Fecal butyrate and deoxycholic acid quantitation for rapid assessment of the gut microbiome

M Michael W. Mullowney A Angelica Moran A Antonio Hernandez M Mary McMillin (Biological Sciences Division, Duchossois Family Institute, University of Chicago) A Amber R. Rose D David Moran J Jessica Little A Ann B. Nguyen B Bhakti K. Patel C Christopher J. Lehmann (Department of Medicine, Section of Infectious Disease and Global Health, University of Chicago Medicine) M Matthew A. Odenwald E Eric G. Pamer K Kiang-Teck J. Yeo A Ashley M. Sidebottom (Biological Sciences Division, Duchossois Family Institute, University of Chicago)

Abstract

The intestinal microbiome is composed of myriad microbial species with impacts on host health that are mediated by the production of metabolites. While loss of bacterial species and beneficial metabolites from the fecal microbiome is associated with development of a range of diseases and medical complications, there are currently no clinical diagnostic tests that rapidly identify individuals with microbiome deficiencies. This method aims to rapidly quantify fecal concentrations of butyrate and deoxycholic acid, as depletion of these two metabolites are associated with adverse clinical outcomes and result from the loss of a subset of health-associated bacterial species. We present a rapid diagnostic screen based on 3-nitrophenylhydrazine derivatization and ultrahigh-performance liquid chromatography-mass spectrometry that measures fecal butyrate and deoxycholic acid concentrations as markers of microbiome function. A matrix-matched calibration curve was developed using a simulated fecal mixture to optimize accuracy and facilitate adherence to clinical laboratory regulations. The assay resulted in an analytical measurement range from 4.30–3030 µM (LLOQ = 3.71 µM) for butyrate and from 0.9–64.9 µM (LLOQ = 0.7 µM) for deoxycholic acid. Precision evaluation demonstrated a coefficient of variation <15% at all quality control levels tested. The rapid liquid chromatography-mass spectrometry screen can be performed in under an hour from extraction to provision of quantitative results, enabling the rapid identification of patients with defective microbiome function.

Article Details

Journal PLoS ONE
Volume / Issue Vol. 21, Issue 1
Published January 09, 2026
Pages e0337727
ISSN 1932-6203
Publisher Public Library of Science

Journal Info

PLoS ONE

Public Library of Science

ISSN: 1932-6203 Open Access Health Sciences

Authors (14)

M

Michael W. Mullowney

A

Angelica Moran

A

Antonio Hernandez

M

Mary McMillin

Biological Sciences Division, Duchossois Family Institute, University of Chicago

A

Amber R. Rose

D

David Moran

J

Jessica Little

A

Ann B. Nguyen

B

Bhakti K. Patel

C

Christopher J. Lehmann

Department of Medicine, Section of Infectious Disease and Global Health, University of Chicago Medicine

M

Matthew A. Odenwald

E

Eric G. Pamer

K

Kiang-Teck J. Yeo

A

Ashley M. Sidebottom

Biological Sciences Division, Duchossois Family Institute, University of Chicago