Salivary Interleukin Levels in Oral Squamous Cell Carcinoma and Oral Epithelial Dysplasia: Findings from a Sri Lankan Study

Author:

Piyarathne Nadisha S.12ORCID,Weerasekera Manjula M.34ORCID,Fonseka Pasquel Fonsekalage Damith5,Karunatilleke Appu Hennedi Thotahewage Sunil5,Liyanage Rubasinha Liyanage Pemith Ranura6,Jayasinghe Ruwan Duminda2ORCID,De Silva Kanishka7,Yasawardene Surangi3,Gupta Ekta1,Jayasinghe Jayasinghe Arachchilage Premasiri1,Abu-Eid Rasha18ORCID

Affiliation:

1. Institute of Dentistry, School of Medicine, Medical Sciences and Nutrition, University of Aberdeen, Aberdeen AB25 2ZR, UK

2. Center for Research in Oral Cancer, Faculty of Dental Sciences, University of Peradeniya, Peradeniya 20400, Sri Lanka

3. Faculty of Medical Sciences, University of Sri Jayewardenepura, Nugegoda 10250, Sri Lanka

4. Sri Lanka Institute of Biotechnology, Pitipana, Homagama 10206, Sri Lanka

5. Colombo South Teaching Hospital, Kalubowila 10350, Sri Lanka

6. National Dental Hospital (Teaching), Colombo 00700, Sri Lanka

7. National Cancer Institute, Maharagama 10280, Sri Lanka

8. Aberdeen Cancer Centre, University of Aberdeen, Aberdeen AB25 2ZR, UK

Abstract

The incidence of oral squamous cell carcinoma (OSCC), and its precursor, oral epithelial dysplasia (OED), is on the rise, especially in South Asia. OSCC is the leading cancer in males in Sri Lanka, with >80% diagnosed at advanced clinical stages. Early detection is paramount to improve patient outcome, and saliva testing is a promising non-invasive tool. The aim of this study was to assess salivary interleukins (lL1β, IL6, and IL8) in OSCC, OED and disease-free controls in a Sri Lankan study cohort. A case-control study with OSCC (n = 37), OED (n = 30) patients and disease-free controls (n = 30) was conducted. Salivary lL1β, IL6, and IL8 were quantified using enzyme-linked immuno-sorbent assay. Comparisons between different diagnostic groups and potential correlations to risk factors were assessed. Salivary levels for the three tested interleukins increased from disease-free controls through OED, and were highest in OSCC samples. Furthermore, the levels of IL1β, IL6, and IL8 increased progressively with OED grade. The discrimination between patients (OSCC and OED) and controls, as assessed by AUC of receiver operating characteristic curves, was 0.9 for IL8 (p = 0.0001) and 0.8 for IL6 (p = 0.0001), while IL1β differentiated OSCC from controls (AUC 0.7, p = 0.006). No significant associations were found between salivary interleukin levels and smoking, alcohol, and betel quid risk factors. Our findings suggest that salivary IL1β, IL6, and IL8 are associated with disease severity of OED, and are potential biomarkers for predicting disease progression in OED, and the screening of OSCC.

Funder

Elphinstone Scholarship, University of Aberdeen, UK

University Grants Commission, Sri Lanka

Publisher

MDPI AG

Subject

Cancer Research,Oncology

Reference61 articles.

1. World Health Organization GLOBOCAN 2020 (2022, September 19). Cancer Today 2020, Available online: https://gco.iarc.fr/today/home.

2. Overview of oral cavity squamous cell carcinoma: Risk factors, mechanisms, and diagnostics;Chamoli;Oral Oncol.,2021

3. Epidemiologic aspects of oral cancer;Sarode;Dis. A Mon.,2020

4. Warnakulasuriya, S. (2020). Risk Assessment in Oral Health, Springer.

5. National Cancer Control Program (2022, September 25). Sri Lanka Cancer Incidence Data Book, Available online: https://www.nccp.health.gov.lk/en/incedenceData.

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