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Burm, H.

Publications and source records attributed to Burm, H..

2 recordsLinked to original sources

Sucrase isomaltase dysfunction influences dietary sucrose intake and preference

ObjectiveTo characterise the role of Sucrase-isomaltase (SI) in regulating dietary behaviours, such as sweet preference and food liking in Si knockout (Sis-KO) mice and in population-based cohorts from Greenland and the UK. DesignWe profiled the appetitive and post-ingestive response to dietary carbohydrates in SI knockout (Sis-KO) mice. Alongside this, we conducted detailed dietary analysis of 45 foods in two Greenlandic population-based cohorts (IHIT, n=2778 and 68 foods, and B2018, n=2203 and 45 foods) with the presence of a common (allele frequency = 14.3%) SI Loss of function (LoF) variant, c.273-274delAG. Finally, we explored the association between SI hypomorphic variants, liking of 140 foods, and sucrose content using data from 134,766 UKBB participants with exome sequencing and questionnaire data available. ResultsSucrose naive Sis-KO mice had a significantly reduced intake of dietary sucrose, and preference for 10% liquid sucrose, in two-bottle preference studies. Mechanistically, oral administration of the short-chain fatty acid acetate reduced sucrose-preference in wild-type mice. In Greenlandic LoF homozygous carriers we show that the previously reported reduction in sugar intake may primarily be explained by a lower intake of cake and pastries, and of candy and chocolate and that added sugar is the main factor explaining these associations. In the UKBB, a negative association with "cake icing", the food with the highest sucrose content per 100g, was detected in SI hypomorphic carriers, as well as in sensitivity analyses conducted only including carriers of known CSID LoF variants. Further, a negative linear relationship was also observed between the effect estimates of hypomorphic SI variants on food liking and the estimated sucrose content per 100g of 88 sucrose-containing foods, indicating that food dislike in SI carriers correlates with the amount of sucrose in food. ConclusionCollectively, we demonstrated that genetic variation in the SI gene is associated with significant changes in sucrose preference, characterised by a rapid avoidance of dietary sucrose in Sis-KO mice, as well as lower consumption and increased disliking of sucrose rich foods in Greenlanders and Europeans, respectively. This work demonstrates that genetic variation in the SI gene may impact physiology beyond the gastrointestinal tract and suggest the possibility to target SI to reduce the preference, and intake, of dietary sucrose with implications for digestive and metabolic health.

genetics↗

FGF21 deletion mildly exacerbates hepatic dysfunction in MASH diet and alcohol fed rats

ObjectiveFibroblast growth factor 21 (FGF21) is a hepatokine that improves dyslipidemia, steatosis, inflammation, and fibrosis. FGF21 analogues are in clinical development as treatments for metabolic and alcohol-associated liver disease, creating a need for new models to help understand FGF21 physiology and drug mechanisms of action. The aim of this study was to create and initially characterize the first FGF21 knockout (KO) rat line to validate its utility as a translational animal model that recapitulates human MASH and ALD, and to provide a resource for examining FGF21-related phenotypes that are more appropriate for the rat. MethodsWe generated an FGF21 KO rat model using CRISPR/Cas9 to insert an artificial STOP codon in exon 1 and exposed 6-month-old WT and KO rats to either chow (n=8 per genotype) or the GAN (Gubra Amylin NASH) diet (n=16 per genotype) for 12 weeks. We further evaluated alcohol drinking behavior and biochemistry in FGF21 KO and WT rats. In the diet model, we further analysed liver and blood biochemistry in addition to histopathological scoring of NAFLD activity score (NAS), fibrosis stage and the liver transcriptome for in-depth characterization of the model. ResultsLack of endogenous FGF21 increased plasma transaminases, liver weight, and total levels of liver TG in GAN-fed FGF21 KO rats. FGF21 deletion also increased ALT in alcohol-fed FGF21 KO rats. However, in the GAN diet model, FGF21 KO had no impact on body weight, fat mass, glycaemic traits, MASH histological endpoints including hepatic steatosis, NAS score, lobular inflammation, ballooning degeneration or fibrosis stage after 12 weeks. Similarly, there was no effect of the loss of endogenous FGF21 on the liver transcriptome in response to GAN diet feeding. Finally, we demonstrate that endogenous FGF21 does not regulate drinking behaviour in rats. ConclusionFGF21 deficiency accelerates hepatic dysfunction in diet and alcohol-induced liver disease models in rats, providing support from a new species that FGF21 might be a hepatoprotective factor.

physiology↗