMetabolisme
dc.subject.otherGastrointestinal microbiome
dc.subject.otherInsulin
dc.subject.otherMetabolism
dc.titleModulation of the gut microbiome-adipose tissue axis by maqui supplementation improved insulin resistance and lipid metabolism in mice under a high-fat diet.
dc.typeinfo:eu-repo/semantics/article
dc.typeinfo:eu-repo/semantics/publishedVersion

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