Orally delivered toxin–binding protein protects against diarrhoea in a murine cholera model

M Marcus Petersson F Franz G. Zingl E Everardo Rodriguez-Rodriguez J Jakob K. H. Rendsvig H Heidi Heinsøe E Emma Wenzel Arendrup N Natalia Mojica D Dario Segura Peña N Nikolina Sekulić U Ute Krengel M Monica L. Fernández-Quintero T Timothy P. Jenkins L Lone Gram M Matthew K. Waldor A Andreas H. Laustsen S Sandra Wingaard Thrane

Abstract

Abstract The ongoing seventh cholera pandemic, which began in 1961, poses an escalating threat to public health. There is a need for new cholera control measures, particularly ones that can be produced at low cost, for the one billion people living in cholera-endemic regions. Orally delivered VHHs, functioning as target-binding proteins, have been proposed as a potential approach to control gastrointestinal pathogens. Here, we describe the development of an orally deliverable bivalent VHH construct that binds to the B-pentamer of cholera toxin, showing that it inhibits toxin activity in a murine challenge model. Infant mice given the bivalent VHH prior to V. cholerae infection exhibit a significant reduction in cholera toxin–associated intestinal fluid secretion and diarrhoea. In addition, the bivalent VHH reduces V. cholerae colonization levels in the small intestine by a factor of 10. This cholera toxin–binding protein holds promise for protecting against severe diarrhoea associated with cholera.

Article Details

Volume / Issue Vol. 16, Issue 1
Published March 19, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (16)

M

Marcus Petersson

F

Franz G. Zingl

E

Everardo Rodriguez-Rodriguez

J

Jakob K. H. Rendsvig

H

Heidi Heinsøe

E

Emma Wenzel Arendrup

N

Natalia Mojica

D

Dario Segura Peña

N

Nikolina Sekulić

U

Ute Krengel

M

Monica L. Fernández-Quintero

T

Timothy P. Jenkins

L

Lone Gram

M

Matthew K. Waldor

A

Andreas H. Laustsen

S

Sandra Wingaard Thrane