Molecular profiling of brain endothelial cell to astrocyte endfoot communication in mouse and human

S Steven A. Hill I Isabel Bravo-Ferrer A Austėja Čiulkinytė N Noelia Pérez Ramos I Ilaria Rossetti C Chiara Colvin P Paula Beltran-Lobo C Carlos Parra-Pérez K Katie Emelianova O Owen Dando B Beth Geary R Raja S. Nirujogi D Dario R. Alessi D Do-Young Lee Y Youn-Bok Lee B Blanca Díaz Castro

Abstract

Abstract Our understanding of how the body communicates with the brain to coordinate their functions is remarkably limited. At the blood-brain barrier (BBB), brain endothelial cells (BECs) are ideally positioned to mediate signaling between blood and brain parenchyma via direct communication with astrocyte perivascular processes (endfeet). We develop a method to define the mouse in vivo astrocyte endfoot proteome, which in combination with BEC-specific RNA-seq, reveal BEC to astrocyte endfoot ligand-receptor pairs that are modulated when mice are exposed to a peripheral inflammatory insult with lipopolysaccharide. We show that over 80% of these mouse BEC-endfoot ligand-receptor pairs are also found in the human BBB, with a subset of them differentially expressed in human multiple sclerosis or Alzheimer’s disease compared to healthy individuals. Our findings reveal dynamic BEC-endfoot communication pathways that are relevant to human physiology and provide methodology and datasets for the translational study of BEC-astrocyte crosstalk in health and disease.

Article Details

Volume / Issue Vol. 16, Issue 1
Published November 06, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (16)

S

Steven A. Hill

I

Isabel Bravo-Ferrer

A

Austėja Čiulkinytė

N

Noelia Pérez Ramos

I

Ilaria Rossetti

C

Chiara Colvin

P

Paula Beltran-Lobo

C

Carlos Parra-Pérez

K

Katie Emelianova

O

Owen Dando

B

Beth Geary

R

Raja S. Nirujogi

D

Dario R. Alessi

D

Do-Young Lee

Y

Youn-Bok Lee

B

Blanca Díaz Castro