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  • Grunddal, K. V., et al. (author)
  • Neurotensin Is Coexpressed, Coreleased, and Acts Together With GLP-1 and PYY in Enteroendocrine Control of Metabolism
  • 2016
  • In: Endocrinology. - : The Endocrine Society. - 0013-7227 .- 1945-7170. ; 157:1, s. 176-194
  • Journal article (peer-reviewed)abstract
    • The 2 gut hormones glucagon-like peptide-1 (GLP-1) and peptide YY (PYY) are well known to be coexpressed, costored, and released together to coact in the control of key metabolic target organs. However, recently, it became clear that several other gut hormones can be coexpressed in the intestinal-specific lineage of enteroendocrine cells. Here, we focus on the anatomical and functional consequences of the coexpression of neurotensin with GLP-1 and PYY in the distal small intestine. Fluorescence-activated cell sorting analysis, laser capture, and triple staining demonstrated that GLP-1 cells in the crypts become increasingly multihormonal, ie, coexpressing PYY and neurotensin as they move up the villus. Proglucagon promoter and pertussis toxin receptor-driven cell ablation and reappearance studies indicated that although all the cells die, the GLP-1 cells reappear more quickly than PYY- and neurotensin-positive cells. High-resolution confocal fluorescence microscopy demonstrated that neurotensin is stored in secretory granules distinct from GLP-1 and PYY storing granules. Nevertheless, the 3 peptides were cosecreted from both perfused small intestines and colonic crypt cultures in response to a series of metabolite, neuropeptide, and hormonal stimuli. Importantly, neurotensin acts synergistically, ie, more than additively together with GLP-1 and PYY to decrease palatable food intake and inhibit gastric emptying, but affects glucose homeostasis in a more complex manner. Thus, neurotensin is a major gut hormone deeply integrated with GLP-1 and PYY, which should be taken into account when exploiting the enteroendocrine regulation of metabolism pharmacologically.
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  • Müller, T D, et al. (author)
  • Ghrelin.
  • 2015
  • In: Molecular metabolism. - : Elsevier BV. - 2212-8778. ; 4:6, s. 437-60
  • Journal article (peer-reviewed)abstract
    • The gastrointestinal peptide hormone ghrelin was discovered in 1999 as the endogenous ligand of the growth hormone secretagogue receptor. Increasing evidence supports more complicated and nuanced roles for the hormone, which go beyond the regulation of systemic energy metabolism.
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5.
  • Vieira-Silva, S., et al. (author)
  • Statin therapy is associated with lower prevalence of gut microbiota dysbiosis
  • 2020
  • In: Nature. - : Springer Science and Business Media LLC. - 0028-0836 .- 1476-4687. ; 581:7808, s. 310-315
  • Journal article (peer-reviewed)abstract
    • Microbiome community typing analyses have recently identified the Bacteroides2 (Bact2) enterotype, an intestinal microbiota configuration that is associated with systemic inflammation and has a high prevalence in loose stools in humans1,2. Bact2 is characterized by a high proportion of Bacteroides, a low proportion of Faecalibacterium and low microbial cell densities1,2, and its prevalence varies from 13% in a general population cohort to as high as 78% in patients with inflammatory bowel disease2. Reported changes in stool consistency3 and inflammation status4 during the progression towards obesity and metabolic comorbidities led us to propose that these developments might similarly correlate with an increased prevalence of the potentially dysbiotic Bact2 enterotype. Here, by exploring obesity-associated microbiota alterations in the quantitative faecal metagenomes of the cross-sectional MetaCardis Body Mass Index Spectrum cohort (n=888), we identify statin therapy as a key covariate of microbiome diversification. By focusing on a subcohort of participants that are not medicated with statins, we find that the prevalence of Bact2 correlates with body mass index, increasing from 3.90% in lean or overweight participants to 17.73% in obese participants. Systemic inflammation levels in Bact2-enterotyped individuals are higher than predicted on the basis of their obesity status, indicative of Bact2 as a dysbiotic microbiome constellation. We also observe that obesity-associated microbiota dysbiosis is negatively associated with statin treatment, resulting in a lower Bact2 prevalence of 5.88% in statin-medicated obese participants. This finding is validated in both the accompanying MetaCardis cardiovascular disease dataset (n = 282) and the independent Flemish Gut Flora Project population cohort (n=2,345). The potential benefits of statins in this context will require further evaluation in a prospective clinical trial to ascertain whether the effect is reproducible in a randomized population and before considering their application as microbiota-modulating therapeutics. © 2020, The Author(s), under exclusive licence to Springer Nature Limited.
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6.
  • Belda, E., et al. (author)
  • Impairment of gut microbial biotin metabolism and host biotin status in severe obesity: effect of biotin and prebiotic supplementation on improved metabolism
  • 2022
  • In: Gut. - : BMJ. - 0017-5749 .- 1468-3288. ; 71:12
  • Journal article (peer-reviewed)abstract
    • Objectives Gut microbiota is a key component in obesity and type 2 diabetes, yet mechanisms and metabolites central to this interaction remain unclear. We examined the human gut microbiome's functional composition in healthy metabolic state and the most severe states of obesity and type 2 diabetes within the MetaCardis cohort. We focused on the role of B vitamins and B7/B8 biotin for regulation of host metabolic state, as these vitamins influence both microbial function and host metabolism and inflammation. Design We performed metagenomic analyses in 1545 subjects from the MetaCardis cohorts and different murine experiments, including germ-free and antibiotic treated animals, faecal microbiota transfer, bariatric surgery and supplementation with biotin and prebiotics in mice. Results Severe obesity is associated with an absolute deficiency in bacterial biotin producers and transporters, whose abundances correlate with host metabolic and inflammatory phenotypes. We found suboptimal circulating biotin levels in severe obesity and altered expression of biotin-associated genes in human adipose tissue. In mice, the absence or depletion of gut microbiota by antibiotics confirmed the microbial contribution to host biotin levels. Bariatric surgery, which improves metabolism and inflammation, associates with increased bacterial biotin producers and improved host systemic biotin in humans and mice. Finally, supplementing high-fat diet-fed mice with fructo-oligosaccharides and biotin improves not only the microbiome diversity, but also the potential of bacterial production of biotin and B vitamins, while limiting weight gain and glycaemic deterioration. Conclusion Strategies combining biotin and prebiotic supplementation could help prevent the deterioration of metabolic states in severe obesity.
