Abstract 4373309: Chronic Electronic Cigarette Exposure Promotes Atherosclerosis and Chondrogenic Modulation of Smooth Muscle Cells

I Isabella Damiani (Stanford University, Menlo Park, California, United States) C Chad Weldy (Stanford University, Menlo Park, California, United States) Q Quanyi Zhao E Elena Hurtado Solberg (Stanford University, Menlo Park, California, United States) G Guyu Qin (Stanford University, Santa Clara, California, United States) M Meena Easwaran (Stanford University, Stanford, California, United States) S Sugandha Basu (Stanford University, Palo Alto, California, United States) W Wenduo Gu M Matthew Worssam (Stanford University, Palo Alto, California, United States) J João Monteiro (Chief Editor, Nature Medicine) S Siwen Zheng (Stanford University, Palo Alto, California, United States) G Gurmenjit Kaur Bahia (Stanford University, Menlo Park, California, United States) R Ramendra Kundu T Trieu Nguyen E Elizabeth Direnzo (Stanford University, Menlo Park, California, United States) P Paul Cheng J Juyong Kim (Stanford University, Menlo Park, California, United States)

Abstract

Introduction: Electronic cigarette use has emerged as a significant public health concern, particularly among adolescents and young adults. Epidemiological and experimental studies have linked e-cigarette use to accelerated atherosclerosis, but the underlying mechanisms remain poorly understood. Methods: To investigate the effects of chronic e-cigarette exposure on atherosclerotic lesion formation and vascular smooth muscle cell (SMC) phenotypic modulation, we utilized SMC lineage-tracing mice on an ApoE-null hyperlipidemic background (n=16 per group). Mice were exposed to pod-based e-cigarettes (Juul) three times weekly for 12 weeks in a whole-body exposure chamber, while controls were exposed to filtered air. Aortic sinus tissues were harvested and analyzed using single-cell RNA sequencing (scRNA-seq) and assay for transposase-accessible chromatin sequencing (scATAC-seq) to profile gene expression and chromatin accessibility. Osteogenic activity was assessed histologically via alkaline phosphatase staining. Results: E-cigarette exposure significantly increased the proportion of SMCs undergoing phenotypic switching toward a chondrogenic-like phenotype, with elevated expression of Col2a1 and Tnfrsf11b . Histological analysis confirmed increased osteogenic activity in e-cigarette-exposed mice. Chromatin accessibility profiling identified a unique cellular cluster enriched for glutamatergic signaling pathways, including increased accessibility at Grin2a , the gene encoding the NMDA receptor subunit GluN2A. Grin2a expression was upregulated in SMCs from e-cigarette-exposed mice and in vitro human coronary artery SMCs treated with e-cigarette extract. Inhibition of GRIN2A signaling attenuated e-cigarette-induced SMC phenotypic switching, indicating that NMDAR activation plays a key role in this process. Conclusion: Chronic e-cigarette exposure promotes atherosclerosis by driving SMC phenotypic modulation toward a chondrogenic state. Our results identify GRIN2A and NMDAR signaling as a potential therapeutic target for mitigating cardiovascular risk associated with e-cigarette use.

Article Details

Journal Circulation
Volume / Issue Vol. 152, Issue Suppl_3
Published November 04, 2025
ISSN 0009-7322
Publisher Lippincott Williams & Wilkins

Journal Info

Circulation

Lippincott Williams & Wilkins

ISSN: 0009-7322 Health Sciences

Authors (17)

I

Isabella Damiani

Stanford University, Menlo Park, California, United States

C

Chad Weldy

Stanford University, Menlo Park, California, United States

Q

Quanyi Zhao

E

Elena Hurtado Solberg

Stanford University, Menlo Park, California, United States

G

Guyu Qin

Stanford University, Santa Clara, California, United States

M

Meena Easwaran

Stanford University, Stanford, California, United States

S

Sugandha Basu

Stanford University, Palo Alto, California, United States

W

Wenduo Gu

M

Matthew Worssam

Stanford University, Palo Alto, California, United States

J

João Monteiro

Chief Editor, Nature Medicine

S

Siwen Zheng

Stanford University, Palo Alto, California, United States

G

Gurmenjit Kaur Bahia

Stanford University, Menlo Park, California, United States

R

Ramendra Kundu

T

Trieu Nguyen

E

Elizabeth Direnzo

Stanford University, Menlo Park, California, United States

P

Paul Cheng

J

Juyong Kim

Stanford University, Menlo Park, California, United States