Neuronal activity-dependent mechanisms of small cell lung cancer pathogenesis

S Solomiia Savchuk K Kaylee M. Gentry W Wengang Wang E Elana Carleton C Carlos A. O. Biagi-Junior K Karan Luthria B Belgin Yalçın L Lijun Ni H Hannah C. Farnsworth R Rachel A. Davis R Richard Drexler J Johannes C. Melms Y Yin Liu L Lehi Acosta-Alvarez G Griffin G. Hartmann E Elisa C. Pavarino J Jenna LaBelle P Pamelyn J. Woo A Angus M. Toland F Fangfei Qu Y Yoon Seok Kim M Mariella G. Filbin M Mark A. Krasnow K Keith L. Ligon B Benjamin Izar J Julien Sage B Bernardo L. Sabatini M Michelle Monje H Humsa S. Venkatesh

Abstract

Abstract Neural activity is increasingly recognized as a crucial regulator of cancer growth. In the brain, neuronal activity robustly influences glioma growth through paracrine mechanisms 1 and by electrochemical integration of malignant cells into neural circuitry via neuron-to-glioma synapses 2,3 . Outside of the central nervous system, innervation of tumours such as prostate, head and neck, breast, pancreatic, and gastrointestinal cancers by peripheral nerves similarly regulates cancer progression 4–12 . However, the extent to which the nervous system regulates small cell lung cancer (SCLC) progression, either in the lung or when growing within the brain, is less well understood. SCLC is a lethal high-grade neuroendocrine tumour that exhibits a strong propensity to metastasize to the brain. Here we demonstrate that in the lung, vagus nerve transection markedly inhibits primary lung tumour development and progression, highlighting a critical role for innervation in SCLC growth. In the brain, SCLC cells co-opt neuronal activity-regulated mechanisms to stimulate growth and progression. Glutamatergic and GABAergic (γ-aminobutyric acid-producing) cortical neuronal activity each drive proliferation of SCLC in the brain through paracrine and synaptic neuron–cancer interactions. SCLC cells form bona fide neuron-to-SCLC synapses and exhibit depolarizing currents with consequent calcium transients in response to neuronal activity; such SCLC cell membrane depolarization is sufficient to promote the growth of intracranial tumours. Together, these findings illustrate that neuronal activity has a crucial role in dictating SCLC pathogenesis.

Article Details

Journal Nature
Volume / Issue Vol. 646, Issue 8087
Published October 30, 2025
Pages 1232-1242
ISSN 0028-0836
Publisher Nature Portfolio

Journal Info

Nature

Nature Portfolio

ISSN: 0028-0836 Health Sciences

Authors (29)

S

Solomiia Savchuk

K

Kaylee M. Gentry

W

Wengang Wang

E

Elana Carleton

C

Carlos A. O. Biagi-Junior

K

Karan Luthria

B

Belgin Yalçın

L

Lijun Ni

H

Hannah C. Farnsworth

R

Rachel A. Davis

R

Richard Drexler

J

Johannes C. Melms

Y

Yin Liu

L

Lehi Acosta-Alvarez

G

Griffin G. Hartmann

E

Elisa C. Pavarino

J

Jenna LaBelle

P

Pamelyn J. Woo

A

Angus M. Toland

F

Fangfei Qu

Y

Yoon Seok Kim

M

Mariella G. Filbin

M

Mark A. Krasnow

K

Keith L. Ligon

B

Benjamin Izar

J

Julien Sage

B

Bernardo L. Sabatini

M

Michelle Monje

H

Humsa S. Venkatesh