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Identification of Angiogenesis Inhibitors Using a Co-culture Cell Model in a High-Content and High-Throughput Screening Platform

Angiogenesis is an important hallmark of cancer, contributing to tumor formation and metastasis. In vitro angiogenesis models for analyzing tube formation serve as useful tools to study these processes. However, current in vitro co-culture models using primary cells have limitations in usefulness an...

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Autores principales: Li, Shuaizhang, Hsu, Chia-Wen, Sakamuru, Srilatha, Zou, Chaozhong, Huang, Ruili, Xia, Menghang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: SAGE Publications 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6032403/
https://www.ncbi.nlm.nih.gov/pubmed/28922619
http://dx.doi.org/10.1177/2472630317729792
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author Li, Shuaizhang
Hsu, Chia-Wen
Sakamuru, Srilatha
Zou, Chaozhong
Huang, Ruili
Xia, Menghang
author_facet Li, Shuaizhang
Hsu, Chia-Wen
Sakamuru, Srilatha
Zou, Chaozhong
Huang, Ruili
Xia, Menghang
author_sort Li, Shuaizhang
collection PubMed
description Angiogenesis is an important hallmark of cancer, contributing to tumor formation and metastasis. In vitro angiogenesis models for analyzing tube formation serve as useful tools to study these processes. However, current in vitro co-culture models using primary cells have limitations in usefulness and consistency. Therefore, in the present study, an in vitro co-culture assay system was optimized in a 1536-well format for high-throughput screening using human telomerase reverse transcriptase (hTERT)–immortalized mesenchymal stem cells and aortic endothelial cells. The National Center for Advancing Translational Sciences (NCATS) Pharmaceutical Collection (NPC) library containing 2816 drugs was evaluated using the in vitro co-culture assay. From the screen, 35 potent inhibitors (IC(50) ≤1 µM) were identified, followed by 15 weaker inhibitors (IC(50) 1–50 µM). Moreover, many known angiogenesis inhibitors were identified, such as topotecan, docetaxel, and bortezomib. Several potential novel angiogenesis inhibitors were also identified from this study, including thimerosal and podofilox. Among the inhibitors, some compounds were proved to be involved in the hypoxia-inducible factor-1α (HIF-1α) and the nuclear factor-kappa B (NF-κB) pathways. The co-culture model developed by using hTERT-immortalized cell lines described in this report provides a consistent and robust in vitro system for antiangiogenic drug screening.
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spelling pubmed-60324032018-07-11 Identification of Angiogenesis Inhibitors Using a Co-culture Cell Model in a High-Content and High-Throughput Screening Platform Li, Shuaizhang Hsu, Chia-Wen Sakamuru, Srilatha Zou, Chaozhong Huang, Ruili Xia, Menghang SLAS Technol Special Issue: Quantitative Imaging in Medicine and the Life Sciences Angiogenesis is an important hallmark of cancer, contributing to tumor formation and metastasis. In vitro angiogenesis models for analyzing tube formation serve as useful tools to study these processes. However, current in vitro co-culture models using primary cells have limitations in usefulness and consistency. Therefore, in the present study, an in vitro co-culture assay system was optimized in a 1536-well format for high-throughput screening using human telomerase reverse transcriptase (hTERT)–immortalized mesenchymal stem cells and aortic endothelial cells. The National Center for Advancing Translational Sciences (NCATS) Pharmaceutical Collection (NPC) library containing 2816 drugs was evaluated using the in vitro co-culture assay. From the screen, 35 potent inhibitors (IC(50) ≤1 µM) were identified, followed by 15 weaker inhibitors (IC(50) 1–50 µM). Moreover, many known angiogenesis inhibitors were identified, such as topotecan, docetaxel, and bortezomib. Several potential novel angiogenesis inhibitors were also identified from this study, including thimerosal and podofilox. Among the inhibitors, some compounds were proved to be involved in the hypoxia-inducible factor-1α (HIF-1α) and the nuclear factor-kappa B (NF-κB) pathways. The co-culture model developed by using hTERT-immortalized cell lines described in this report provides a consistent and robust in vitro system for antiangiogenic drug screening. SAGE Publications 2017-09-18 2018-06 /pmc/articles/PMC6032403/ /pubmed/28922619 http://dx.doi.org/10.1177/2472630317729792 Text en © 2017 Society for Laboratory Automation and Screening http://creativecommons.org/licenses/by-nc/4.0/ This article is distributed under the terms of the Creative Commons Attribution-NonCommercial 4.0 License (http://www.creativecommons.org/licenses/by-nc/4.0/) which permits non-commercial use, reproduction and distribution of the work without further permission provided the original work is attributed as specified on the SAGE and Open Access pages (https://us.sagepub.com/en-us/nam/open-access-at-sage).
spellingShingle Special Issue: Quantitative Imaging in Medicine and the Life Sciences
Li, Shuaizhang
Hsu, Chia-Wen
Sakamuru, Srilatha
Zou, Chaozhong
Huang, Ruili
Xia, Menghang
Identification of Angiogenesis Inhibitors Using a Co-culture Cell Model in a High-Content and High-Throughput Screening Platform
title Identification of Angiogenesis Inhibitors Using a Co-culture Cell Model in a High-Content and High-Throughput Screening Platform
title_full Identification of Angiogenesis Inhibitors Using a Co-culture Cell Model in a High-Content and High-Throughput Screening Platform
title_fullStr Identification of Angiogenesis Inhibitors Using a Co-culture Cell Model in a High-Content and High-Throughput Screening Platform
title_full_unstemmed Identification of Angiogenesis Inhibitors Using a Co-culture Cell Model in a High-Content and High-Throughput Screening Platform
title_short Identification of Angiogenesis Inhibitors Using a Co-culture Cell Model in a High-Content and High-Throughput Screening Platform
title_sort identification of angiogenesis inhibitors using a co-culture cell model in a high-content and high-throughput screening platform
topic Special Issue: Quantitative Imaging in Medicine and the Life Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6032403/
https://www.ncbi.nlm.nih.gov/pubmed/28922619
http://dx.doi.org/10.1177/2472630317729792
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