Open Access
Establishment of primary human breast cancer cell lines using “pulsed hypoxia” method and development of metastatic tumor model in immunodeficient mice
Тип публикации: Journal Article
Дата публикации: 2019-02-28
scimago Q1
wos Q1
БС1
SJR: 1.500
CiteScore: 10.9
Impact factor: 6.0
ISSN: 14752867
PubMed ID:
30858763
Cancer Research
Oncology
Genetics
Краткое описание
BackgroundAmong breast cancer (BC) patients the outcomes of anticancer therapy vary dramatically due to the highly heterogeneous molecular characteristics of BC. Therefore, an extended panel of BC cell lines are required for in vitro and in vivo studies to find out new characteristic of carcinogenesis and metastasis. The purpose of this study was to develop patient-derived BC cell cultures and metastatic tumor models representing a tool for personal therapy and translational research.MethodsBreast cancer cells were prepared by optimizing technique from tumor samples. We used real-time RT-PCR, flow cytometry, western blotting, cytotoxicity assay, karyotyping and fluorescent and electron microscopy analyses to characterize the established cell lines. BC xenografts in scid mice were used for in vivo tumorigenicity studies.ResultsThe technique of preparing primary cells was optimized and this resulted in a high output of viable and active proliferated cells of nine patient-derived breast cancer cell lines and one breast non-malignant cell line. High E-cadherine and EpCAM expression correlated positively with epithelial phenotype while high expression of N-cadherine and Vimentin were shown in cells with mesenchymal phenotype. All mesenchymal-like cell lines were high HER3-positive—up to 90%. More interesting than that, is that two cell lines under specific culturing conditions (pulsed hypoxia and conditioned media) progressively transformed from mesenchymal to epithelial phenotypes displaying the expression of respective molecular markers proving that the mesenchymal-to-epithelial transition occurred. Becoming epithelial, these cells have lost HER3 and decreased HER2 membrane receptors. Three of the established epithelial cancer cell lines were tumorigenic in SCID mice and the generated tumors exhibited lobules-like structures. Ultrastructure analysis revealed low-differentiate phenotype of tumorigenic cell lines. These cells were in near-triploid range with multiple chromosome rearrangements. Tumorigenic BrCCh4e cells, originated from the patient of four-course chemotherapy, initiated metastasis when they were grafted subcutaneous with colonization of mediastinum lymph nodes.ConclusionsThe developed BC cells metastasizing to mediastinum lymph nodes are a relevant model for downstream applications. Moreover, our findings demonstrate that pulsed hypoxia induces transformation of primary fibroblastoid breast cancer cells to epithelial-like cells and both of these cultures—induced and original—don’t show tumor initiating capacity.
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Nushtaeva A. A. et al. Establishment of primary human breast cancer cell lines using “pulsed hypoxia” method and development of metastatic tumor model in immunodeficient mice // Cancer Cell International. 2019. Vol. 19. No. 1. 46
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Nushtaeva A. A., Karpushina A. A., Ermakov M. S., Gulyaeva L. F., Gerasimov A. V., Sidorov S. V., Gayner T. A., Yunusova A. Y., Tkachenko A. V., Richter V. A., Koval O. Establishment of primary human breast cancer cell lines using “pulsed hypoxia” method and development of metastatic tumor model in immunodeficient mice // Cancer Cell International. 2019. Vol. 19. No. 1. 46
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TY - JOUR
DO - 10.1186/s12935-019-0766-5
UR - https://doi.org/10.1186/s12935-019-0766-5
TI - Establishment of primary human breast cancer cell lines using “pulsed hypoxia” method and development of metastatic tumor model in immunodeficient mice
T2 - Cancer Cell International
AU - Nushtaeva, Anna A
AU - Karpushina, Anastasia A
AU - Ermakov, Mikhail S
AU - Gulyaeva, Ludmila F
AU - Gerasimov, Alexey V
AU - Sidorov, Sergey V
AU - Gayner, Tatyana A.
AU - Yunusova, Anastasia Y
AU - Tkachenko, Anastasia V
AU - Richter, Vladimir A
AU - Koval, Olga
PY - 2019
DA - 2019/02/28
PB - Springer Nature
IS - 1
VL - 19
PMID - 30858763
SN - 1475-2867
ER -
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@article{2019_Nushtaeva,
author = {Anna A Nushtaeva and Anastasia A Karpushina and Mikhail S Ermakov and Ludmila F Gulyaeva and Alexey V Gerasimov and Sergey V Sidorov and Tatyana A. Gayner and Anastasia Y Yunusova and Anastasia V Tkachenko and Vladimir A Richter and Olga Koval},
title = {Establishment of primary human breast cancer cell lines using “pulsed hypoxia” method and development of metastatic tumor model in immunodeficient mice},
journal = {Cancer Cell International},
year = {2019},
volume = {19},
publisher = {Springer Nature},
month = {feb},
url = {https://doi.org/10.1186/s12935-019-0766-5},
number = {1},
pages = {46},
doi = {10.1186/s12935-019-0766-5}
}
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