Angiogenesis, Inflammation & Therapeutics | Online ISSN  2207-872X
REVIEWS   (Open Access)

Screening for Oral Cancer Using Brush Biopsies and DNA Image Cytometry - A Review

Pranjali Verma 1,  Shikha Kumari Rajak 2

+ Author Affiliations

Journal of Angiotherapy 7 (2) 1-6 https://doi.org/10.25163/angiotherapy.729410

Submitted: 15 November 2023 Revised: 16 December 2023  Published: 21 December 2023 


Abstract

For the prompt cytologic diagnosis of oral cancer, non-invasive brush biopsies play a crucial role. Suspicious lesions in patients can be confirmed for malignancy using Deoxyribose Nucleic Acid Image Cytometry (DNAIC), offering a comprehensive diagnostic approach. The enhanced brush biopsy collects diagnostic material across different layers of the damaged epithelium, providing a non-invasive screening method. Despite the limitation of acquiring cells mainly from the superficial and intermediate layers of oral mucosa, DNAIC-DCNN utilizes Deep Convolutional Neural Network (DCNN) for widespread oral cancer detection. Semantic division is performed through the bottom branches, allowing for targeted medication to modify cancer cell features and inhibit proliferation. Targeted drugs, such as Cetuximab, can be used alone or in combination with chemotherapy and radiation treatment for specific patients with oral cancer. The non-invasive and accurate diagnostic capability of DNAIC in conjunction with cytology has demonstrated high precision and accuracy in identifying oral malignant squamous cell transition within epithelial tissues.

Keywords: Deoxyribose Nucleic Acid Image Cytometry, Deep Convolutional Neural Network, Brush Biopsies, Oral Cancer.

References


Abati, S., Bramati, C., Bondi, S., Lissoni, A., & Trimarchi, M. (2020). Oral cancer and precancer: a narrative review on the relevance of early diagnosis. International journal of environmental research and public health, 17(24), 9160.

Bechstedt, N., Pomjanski, N., Schramm, M., & Remmerbach, T. W. (2022). Evaluation of Static DNA Ploidy Analysis Using Conventional Brush Biopsy-Based Cytology Samples as an Adjuvant Diagnostic Tool for the Detection of a Malignant Transformation in Potentially Oral Malignant Diseases: A Prospective Study. Cancers, 14(23), 5828.

Datta, M., Guillaud, M., Chaitanya, N., Ndvn, S., Palat, G., Kumari, P., ... & Laronde, D. M. (2022). Use of DNA image cytometry in conducting oral cancer screening in rural India. Cytopathology, 33(5), 600-610.

Datta, M., Guillaud, M., Chaitanya, N., Ndvn, S., Palat, G., Kumari, P., ... & Laronde, D. M. (2022). Use of DNA image cytometry in conducting oral cancer screening in rural India. Cytopathology, 33(5), 600-610.

Datta, M., Laronde, D. M., Rosin, M. P., Zhang, L., Chan, B., & Guillaud, M. (2021). Predicting progression of low-grade oral dysplasia using brushing-based DNA ploidy and Chromatin Organization analysis. Cancer Prevention Research, 14(12), 1111-1118.

Datta, M., Laronde, D., Palcic, B., & Guillaud, M. (2019). The role of DNA image cytometry in screening oral potentially malignant lesions using brushings: A systematic review. Oral oncology, 96, 51-59.

Errazquin, R., Carrasco, E., Del Marro, S., Suñol, A., Peral, J., Ortiz, J., ... & Garcia-Escudero, R. (2023). Early diagnosis of oral cancer and lesions in Fanconi anemia patients: a prospective and longitudinal study using saliva and plasma. Cancers, 15(6), 1871.

Hemalatha, S., Chidambararaj, N., & Motupalli, R. (2022, January). Performance Evaluation of Oral Cancer Detection and Classification using Deep Learning Approach. In 2022 International Conference on Advances in Computing, Communication and Applied Informatics (ACCAI), 1-6. IEEE.

https://datasetsearch.research.google.com/search?src=0&query=%20oral%20cancer%20using%20brush%20biopsies%20&docid=L2cvMTFuMTV0cnFwNg%3D%3D

Hu, Y., Yu, Q., Guo, C., & Wang, G. (2022). DNA image cytometric analysis of bronchial washings as an adjunct for the detection of lung cancer in a clinical setting. Cancer Medicine, 11(8), 1860-1868.

