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A new intronic quantitative PCR method led to the discovery of transformation from human ascites to murine malignancy in a mouse model

PURPOSE: To establish a fast and accurate detection method for interspecies contaminations in the patient-derived xenograft (PDX) models and cell lines, and to elucidate possible mechanisms if interspecies oncogenic transformation is detected. METHODS: A fast and highly sensitive intronic qPCR metho...

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Autores principales: Jin, Jiankang, Huo, Longfei, Fan, Yibo, Wang, Ruiping, Scott, Ailing W., Pizzi, Melissa Pool, Yao, Xiaodan, Shao, Shan, Ma, Lang, Da Silva, Matheus S., Yamashita, Kohei, Yoshimura, Katsuhiro, Zhang, Boyu, Wu, Jingjing, Wang, Linghua, Song, Shumei, Ajani, Jaffer A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9972586/
https://www.ncbi.nlm.nih.gov/pubmed/36865791
http://dx.doi.org/10.3389/fonc.2023.1062424
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author Jin, Jiankang
Huo, Longfei
Fan, Yibo
Wang, Ruiping
Scott, Ailing W.
Pizzi, Melissa Pool
Yao, Xiaodan
Shao, Shan
Ma, Lang
Da Silva, Matheus S.
Yamashita, Kohei
Yoshimura, Katsuhiro
Zhang, Boyu
Wu, Jingjing
Wang, Linghua
Song, Shumei
Ajani, Jaffer A.
author_facet Jin, Jiankang
Huo, Longfei
Fan, Yibo
Wang, Ruiping
Scott, Ailing W.
Pizzi, Melissa Pool
Yao, Xiaodan
Shao, Shan
Ma, Lang
Da Silva, Matheus S.
Yamashita, Kohei
Yoshimura, Katsuhiro
Zhang, Boyu
Wu, Jingjing
Wang, Linghua
Song, Shumei
Ajani, Jaffer A.
author_sort Jin, Jiankang
collection PubMed
description PURPOSE: To establish a fast and accurate detection method for interspecies contaminations in the patient-derived xenograft (PDX) models and cell lines, and to elucidate possible mechanisms if interspecies oncogenic transformation is detected. METHODS: A fast and highly sensitive intronic qPCR method detecting Gapdh intronic genomic copies was developed to quantify if cells were human or murine or a mixture. By this method, we documented that murine stromal cells were abundant in the PDXs; we also authenticated our cell lines to be human or murine. RESULTS: In one mouse model, GA0825-PDX transformed murine stromal cells into a malignant tumorigenic murine P0825 cell line. We traced the timeline of this transformation and discovered three subpopulations descended from the same GA0825-PDX model: epithelium-like human H0825, fibroblast-like murine M0825, and main passaged murine P0825 displayed differences in tumorigenic capability in vivo. P0825 was the most aggressive and H0825 was weakly tumorigenic. Immunofluorescence (IF) staining revealed that P0825 cells highly expressed several oncogenic and cancer stem cell markers. Whole exosome sequencing (WES) analysis revealed that TP53 mutation in the human ascites IP116-generated GA0825-PDX may have played a role in the human-to-murine oncogenic transformation. CONCLUSION: This intronic qPCR is able to quantify human/mouse genomic copies with high sensitivity and within a time frame of a few hours. We are the first to use intronic genomic qPCR for authentication and quantification of biosamples. Human ascites transformed murine stroma into malignancy in a PDX model.
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spelling pubmed-99725862023-03-01 A new intronic quantitative PCR method led to the discovery of transformation from human ascites to murine malignancy in a mouse model Jin, Jiankang Huo, Longfei Fan, Yibo Wang, Ruiping Scott, Ailing W. Pizzi, Melissa Pool Yao, Xiaodan Shao, Shan Ma, Lang Da Silva, Matheus S. Yamashita, Kohei Yoshimura, Katsuhiro Zhang, Boyu Wu, Jingjing Wang, Linghua Song, Shumei Ajani, Jaffer A. Front Oncol Oncology PURPOSE: To establish a fast and accurate detection method for interspecies contaminations in the patient-derived xenograft (PDX) models and cell lines, and to elucidate possible mechanisms if interspecies oncogenic transformation is detected. METHODS: A fast and highly sensitive intronic qPCR method detecting Gapdh intronic genomic copies was developed to quantify if cells were human or murine or a mixture. By this method, we documented that murine stromal cells were abundant in the PDXs; we also authenticated our cell lines to be human or murine. RESULTS: In one mouse model, GA0825-PDX transformed murine stromal cells into a malignant tumorigenic murine P0825 cell line. We traced the timeline of this transformation and discovered three subpopulations descended from the same GA0825-PDX model: epithelium-like human H0825, fibroblast-like murine M0825, and main passaged murine P0825 displayed differences in tumorigenic capability in vivo. P0825 was the most aggressive and H0825 was weakly tumorigenic. Immunofluorescence (IF) staining revealed that P0825 cells highly expressed several oncogenic and cancer stem cell markers. Whole exosome sequencing (WES) analysis revealed that TP53 mutation in the human ascites IP116-generated GA0825-PDX may have played a role in the human-to-murine oncogenic transformation. CONCLUSION: This intronic qPCR is able to quantify human/mouse genomic copies with high sensitivity and within a time frame of a few hours. We are the first to use intronic genomic qPCR for authentication and quantification of biosamples. Human ascites transformed murine stroma into malignancy in a PDX model. Frontiers Media S.A. 2023-02-06 /pmc/articles/PMC9972586/ /pubmed/36865791 http://dx.doi.org/10.3389/fonc.2023.1062424 Text en Copyright © 2023 Jin, Huo, Fan, Wang, Scott, Pizzi, Yao, Shao, Ma, Da Silva, Yamashita, Yoshimura, Zhang, Wu, Wang, Song and Ajani 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 Oncology
Jin, Jiankang
Huo, Longfei
Fan, Yibo
Wang, Ruiping
Scott, Ailing W.
Pizzi, Melissa Pool
Yao, Xiaodan
Shao, Shan
Ma, Lang
Da Silva, Matheus S.
Yamashita, Kohei
Yoshimura, Katsuhiro
Zhang, Boyu
Wu, Jingjing
Wang, Linghua
Song, Shumei
Ajani, Jaffer A.
A new intronic quantitative PCR method led to the discovery of transformation from human ascites to murine malignancy in a mouse model
title A new intronic quantitative PCR method led to the discovery of transformation from human ascites to murine malignancy in a mouse model
title_full A new intronic quantitative PCR method led to the discovery of transformation from human ascites to murine malignancy in a mouse model
title_fullStr A new intronic quantitative PCR method led to the discovery of transformation from human ascites to murine malignancy in a mouse model
title_full_unstemmed A new intronic quantitative PCR method led to the discovery of transformation from human ascites to murine malignancy in a mouse model
title_short A new intronic quantitative PCR method led to the discovery of transformation from human ascites to murine malignancy in a mouse model
title_sort new intronic quantitative pcr method led to the discovery of transformation from human ascites to murine malignancy in a mouse model
topic Oncology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9972586/
https://www.ncbi.nlm.nih.gov/pubmed/36865791
http://dx.doi.org/10.3389/fonc.2023.1062424
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