Deep Learning-Based Automated Analysis of NK Cell Cytotoxicity in Single Cancer Cell Arrays
-
Published:2024-06-27
Issue:
Volume:
Page:
-
ISSN:1976-0280
-
Container-title:BioChip Journal
-
language:en
-
Short-container-title:BioChip J
Author:
Moon Dowon, Kim Seong-Eun, Wang Chuangqi, Lee Kwonmoo, Doh JunsangORCID
Abstract
AbstractThe cytotoxicity assay of immune cells based on live cell imaging offers comprehensive information at the single cell-level information, but the data acquisition and analysis are labor-intensive. To overcome this limitation, we previously developed single cancer cell arrays that immobilize cancer cells in microwells as single cell arrays, thus allow high-throughput data acquisition. In this study, we utilize deep learning to automatically analyze NK cell cytotoxicity in the context of single cancer cell arrays. Defined cancer cell position and the separation of NK cells and cancer cells along distinct optical planes facilitate segmentation and classification by deep learning. Various deep learning models are evaluated to determine the most appropriate model. The results of the deep learning-based automated data analysis are consistent with those of the previous manual analysis. The integration of the microwell platform and deep learning would present new opportunities for the analysis of cell–cell interactions.
Funder
National Research Foundation of Korea Seoul National University
Publisher
Springer Science and Business Media LLC
Reference37 articles.
1. June, C.H., O’Connor, R.S., Kawalekar, O.U., Ghassemi, S., Milone, M.C.: CAR T cell immunotherapy for human cancer. Science 359(6382), 1361–1365 (2018) 2. AlHaideri, M., Tondok, S.B., Safa, S.H., Maleki, A.H., Rostami, S., Jalil, A.T., Al-Gazally, M.E., Alsaikhan, F., Rizaev, J.A., Mohammad, T.A.M., Tahmasebi, S.: CAR-T cell combination therapy: the next revolution in cancer treatment. Cancer Cell Int. 22(1), 365 (2022) 3. Sheykhhasan, M., Manoochehri, H., Dama, P.: Use of CAR T-cell for acute lymphoblastic leukemia (ALL) treatment: a review study. Cancer Gene Ther. 29(8), 1080–1096 (2022) 4. Miller, R.G., Dunkley, M.: Quantitative analysis of the 51Cr release cytotoxicity assay for cytotoxic lymphocytes. Cell. Immunol. 14(2), 284–302 (1974) 5. Elsner, L., Dressel, R.: L1 and L2 regularization for multiclass hinge loss models. In: Galluzzi, L., Rudqvist, N. P. (Eds.). Tumor immunology and immunotherapy – Cellular Methods Part A. Cambridge, MA, USA: Academic Press, pp. 497–512 (2020)
|
|