Implantable bioelectronics for gut electrophysiology

A Alexander J. Boys A Amparo Güemes L Liang Ma R Rohit A. Gupta Z Zixuan Lu C Chaeyeon Lee S Salim El-Hadwe A Alejandro Carnicer-Lombarte T Tobias E. Naegele F Friederike Uhlig D Damiano G. Barone D David C. Bulmer J Jennifer N. Gelinas N Niall P. Hyland D Dion Khodagholy G George G. Malliaras R Róisín M. Owens

Abstract

Abstract A major regulator of gastrointestinal physiology is the enteric nervous system. This division of the autonomic nervous system is unique in its extensiveness, with neurons distributed from the esophagus to the rectum, and its capability for local information processing. However, the constant motion of the gut, arising from its relative movements in the peritoneal cavity and the peristaltic movements associated with gut motility, as well as the sparse distribution of the neurons constituting the enteric nervous system, has made access and analysis exceedingly challenging. Here, we present the construction and validation of a bioelectronic implant for accessing neural information from the distal colon. Our bioelectronic monitoring system demonstrates real-time electrophysiological recording in response to chemical and mechanical distension under anesthesia and to feeding and stress in freely-moving animals. Direct access to the communication pathways of the enteric nervous system paves the way for neuromodulation strategies targeting the gut – brain axis.

Article Details

Volume / Issue Vol. 16, Issue 1
Published November 20, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (17)

A

Alexander J. Boys

A

Amparo Güemes

L

Liang Ma

R

Rohit A. Gupta

Z

Zixuan Lu

C

Chaeyeon Lee

S

Salim El-Hadwe

A

Alejandro Carnicer-Lombarte

T

Tobias E. Naegele

F

Friederike Uhlig

D

Damiano G. Barone

D

David C. Bulmer

J

Jennifer N. Gelinas

N

Niall P. Hyland

D

Dion Khodagholy

G

George G. Malliaras

R

Róisín M. Owens