bioRxiv · 10.64898/2026.09.17.748423
Carcinogen-induced preinvasive human squamous lung cancer is characterised by a novel atypical basal cell state and presents opportunities for chemoprevention
Abstract
There are no adequate carcinogen-induced models of the earliest stages of human squamous lung cancer (LUSC), limiting the development of effective chemoprevention strategies. We developed a novel human model of early LUSC by exposing differentiated primary human airway cells to a chemical carcinogen known to cause murine LUSC. Carcinogen exposure induced a phenotype recapitulating the earliest stages of human LUSC and associated with the emergence of a novel population of atypical basal cells (ABCs). ABCs express key cancer hallmark markers but without evidence of either common LUSC-associated mutations or an emergent major clonal/subclonal population. We established the clinical relevance of this model by demonstrating enrichment of the ABC expression profile in independent clinical precancer specimens. We then show that capivasertib, a clinically approved kinase inhibitor, prevented the emergence of the abnormal phenotype and the accumulation of cells with an active DNA damage response. Further, capivasertib reversed the established phenotype; and remained effective when nebulised in vitro, mimicking therapeutic inhalation. Together, these findings establish a tractable human model of carcinogen-induced early LUSC and provide a proof-of-principle for repurposing targeted therapies for the prevention of lung cancer.
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Guo, W., Giles, H., Chernaik, A., Memari, Y., Xie, J., Black, D., Hilgendorff, A., Gabriel, C., Yildirim, A. O., Davies, H., Goddard, M., D'Sa, L., Schmid, O., Nik-Zainal, S., Han, N., McCaughan, F.. 2026-09-18. Carcinogen-induced preinvasive human squamous lung cancer is characterised by a novel atypical basal cell state and presents opportunities for chemoprevention. https://doi.org/10.64898/2026.09.17.748423
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