Molecular Dx Significance 3/10

Salivary proteomics reveals distinct protein signatures in hookah versus cigarette smokers

The study reports a preliminary LC-MS/MS analysis of whole saliva from healthy young adults to compare proteomic profiles of exclusive hookah smokers, exclusive cigarette smokers, and non-smokers. Investigators identified quantitative and functional shifts in both smoking groups, with cigarette exposure producing a more pronounced pattern and distinct differentially abundant proteins in each cohort. In silico correlation with TCGA head and neck squamous cell carcinoma data suggests several of these salivary proteins may reflect early molecular alterations relevant to tobacco-related carcinogenesis. These preliminary proteomic findings provide a foundational dataset for future biomarker development rather than a validated clinical diagnostic tool.

The original study

Salivary proteomic profiling of hookah and conventional cigarette users without clinical oral disease: Preliminary findings.

Authors
Costa TIS, de Souza Salardani M, do Carmo Carvalho BF, Zimiani CF, Santos JN, De Rossi T, et al.
Journal
Nicotine & tobacco research : official journal of the Society for Research on Nicotine and Tobacco
Type
Journal Article
PMID
42520222
Read the original study →

Original abstract

INTRODUCTION: This study aimed to evaluate the profile of salivary proteins in young hookah and conventional cigarette users without apparent oral mucosal lesions, and to correlate the findings with clinical variables related to tobacco use. METHODS: Whole saliva samples were collected from three groups: exclusive frequent hookah smokers, exclusive frequent cigarette smokers, and non-smokers. Participants were healthy young adults (18-40 years) of both sexes with good general and oral health. LC-MS/MS analyses were performed using Synapt G2 HDMS (Waters) coupled to the nano Acquity UPLC chromatography system (Waters). Database searches were performed using PEAKS Studio X+. The groups were compared and correlations between protein abundance and clinical variable, alcohol consumption, and duration of tobacco use were evaluated. RESULTS AND CONCLUSIONS: The results revealed quantitative and functional changes in the salivary proteome of cigarette and hookah smokers, with enrichment of processes related to epigenetic regulation (chromatin/nucleosomes) and cell differentiation. However, cigarette exposure was associated with more pronounced functional pattern. Direct comparison of hookah and cigarette smokers identified three differentially abundant proteins (DAP) in the cigarette group (ALDH3A1, CSTA, and PGM2) and seven in the hookah group (LYPLAL1, IGLL5, PIP, PRSS8, UBA1, IGHV5-10-1, and SERPINB9). Finally, in silico validation using transcriptomic data from the TCGA PanCancer Atlas database for head and neck squamous cell carcinoma demonstrated that several genes corresponding to salivary DAP identified in smokers exhibit altered expression patterns in head and neck tumors, including Glucose-6-phosphate dehydrogenase, Scavenger receptor cysteine-rich protein DMBT1, Beta-2-glycoprotein 1 and Inter-alpha-trypsin inhibitor heavy chain H4.