ArticlePloS one2026
A comprehensive full-length transcriptome landscape of cigarette smoke-exposed HASMCs reveals extensive remodeling of mRNA isoforms and regulatory networks.
Article in PloS one, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
Cigarette smoke extract (CSE) exerts paradoxical concentration-dependent effects on vascular smooth muscle cells, though the underlying isoform-level mechanisms remain unexplored. We employed Oxford Nanopore long-read sequencing to analyze the full-length transcriptome of human aortic smooth muscle cells after CSE treatment. We confirmed that low-concentration CSE (0.2%) slightly promoted cell viability while higher concentrations (0.4%-0.8%) induced dose-dependent suppression. Sequencing of 0.6% CSE (midpoint cytotoxicity)-treated cells revealed 11,222 novel transcripts and extensive post-transcriptional reprogramming, including: 1,866 upregulated transcripts involving ferroptosis and cell division; 493 downregulated transcripts in oxidative phosphorylation and glutathione metabolism; 1,753 alternative polyadenylation events mediating 3'UTR remodeling; and 269 alternative splicing events affecting cell cycle regulators and transcription factors (CREM, FOSL1, HBP1). Our study suggests that high-concentration CSE cytotoxicity is executed through coordinated post-transcriptional dysregulation, providing the first isoform-level perspective on smoking-induced vascular pathology and revealing previously unrecognized regulatory mechanisms in cigarette smoke-mediated vascular injury.
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