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Neuroblastoma patient‐derived cultures are enriched for a mesenchymal gene signature and reflect individual drug response

Ex vivo evaluation of personalized models can facilitate individualized treatment selection for patients, and advance the discovery of novel therapeutic options. However, for embryonal malignancies, representative primary cultures have been difficult to establish. We developed patient‐derived cell c...

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Autores principales: Hee, Esther, Wong, Meng Kang, Tan, Sheng Hui, Choo, Zhang’E, Kuick, Chik Hong, Ling, Sharon, Yong, Min Hwee, Jain, Sudhanshi, Lian, Derrick W. Q., Ng, Eileen H. Q., Yong, Yvonne F. L., Ren, Mee Hiong, Syed Sulaiman, Nurfarhanah, Low, Sharon Y. Y., Chua, Yong Wei, Syed, Muhammad Fahmy, Lim, Tony K. H., Soh, Shui Yen, Iyer, Prasad, Seng, Michaela S. F., Lam, Joyce C. M., Tan, Enrica E. K., Chan, Mei Yoke, Tan, Ah Moy, Chen, Yong, Chen, Zhixiong, Chang, Kenneth T. E., Loh, Amos Hong Pheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7540996/
https://www.ncbi.nlm.nih.gov/pubmed/32777141
http://dx.doi.org/10.1111/cas.14610
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author Hee, Esther
Wong, Meng Kang
Tan, Sheng Hui
Choo, Zhang’E
Kuick, Chik Hong
Ling, Sharon
Yong, Min Hwee
Jain, Sudhanshi
Lian, Derrick W. Q.
Ng, Eileen H. Q.
Yong, Yvonne F. L.
Ren, Mee Hiong
Syed Sulaiman, Nurfarhanah
Low, Sharon Y. Y.
Chua, Yong Wei
Syed, Muhammad Fahmy
Lim, Tony K. H.
Soh, Shui Yen
Iyer, Prasad
Seng, Michaela S. F.
Lam, Joyce C. M.
Tan, Enrica E. K.
Chan, Mei Yoke
Tan, Ah Moy
Chen, Yong
Chen, Zhixiong
Chang, Kenneth T. E.
Loh, Amos Hong Pheng
author_facet Hee, Esther
Wong, Meng Kang
Tan, Sheng Hui
Choo, Zhang’E
Kuick, Chik Hong
Ling, Sharon
Yong, Min Hwee
Jain, Sudhanshi
Lian, Derrick W. Q.
Ng, Eileen H. Q.
Yong, Yvonne F. L.
Ren, Mee Hiong
Syed Sulaiman, Nurfarhanah
Low, Sharon Y. Y.
Chua, Yong Wei
Syed, Muhammad Fahmy
Lim, Tony K. H.
Soh, Shui Yen
Iyer, Prasad
Seng, Michaela S. F.
Lam, Joyce C. M.
Tan, Enrica E. K.
Chan, Mei Yoke
Tan, Ah Moy
Chen, Yong
Chen, Zhixiong
Chang, Kenneth T. E.
Loh, Amos Hong Pheng
author_sort Hee, Esther
collection PubMed
description Ex vivo evaluation of personalized models can facilitate individualized treatment selection for patients, and advance the discovery of novel therapeutic options. However, for embryonal malignancies, representative primary cultures have been difficult to establish. We developed patient‐derived cell cultures (PDCs) from chemo‐naïve and post–treatment neuroblastoma tumors in a consistent and efficient manner, and characterized their in vitro growth dynamics, histomorphology, gene expression, and functional chemo‐response. From 34 neuroblastoma tumors, 22 engrafted in vitro to generate 31 individual PDC lines, with higher engraftment seen with metastatic tumors. PDCs displayed characteristic immunohistochemical staining patterns of PHOX2B, TH, and GD2 synthase. Concordance of MYCN amplification, 1p and 11q deletion between PDCs and patient tumors was 83.3%, 72.7%, and 80.0% respectively. PDCs displayed a predominantly mesenchymal‐type gene expression signature and showed upregulation of pro‐angiogenic factors that were similarly enriched in culture medium and paired patient serum samples. When tested with standard‐of‐care cytotoxics at human C (max)‐equivalent concentrations, MYCN‐amplified and non‐MYCN‐amplified PDCs showed a differential response to cyclophosphamide and topotecan, which mirrored the corresponding patients’ responses, and correlated with gene signatures of chemosensitivity. In this translational proof‐of‐concept study, early‐phase neuroblastoma PDCs enriched for the mesenchymal cell subpopulation recapitulated the individual molecular and phenotypic profile of patient tumors, and highlighted their potential as a platform for individualized ex vivo drug‐response testing.
