Single cell proteomic analysis defines discrete neutrophil functional states in human glioblastoma

P Pranvera Sadiku A Alejandro J. Brenes R Rupert L. Mayer L Leila Reyes P Patrícia Coelho G Gabi van Stralen A Ailiang Zhang M Manuel A. Sanchez-Garcia E Emily R. Watts I Imran Liaquat A Andrew J. M. Howden I Ikeoluwa Adekoya A Anuka Boldbaatar A Allan MacRaild S Sarah Risbridger G Gillian M. Morrison H Heather MacPherson C Caroline M. Bruce S Shonna Johnston R Robert Grecian F Fiona A. Murphy S Steven M. Pollard P Paul M. Brennan K Karl Mechtler S Sarah R. Walmsley

Abstract

Abstract Neutrophils are vital innate immune cells shown to infiltrate glioblastomas, however we currently lack the molecular understanding of their functional states within the tumour niche. Given that neutrophils are known to display a prominent discordance between mRNA and protein abundance, we developed ultra-sensitive mini-bulk and single cell proteomic (SCP) workflows to study the heterogeneity of peripheral blood and tumour associated neutrophils (TAN) from patients with glioblastoma. Mini-bulk analysis enabled a deeper protein coverage of circulating immature, mature and TAN populations, defining signatures of maturity and demonstrating that TANs resemble mature circulating neutrophils. Analysis of the SCP data results in the detection of >1100 proteins from a single TAN providing a detailed characterization of neutrophil subsets in glioblastoma. Our approach shows evidence of pathogenic and anti-tumorigenic clusters and discovers cell states invisible to scRNAseq, opening new opportunities to selectively target pro-tumoural neutrophil states.

Article Details

Volume / Issue Vol. 17, Issue 1
Published December 15, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (25)

P

Pranvera Sadiku

A

Alejandro J. Brenes

R

Rupert L. Mayer

L

Leila Reyes

P

Patrícia Coelho

G

Gabi van Stralen

A

Ailiang Zhang

M

Manuel A. Sanchez-Garcia

E

Emily R. Watts

I

Imran Liaquat

A

Andrew J. M. Howden

I

Ikeoluwa Adekoya

A

Anuka Boldbaatar

A

Allan MacRaild

S

Sarah Risbridger

G

Gillian M. Morrison

H

Heather MacPherson

C

Caroline M. Bruce

S

Shonna Johnston

R

Robert Grecian

F

Fiona A. Murphy

S

Steven M. Pollard

P

Paul M. Brennan

K

Karl Mechtler

S

Sarah R. Walmsley