Idrees, M., Farah, C. S., Sloan, P., & Kujan, O. (2022). Oral brush biopsy using liquid-based cytology is a reliable tool for oral cancer screening: A cost-utility analysis. Cancer Cytopathology, 130(9), 740-748.

Kämmerer, P. W., Koch, F. P., Santoro, M., Babaryka, G., Biesterfeld, S., Brieger, J., & Kunkel, M. (2013). Prospective, blinded comparison of cytology and DNA-image cytometry of brush biopsies for early detection of oral malignancy. Oral oncology, 49(5), 420-426.

Kaur, M., Handa, U., Mohan, H., & Dass, A. (2016). Evaluation of brush cytology and DNA image cytometry for the detection of cancer of the oral cavity. Diagnostic cytopathology, 44(3), 201-205.

Li, C., Wu, L., Deng, Y., Shen, X., Liu, W., & Shi, L. (2020). DNA aneuploidy with image cytometry for detecting dysplasia and carcinoma in oral potentially malignant disorders: A prospective diagnostic study. Cancer medicine, 9(17), 6411-6420.

Ma, J. M., Zhou, T. J., Wang, R., Shan, J., Wu, Y. N., Song, X. L., ... & Fan, Y. (2014). Brush biopsy with DNA-image cytometry: a useful and noninvasive method for monitoring malignant transformation of potentially malignant oral disorders. European Archives of Oto-rhino-laryngology, 271, 3291-3295.

Mosaddad, S. A., Namanloo, R. A., Aghili, S. S., Maskani, P., Alam, M., Abbasi, K., ... & Tebyaniyan, H. (2023). Photodynamic therapy in oral cancer: A review of clinical studies. Medical Oncology, 40(3), 91.

Parakh, M. K., Ulaganambi, S., Ashifa, N., Premkumar, R., & Jain, A. L. (2020). Oral potentially malignant disorders: clinical diagnosis and current screening aids: a narrative review. European Journal of Cancer Prevention, 29(1), 65-72.

Pranjali Verma pioneered the application of non-invasive brush biopsies and Deoxyribose Nucleic Acid Image Cytometry (DNAIC) for oral cancer diagnosis, enhancing diagnostic precision.

Reference:

Remmerbach, T. W., Weidenbach, H., Hemprich, A., & Böcking, A. (2003). Earliest detection of oral cancer using non-invasive brush biopsy including DNA-image-cytometry: report on four cases. Analytical Cellular Pathology, 25(4), 159-166.

Ribeiro, M. G. M., Dolabella, S. S., Trento, C. L., da Silva Barros, J., Freitas, V. S., Daltoé, F. P., & Onofre, A. S. C. (2023). DNA image cytometry as an adjuvant method applied on oral cytological specimens. Oral Surgery, Oral Medicine, Oral Pathology and Oral Radiology.

Sayal, L., Hamadah, O., Almasri, A., Idrees, M., Thomson, P., & Kujan, O. (2023). Saliva-based cell-free DNA and cell-free mitochondrial DNA in head and neck cancers have promising screening and early detection role. Journal of Oral Pathology & Medicine, 52(1), 29-36.

Shikha Kumari Rajak focused on the integration of Deep Convolutional Neural Network (DCNN) in oral cancer detection, proposing targeted medications like Cetuximab for effective treatment strategies.

Velleuer, E., Dietrich, R., Pomjanski, N., de Santana Almeida Araujo, I. K., Silva de Araujo, B. E., Sroka, I., & Schramm, M. (2020). Diagnostic accuracy of brush biopsy–based cytology for the early detection of oral cancer and precursors in Fanconi anemia. Cancer cytopathology, 128(6), 403-413.

Xiao, X., Shi, L., Li, H., Song, Y., Liu, W., & Zhou, Z. (2015). DNA content status using brush biopsy with image cytometry correlated with staging of oral leukoplakia: a preliminary study. Oral Oncology, 51(1), 59-63.

Yang, G., Wei, L., Thong, B. K., Fu, Y., Cheong, I. H., Kozlakidis, Z., ... & Li, X. (2022). A systematic review of oral biopsies, sample types, and detection techniques applied in relation to oral cancer detection. BioTech, 11(1), 5.

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