Toggle Main Menu Toggle Search

Open Access padlockePrints

Bioaccumulation of therapeutic drugs by human gut bacteria

Lookup NU author(s): Manuel Banzhaf

Downloads

Full text for this publication is not currently held within this repository. Alternative links are provided below where available.


Abstract

© 2021, The Author(s), under exclusive licence to Springer Nature Limited.Bacteria in the gut can modulate the availability and efficacy of therapeutic drugs. However, the systematic mapping of the interactions between drugs and bacteria has only started recently1 and the main underlying mechanism proposed is the chemical transformation of drugs by microorganisms (biotransformation). Here we investigated the depletion of 15 structurally diverse drugs by 25 representative strains of gut bacteria. This revealed 70 bacteria–drug interactions, 29 of which had not to our knowledge been reported before. Over half of the new interactions can be ascribed to bioaccumulation; that is, bacteria storing the drug intracellularly without chemically modifying it, and in most cases without the growth of the bacteria being affected. As a case in point, we studied the molecular basis of bioaccumulation of the widely used antidepressant duloxetine by using click chemistry, thermal proteome profiling and metabolomics. We find that duloxetine binds to several metabolic enzymes and changes the metabolite secretion of the respective bacteria. When tested in a defined microbial community of accumulators and non-accumulators, duloxetine markedly altered the composition of the community through metabolic cross-feeding. We further validated our findings in an animal model, showing that bioaccumulating bacteria attenuate the behavioural response of Caenorhabditis elegans to duloxetine. Together, our results show that bioaccumulation by gut bacteria may be a common mechanism that alters drug availability and bacterial metabolism, with implications for microbiota composition, pharmacokinetics, side effects and drug responses, probably in an individual manner.


Publication metadata

Author(s): Klunemann M, Andrejev S, Blasche S, Mateus A, Phapale P, Devendran S, Vappiani J, Simon B, Scott TA, Kafkia E, Konstantinidis D, Zirngibl K, Mastrorilli E, Banzhaf M, Mackmull M-T, Hovelmann F, Nesme L, Brochado AR, Maier L, Bock T, Periwal V, Kumar M, Kim Y, Tramontano M, Schultz C, Beck M, Hennig J, Zimmermann M, Sevin DC, Cabreiro F, Savitski MM, Bork P, Typas A, Patil KR

Publication type: Article

Publication status: Published

Journal: Nature

Year: 2021

Volume: 597

Issue: 7877

Pages: 533-538

Print publication date: 23/09/2021

Online publication date: 08/09/2021

Acceptance date: 10/08/2021

ISSN (print): 0028-0836

ISSN (electronic): 1476-4687

Publisher: Nature Research

URL: https://doi.org/10.1038/s41586-021-03891-8

DOI: 10.1038/s41586-021-03891-8

PubMed id: 34497420


Altmetrics

Altmetrics provided by Altmetric


Share