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Establishment and characterization of a multi-drug resistant cell line for canine mammary tumors

BACKGROUND AND PURPOSE: Canine mammary tumors are the most common tumor disease of female dogs, and adjuvant chemotherapy often results in multi-drug resistance. Currently, the mechanisms underlying the development of tumor multi-drug resistance are unclear. The translation of research applications...

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Autores principales: Zhou, Chaoyu, Lin, Zixiang, Li, Xinqiu, Zhang, Di, Song, Peijia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10108679/
https://www.ncbi.nlm.nih.gov/pubmed/37077947
http://dx.doi.org/10.3389/fvets.2023.1129756
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author Zhou, Chaoyu
Lin, Zixiang
Li, Xinqiu
Zhang, Di
Song, Peijia
author_facet Zhou, Chaoyu
Lin, Zixiang
Li, Xinqiu
Zhang, Di
Song, Peijia
author_sort Zhou, Chaoyu
collection PubMed
description BACKGROUND AND PURPOSE: Canine mammary tumors are the most common tumor disease of female dogs, and adjuvant chemotherapy often results in multi-drug resistance. Currently, the mechanisms underlying the development of tumor multi-drug resistance are unclear. The translation of research applications that can be used to effectively overcome tumor resistance is similarly hampered. Therefore, it is urgent to construct multi-drug resistance models of canine mammary tumors that can be used for research, to explore the mechanisms and means of overcoming resistance. MATERIALS AND METHODS: In this study, the canine triple negative breast cancer cell line CMT-7364 was induced to develop multidrug resistance using doxorubicin by high-dose drug pulse method. The drug resistance and the expression of drug transport pumps of the cells was verified by CCK8 assay, immunoblotting, qPCR and immunofluorescence. Next, we used scratch assay and Transwell invasion assay to compare the migration and invasion abilities of the two cell lines and examined the expression of EMT-related proteins in both using immunoblotting. The differences of transcriptome between parental and drug-resistant cell lines were detected by RNA-seq sequencing. Finally, mouse xenograft models of drug-resistant and parental cell lines were constructed to evaluate the tumorigenic ability. RESULTS: After more than 50 generations of continuous passages stimulated by high-dose drug pulse method, the morphology of drug-resistant cell line CMT-7364/R tended to be mesenchymal-like and heterogeneous under light microscopy compared with the parental cell line CMT-7364/S, and developed resistance to doxorubicin and other commonly used chemotherapeutic drugs. In CMT-7364/R, BCRP was expressed at higher levels at both transcriptional and protein levels, while P-glycoprotein was not significantly different. Secondly, the migration and invasion ability of CMT-7364/R was significantly enhanced, with decreased expression of E-cadherin and increased expression of vimentin and mucin 1-N terminus. Finally, mouse xenograft models were constructed, while there was no significant difference in the volume of masses formed at 21 days. CONCLUSION: In summary, by using the canine mammary tumor cell line CMT-7364/S as the parental cell line, we successfully constructed a multidrug-resistant CMT-7364/R with high-dose drug pulse methods. Compared to its parental cell line, CMT-7364/R has decreased growth rate, overexpression of BCRP and increased migration and invasion ability due to EMT. The results of this study showed that CMT-7364/R might serve as a model for future studies on tumor drug resistance.
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spelling pubmed-101086792023-04-18 Establishment and characterization of a multi-drug resistant cell line for canine mammary tumors Zhou, Chaoyu Lin, Zixiang Li, Xinqiu Zhang, Di Song, Peijia Front Vet Sci Veterinary Science BACKGROUND AND PURPOSE: Canine mammary tumors are the most common tumor disease of female dogs, and adjuvant chemotherapy often results in multi-drug resistance. Currently, the mechanisms underlying the development of tumor multi-drug resistance are unclear. The translation of research applications that can be used to effectively overcome tumor resistance is similarly hampered. Therefore, it is urgent to construct multi-drug resistance models of canine mammary tumors that can be used for research, to explore the mechanisms and means of overcoming resistance. MATERIALS AND METHODS: In this study, the canine triple negative breast cancer cell line CMT-7364 was induced to develop multidrug resistance using doxorubicin by high-dose drug pulse method. The drug resistance and the expression of drug transport pumps of the cells was verified by CCK8 assay, immunoblotting, qPCR and immunofluorescence. Next, we used scratch assay and Transwell invasion assay to compare the migration and invasion abilities of the two cell lines and examined the expression of EMT-related proteins in both using immunoblotting. The differences of transcriptome between parental and drug-resistant cell lines were detected by RNA-seq sequencing. Finally, mouse xenograft models of drug-resistant and parental cell lines were constructed to evaluate the tumorigenic ability. RESULTS: After more than 50 generations of continuous passages stimulated by high-dose drug pulse method, the morphology of drug-resistant cell line CMT-7364/R tended to be mesenchymal-like and heterogeneous under light microscopy compared with the parental cell line CMT-7364/S, and developed resistance to doxorubicin and other commonly used chemotherapeutic drugs. In CMT-7364/R, BCRP was expressed at higher levels at both transcriptional and protein levels, while P-glycoprotein was not significantly different. Secondly, the migration and invasion ability of CMT-7364/R was significantly enhanced, with decreased expression of E-cadherin and increased expression of vimentin and mucin 1-N terminus. Finally, mouse xenograft models were constructed, while there was no significant difference in the volume of masses formed at 21 days. CONCLUSION: In summary, by using the canine mammary tumor cell line CMT-7364/S as the parental cell line, we successfully constructed a multidrug-resistant CMT-7364/R with high-dose drug pulse methods. Compared to its parental cell line, CMT-7364/R has decreased growth rate, overexpression of BCRP and increased migration and invasion ability due to EMT. The results of this study showed that CMT-7364/R might serve as a model for future studies on tumor drug resistance. Frontiers Media S.A. 2023-03-30 /pmc/articles/PMC10108679/ /pubmed/37077947 http://dx.doi.org/10.3389/fvets.2023.1129756 Text en Copyright © 2023 Zhou, Lin, Li, Zhang and Song. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Veterinary Science
Zhou, Chaoyu
Lin, Zixiang
Li, Xinqiu
Zhang, Di
Song, Peijia
Establishment and characterization of a multi-drug resistant cell line for canine mammary tumors
title Establishment and characterization of a multi-drug resistant cell line for canine mammary tumors
title_full Establishment and characterization of a multi-drug resistant cell line for canine mammary tumors
title_fullStr Establishment and characterization of a multi-drug resistant cell line for canine mammary tumors
title_full_unstemmed Establishment and characterization of a multi-drug resistant cell line for canine mammary tumors
title_short Establishment and characterization of a multi-drug resistant cell line for canine mammary tumors
title_sort establishment and characterization of a multi-drug resistant cell line for canine mammary tumors
topic Veterinary Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10108679/
https://www.ncbi.nlm.nih.gov/pubmed/37077947
http://dx.doi.org/10.3389/fvets.2023.1129756
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