Comparative Assessment of Acute Pulmonary Effects Induced by Heat-Not-Burn Tobacco Aerosol Inhalation in a Murine Model
Beong Ki Kim, Won Jin Yang, Ye Seul Seong, Yong Jun Choi, Hye Jung Park, Min Kwang Byun, Yoon Soo Chang, Jae Hwa Cho, Chi Young Kim

TL;DR
This study compares the lung effects of heat-not-burn tobacco and traditional cigarettes in mice, finding changes in blood proteins that suggest nicotine-related immune activation.
Contribution
The study identifies specific proteins linked to HnB smoke exposure and provides insights into nicotine's impact on immune pathways.
Findings
Exposure to HnB smoke increased levels of proteins like Ccl20, Cxcl1, and Pdgfb in mice.
Protein expression profiles differed between HnB and traditional cigarette smoke exposure.
The findings suggest nicotine pathways are activated by HnB smoke exposure.
Abstract
Tobacco smoking remains a major global health concern, causing preventable deaths and economic strain. Although new tobacco products such as heat-not-burn (HnB) are safer alternatives to traditional cigarettes, research on their associated risks remains limited. This study aimed to investigate the effects of HnB smoke exposure on the lungs compared to those of traditional cigarettes and the combined use of HnB and cigarettes using experiments with a mouse model. We quantitatively analyzed changes in the levels of 92 blood plasma proteins using the proximity extension assay method and observed significant changes in their levels in mice exposed to different smoke conditions; specifically, the levels of certain proteins, including Ccl20, Cxcl1, and Pdgfb, increased in the HnB smoke-exposed group, suggesting activation of nicotine pathways. Comparative analysis with traditional cigarette…
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Taxonomy
TopicsAir Quality and Health Impacts · Smoking Behavior and Cessation · Adipose Tissue and Metabolism