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7.
  • Forslund, Sofia K., et al. (author)
  • Combinatorial, additive and dose-dependent drug–microbiome associations
  • 2021
  • In: Nature. - : Springer Science and Business Media LLC. - 0028-0836 .- 1476-4687. ; 600:7889, s. 500-505
  • Journal article (peer-reviewed)abstract
    • During the transition from a healthy state to cardiometabolic disease, patients become heavily medicated, which leads to an increasingly aberrant gut microbiome and serum metabolome, and complicates biomarker discovery1–5. Here, through integrated multi-omics analyses of 2,173 European residents from the MetaCardis cohort, we show that the explanatory power of drugs for the variability in both host and gut microbiome features exceeds that of disease. We quantify inferred effects of single medications, their combinations as well as additive effects, and show that the latter shift the metabolome and microbiome towards a healthier state, exemplified in synergistic reduction in serum atherogenic lipoproteins by statins combined with aspirin, or enrichment of intestinal Roseburia by diuretic agents combined with beta-blockers. Several antibiotics exhibit a quantitative relationship between the number of courses prescribed and progression towards a microbiome state that is associated with the severity of cardiometabolic disease. We also report a relationship between cardiometabolic drug dosage, improvement in clinical markers and microbiome composition, supporting direct drug effects. Taken together, our computational framework and resulting resources enable the disentanglement of the effects of drugs and disease on host and microbiome features in multimedicated individuals. Furthermore, the robust signatures identified using our framework provide new hypotheses for drug–host–microbiome interactions in cardiometabolic disease.
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  • Jiao, Xiang, et al. (author)
  • PHIP - a novel candidate breast cancer susceptibility locus on 6q14.1
  • 2017
  • In: Oncotarget. - : IMPACT JOURNALS LLC. - 1949-2553. ; 8:61, s. 102769-102782
  • Journal article (peer-reviewed)abstract
    • Most non-BRCA1/2 breast cancer families have no identified genetic cause. We used linkage and haplotype analyses in familial and sporadic breast cancer cases to identify a susceptibility locus on chromosome 6q. Two independent genome-wide linkage analysis studies suggested a 3 Mb locus on chromosome 6q and two unrelated Swedish families with a LOD > 2 together seemed to share a haplotype in 6q14.1. We hypothesized that this region harbored a rare high-risk founder allele contributing to breast cancer in these two families. Sequencing of DNA and RNA from the two families did not detect any pathogenic mutations. Finally, 29 SNPs in the region were analyzed in 44,214 cases and 43,532 controls from BCAC, and the original haplotypes in the two families were suggested as low-risk alleles for European and Swedish women specifically. There was also some support for one additional independent moderate-risk allele in Swedish familial samples. The results were consistent with our previous findings in familial breast cancer and supported a breast cancer susceptibility locus at 6q14.1 around the PHIP gene.
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  • Result 1-10 of 147
Type of publication
journal article (127)
conference paper (15)
other publication (3)
research review (1)
book chapter (1)
Type of content
peer-reviewed (126)
other academic/artistic (21)
Author/Editor
Holst, M (24)
Nordlind, K (15)
El-Nour, H (11)
Clement, K (10)
Holst, J J (9)
Pedersen, O. (9)
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Holst, S (8)
Sorensen, TIA (8)
Langin, D (8)
Holst, C (8)
Johansson, B (7)
Bäckhed, Fredrik, 19 ... (7)
Arner, P (7)
Holst, JJ (7)
Astrup, A. (7)
Martinez, JA (7)
Lonndahl, L (6)
Soder, O (6)
Oppert, JM (6)
Holst, J. (5)
Jacobsson, Bo, 1960 (5)
Froguel, P (5)
Hansen, T. (5)
Vestergaard, H. (5)
Kaprio, J (4)
Pukkala, E (4)
Rasul, A (4)
Nielsen, Jens B, 196 ... (4)
Tremaroli, Valentina ... (4)
Sigfridsson, A (4)
Ugander, M (4)
Harris, JR (4)
Czene, K (4)
Adami, HO (4)
Franke, A (4)
Lindblad, B (4)
Fredriksson, I (4)
Franck, J (4)
Hartmann, B. (4)
Mucci, LA (4)
Holst, Jens J (4)
Skytthe, A (4)
Christensen, K (4)
Weidinger, S (4)
MacDonald, I (4)
Stumvoll, M. (4)
Pedersen, O. B. (4)
Verdich, C (4)
Svechnikov, K (4)
Schilstrom, B (4)
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University
Karolinska Institutet (81)
University of Gothenburg (30)
Lund University (26)
Uppsala University (15)
Chalmers University of Technology (7)
Linköping University (5)
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Umeå University (4)
Swedish University of Agricultural Sciences (4)
Kristianstad University College (3)
Royal Institute of Technology (3)
Örebro University (3)
Malmö University (3)
Mid Sweden University (2)
Stockholm University (1)
Blekinge Institute of Technology (1)
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Language
English (147)
Research subject (UKÄ/SCB)
Medical and Health Sciences (59)
Natural sciences (22)
Engineering and Technology (4)
Agricultural Sciences (2)

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