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Identification of triple-negative breast cancer cell lines classified under the same molecular subtype using different molecular characterization techniques: implications for translational research

journal contribution
posted on 2025-10-16, 22:27 authored by Jose Rodrigo Espinosa Fernandez, Bedrich EckhardtBedrich Eckhardt, J Lee, B Lim, T Pearson, RS Seitz, DR Hout, BL Schweitzer, TJ Nielsen, O Rayne Lawrence, Y Wang, A Rao, NT Ueno
The original algorithm that classified triple-negative breast cancer (TNBC) into six subtypes has recently been revised. The revised algorithm (TNBCtype-IM) classifies TNBC into five subtypes and a modifier based on immunological (IM) signatures. The molecular signature may differ between cancer cells in vitro and their respective tumor xenografts. We identified cell lines with concordant molecular subtypes regardless of classification algorithm or analysis of cells in vitro or in vivo, to establish a panel of clinically relevant molecularly stable TNBC models for translational research. Gene expression data were used to classify TNBC cell lines using the original and the revised algorithms. Tumor xenografts were established from 17 cell lines and subjected to gene expression profiling with the original 2188-gene algorithm TNBCtype and the revised 101-gene algorithm TNBCtype-IM. A total of six cell lines (SUM149PT (BL2), HCC1806 (BL2), SUM149PT (BL2), BT549 (M), MDA-MB-453 (LAR), and HCC2157 (BL1)) maintained their subtype classification between in vitro and tumor xenograft analyses across both algorithms. For TNBC molecular classification–guided translational research, we recommend using these TNBC cell lines with stable molecular subtypes.<p></p>

History

Publication Date

2020-04-30

Journal

PLoS ONE

Volume

15

Issue

4

Article Number

e0231953

Pagination

8p.

Publisher

Public Library of Science

ISSN

1932-6203

Rights Statement

© 2020 Espinosa Fernandez et al. This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.

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