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spelling pubmed-75409962020-10-09 Neuroblastoma patient‐derived cultures are enriched for a mesenchymal gene signature and reflect individual drug response Hee, Esther Wong, Meng Kang Tan, Sheng Hui Choo, Zhang’E Kuick, Chik Hong Ling, Sharon Yong, Min Hwee Jain, Sudhanshi Lian, Derrick W. Q. Ng, Eileen H. Q. Yong, Yvonne F. L. Ren, Mee Hiong Syed Sulaiman, Nurfarhanah Low, Sharon Y. Y. Chua, Yong Wei Syed, Muhammad Fahmy Lim, Tony K. H. Soh, Shui Yen Iyer, Prasad Seng, Michaela S. F. Lam, Joyce C. M. Tan, Enrica E. K. Chan, Mei Yoke Tan, Ah Moy Chen, Yong Chen, Zhixiong Chang, Kenneth T. E. Loh, Amos Hong Pheng Cancer Sci Clinical Research Ex vivo evaluation of personalized models can facilitate individualized treatment selection for patients, and advance the discovery of novel therapeutic options. However, for embryonal malignancies, representative primary cultures have been difficult to establish. We developed patient‐derived cell cultures (PDCs) from chemo‐naïve and post–treatment neuroblastoma tumors in a consistent and efficient manner, and characterized their in vitro growth dynamics, histomorphology, gene expression, and functional chemo‐response. From 34 neuroblastoma tumors, 22 engrafted in vitro to generate 31 individual PDC lines, with higher engraftment seen with metastatic tumors. PDCs displayed characteristic immunohistochemical staining patterns of PHOX2B, TH, and GD2 synthase. Concordance of MYCN amplification, 1p and 11q deletion between PDCs and patient tumors was 83.3%, 72.7%, and 80.0% respectively. PDCs displayed a predominantly mesenchymal‐type gene expression signature and showed upregulation of pro‐angiogenic factors that were similarly enriched in culture medium and paired patient serum samples. When tested with standard‐of‐care cytotoxics at human C (max)‐equivalent concentrations, MYCN‐amplified and non‐MYCN‐amplified PDCs showed a differential response to cyclophosphamide and topotecan, which mirrored the corresponding patients’ responses, and correlated with gene signatures of chemosensitivity. In this translational proof‐of‐concept study, early‐phase neuroblastoma PDCs enriched for the mesenchymal cell subpopulation recapitulated the individual molecular and phenotypic profile of patient tumors, and highlighted their potential as a platform for individualized ex vivo drug‐response testing. John Wiley and Sons Inc. 2020-08-28 2020-10 /pmc/articles/PMC7540996/ /pubmed/32777141 http://dx.doi.org/10.1111/cas.14610 Text en © 2020 The Authors. Cancer Science published by John Wiley & Sons Australia, Ltd on behalf of Japanese Cancer Association This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Clinical Research
Hee, Esther
Wong, Meng Kang
Tan, Sheng Hui
Choo, Zhang’E
Kuick, Chik Hong
Ling, Sharon
Yong, Min Hwee
Jain, Sudhanshi
Lian, Derrick W. Q.
Ng, Eileen H. Q.
Yong, Yvonne F. L.
Ren, Mee Hiong
Syed Sulaiman, Nurfarhanah
Low, Sharon Y. Y.
Chua, Yong Wei
Syed, Muhammad Fahmy
Lim, Tony K. H.
Soh, Shui Yen
Iyer, Prasad
Seng, Michaela S. F.
Lam, Joyce C. M.
Tan, Enrica E. K.
Chan, Mei Yoke
Tan, Ah Moy
Chen, Yong
Chen, Zhixiong
Chang, Kenneth T. E.
Loh, Amos Hong Pheng
Neuroblastoma patient‐derived cultures are enriched for a mesenchymal gene signature and reflect individual drug response
title Neuroblastoma patient‐derived cultures are enriched for a mesenchymal gene signature and reflect individual drug response
title_full Neuroblastoma patient‐derived cultures are enriched for a mesenchymal gene signature and reflect individual drug response
title_fullStr Neuroblastoma patient‐derived cultures are enriched for a mesenchymal gene signature and reflect individual drug response
title_full_unstemmed Neuroblastoma patient‐derived cultures are enriched for a mesenchymal gene signature and reflect individual drug response
title_short Neuroblastoma patient‐derived cultures are enriched for a mesenchymal gene signature and reflect individual drug response
title_sort neuroblastoma patient‐derived cultures are enriched for a mesenchymal gene signature and reflect individual drug response
topic Clinical Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7540996/
https://www.ncbi.nlm.nih.gov/pubmed/32777141
http://dx.doi.org/10.1111/cas.14610
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