forked from NBCLab/NBCLab.github.io
-
Notifications
You must be signed in to change notification settings - Fork 4
Commit
This commit does not belong to any branch on this repository, and may belong to a fork outside of the repository.
Add paper page for Quinten's latest preprint
- Loading branch information
Showing
1 changed file
with
40 additions
and
0 deletions.
There are no files selected for viewing
40 changes: 40 additions & 0 deletions
40
papers/_posts/2024-04-19-ducarmon-longterm-fasting-remodels.md
This file contains bidirectional Unicode text that may be interpreted or compiled differently than what appears below. To review, open the file in an editor that reveals hidden Unicode characters.
Learn more about bidirectional Unicode characters
Original file line number | Diff line number | Diff line change |
---|---|---|
@@ -0,0 +1,40 @@ | ||
--- | ||
layout: paper | ||
title: "Long-term fasting remodels gut microbial metabolism and host metabolism" | ||
nickname: 2024-04-19-ducarmon-longterm-fasting-remodels | ||
authors: "Ducarmon QR, Grundler F, Giannopoulou C, Loume A, Karcher N, Larralde M, Romano SR, MacArthur M, Mitchell SJ, Wilhelmi de Toledo F, Zeller G, Mesnage R" | ||
year: "2024" | ||
journal: "biorXiv" | ||
volume: | ||
issue: | ||
pages: | ||
is_published: false | ||
image: /assets/images/papers/biorxiv.png | ||
projects: ["dietarymicrobiome"] | ||
tags: ["preprint"] | ||
|
||
# Text | ||
fulltext: | ||
pdf: | ||
pdflink: | ||
pmcid: | ||
preprint: https://doi.org/10.1101/2024.04.19.590209 | ||
supplement: | ||
|
||
# Links | ||
doi: "10.1101/2024.04.19.590209" | ||
pmid: | ||
|
||
# Data and code | ||
github: | ||
neurovault: | ||
openneuro: | ||
figshare: | ||
figshare_names: | ||
osf: | ||
--- | ||
{% include JB/setup %} | ||
|
||
# Abstract | ||
|
||
Long-term fasting has become a promising research subject for its potential of treating and preventing metabolic diseases. However, little is known about its impact on the functional capacity of the gut microbiome and the combined effect on the serum metabolome. Here, we demonstrate extensive remodelling of the gut microbial ecosystem in humans (n=92) after an average of 9.8 days of fasting (~250 kcal / day). Fasting transiently affected the relative abundance of the majority of bacterial species (306 decreased and 210 increased out of 772). Species changes could largely be explained by their genomic repertoire of carbohydrate-active enzymes (CAZymes), which were investigated here for the first time. Fasting induced extensive abundance changes in CAZyme families, depleting families with dietary fibre substrates and increasing families with host-derived glycan substrates. Likewise, we observed extensive changes in the serum metabolome, with 382 out of 721 metabolites significantly affected (246 increased and 136 decreased). In-depth metagenome-metabolome co-variation analysis suggested Oscillibacter species to be key producers of indole-3-propionic acid, a crucial metabolite for cardiometabolic health. Together, our results provide an unprecedented view on the impact of long-term fasting on gut microbiome composition and function. |