Modeling the Exposome in Murine Cardiovascular Disease

Our exposome, encompassing our environmental and lifestyle exposures across the life span, is a critical determinant of cardiovascular health. Clinical and epidemiological data demonstrate that sleep, stress, exercise, smoking, viral respiratory infections, and environmental pollution each modulate cardiovascular disease (CVD) risk, yet the pathobiological mechanisms underlying these associations remain poorly understood. Fundamental research into how the exposome and the physiological responses to it shape cardiovascular pathophysiology holds significant promise for expanding biologic understanding and identifying novel mechanisms with therapeutic potential. Essential to such investigations are murine CVD models subjected to translatable, precise, and tractable exposomic modification. Here, we review the experimental approaches for manipulating these select environmental and lifestyle factors in mice and highlight the emerging evidence for causal holistic mechanisms linking the exposome to experimental CVD.

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Publication Details

Journal
JACC Basic to Translational Science
Published
2026-09-12
DOI
https://doi.org/10.1016/j.jacbts.2026.101690
Primary Topic
Health, Environment, Cognitive Aging
Type
article
Field-Weighted Citation Impact
0.00

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article

Modeling the Exposome in Murine Cardiovascular Disease

Jeffrey Downey, Cameron S. McAlpine, Jing Zhu, Clinton S. Robbins et al.
JACC Basic to Translational Science
Health, Environment, Cognitive Aging
article

Modeling the Exposome in Murine Cardiovascular Disease

Jeffrey Downey, Cameron S. McAlpine, Jing Zhu, Clinton S. Robbins, Taylor E. Ireland, Filip K. Swirski, Wolfram C. Poller, Bibi Alika Sulaman, Nicholas J. Leeper, Ting Xiong
article en

Abstract

Our exposome, encompassing our environmental and lifestyle exposures across the life span, is a critical determinant of cardiovascular health. Clinical and epidemiological data demonstrate that sleep, stress, exercise, smoking, viral respiratory infections, and environmental pollution each modulate cardiovascular disease (CVD) risk, yet the pathobiological mechanisms underlying these associations remain poorly understood. Fundamental research into how the exposome and the physiological responses to it shape cardiovascular pathophysiology holds significant promise for expanding biologic understanding and identifying novel mechanisms with therapeutic potential. Essential to such investigations are murine CVD models subjected to translatable, precise, and tractable exposomic modification. Here, we review the experimental approaches for manipulating these select environmental and lifestyle factors in mice and highlight the emerging evidence for causal holistic mechanisms linking the exposome to experimental CVD.

JACC Basic to Translational ScienceVol. 11(10)
University Health Network (CA), Cardiovascular Institute of the South (US), Massachusetts General Hospital (US), Stanford Medicine (US), Stanford University (US), Icahn School of Medicine at Mount Sinai (US)
Alzheimer's Association, American Heart Association, Cure Alzheimer's Fund, National Institutes of Health
Good health and well-being
Openalex Percentile: Top 12%
Health, Environment, Cognitive Aging
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