Cargando…

Sphere-Forming Culture for Expanding Genetically Distinct Patient-Derived Glioma Stem Cells by Cellular Growth Rate Screening

Diffusely infiltrating gliomas (DIGs) are difficult to completely resect and are associated with a high rate of tumor relapse and progression from low- to high-grade glioma. In particular, optimized short-term culture-enriching patient-derived glioma stem cells (GSCs) are essential for customizing t...

Descripción completa

Detalles Bibliográficos
Autores principales: Shin, Kayoung, Shin, Hyemi, Cho, Hee Jin, Kang, Hyunju, Lee, Jin-Ku, Seo, Yun Jee, Shin, Yong Jae, Kim, Donggeon, Koo, Harim, Kong, Doo-Sik, Seol, Ho Jun, Lee, Jung-Il, Lee, Hye Won, Nam, Do-Hyun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7139415/
https://www.ncbi.nlm.nih.gov/pubmed/32120790
http://dx.doi.org/10.3390/cancers12030549
_version_ 1783518760801402880
author Shin, Kayoung
Shin, Hyemi
Cho, Hee Jin
Kang, Hyunju
Lee, Jin-Ku
Seo, Yun Jee
Shin, Yong Jae
Kim, Donggeon
Koo, Harim
Kong, Doo-Sik
Seol, Ho Jun
Lee, Jung-Il
Lee, Hye Won
Nam, Do-Hyun
author_facet Shin, Kayoung
Shin, Hyemi
Cho, Hee Jin
Kang, Hyunju
Lee, Jin-Ku
Seo, Yun Jee
Shin, Yong Jae
Kim, Donggeon
Koo, Harim
Kong, Doo-Sik
Seol, Ho Jun
Lee, Jung-Il
Lee, Hye Won
Nam, Do-Hyun
author_sort Shin, Kayoung
collection PubMed
description Diffusely infiltrating gliomas (DIGs) are difficult to completely resect and are associated with a high rate of tumor relapse and progression from low- to high-grade glioma. In particular, optimized short-term culture-enriching patient-derived glioma stem cells (GSCs) are essential for customizing the therapeutic strategy based on clinically feasible in vitro drug screening for a wide range of DIGs, owing to the high inter-tumoral heterogeneity. Herein, we constructed a novel high-throughput culture condition screening platform called ‘GFSCAN’, which evaluated the cellular growth rates of GSCs for each DIG sample in 132 serum-free combinations, using 13 previously reported growth factors closely associated with glioma aggressiveness. In total, 72 patient-derived GSCs with available genomic profiles were tested in GFSCAN to explore the association between cellular growth rates in specific growth factor combinations and genomic/molecular backgrounds, including isocitrate dehydrogenase 1 (IDH1) mutation, chromosome arm 1p and 19q co-deletion, ATRX chromatin remodeler alteration, and transcriptional subtype. GSCs were clustered according to the dependency on epidermal growth factor and basic fibroblast growth factor (E&F), and isocitrate dehydrogenase 1 (IDH1) wild-type GSCs showed higher E&F dependencies than IDH1 mutant GSCs. More importantly, we elucidated optimal combinations for IDH1 mutant glioblastoma and lower grade glioma GSCs with low dependencies on E&F, which could be an aid in clinical decision-making for these DIGs. Thus, we demonstrated the utility of GFSCAN in personalizing in vitro cultivation to nominate personalized therapeutic options, in a clinically relevant time frame, for individual DIG patients, where standard clinical options have been exhausted.
format Online
Article
Text
id pubmed-7139415
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-71394152020-04-10 Sphere-Forming Culture for Expanding Genetically Distinct Patient-Derived Glioma Stem Cells by Cellular Growth Rate Screening Shin, Kayoung Shin, Hyemi Cho, Hee Jin Kang, Hyunju Lee, Jin-Ku Seo, Yun Jee Shin, Yong Jae Kim, Donggeon Koo, Harim Kong, Doo-Sik Seol, Ho Jun Lee, Jung-Il Lee, Hye Won Nam, Do-Hyun Cancers (Basel) Article Diffusely infiltrating gliomas (DIGs) are difficult to completely resect and are associated with a high rate of tumor relapse and progression from low- to high-grade glioma. In particular, optimized short-term culture-enriching patient-derived glioma stem cells (GSCs) are essential for customizing the therapeutic strategy based on clinically feasible in vitro drug screening for a wide range of DIGs, owing to the high inter-tumoral heterogeneity. Herein, we constructed a novel high-throughput culture condition screening platform called ‘GFSCAN’, which evaluated the cellular growth rates of GSCs for each DIG sample in 132 serum-free combinations, using 13 previously reported growth factors closely associated with glioma aggressiveness. In total, 72 patient-derived GSCs with available genomic profiles were tested in GFSCAN to explore the association between cellular growth rates in specific growth factor combinations and genomic/molecular backgrounds, including isocitrate dehydrogenase 1 (IDH1) mutation, chromosome arm 1p and 19q co-deletion, ATRX chromatin remodeler alteration, and transcriptional subtype. GSCs were clustered according to the dependency on epidermal growth factor and basic fibroblast growth factor (E&F), and isocitrate dehydrogenase 1 (IDH1) wild-type GSCs showed higher E&F dependencies than IDH1 mutant GSCs. More importantly, we elucidated optimal combinations for IDH1 mutant glioblastoma and lower grade glioma GSCs with low dependencies on E&F, which could be an aid in clinical decision-making for these DIGs. Thus, we demonstrated the utility of GFSCAN in personalizing in vitro cultivation to nominate personalized therapeutic options, in a clinically relevant time frame, for individual DIG patients, where standard clinical options have been exhausted. MDPI 2020-02-27 /pmc/articles/PMC7139415/ /pubmed/32120790 http://dx.doi.org/10.3390/cancers12030549 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Shin, Kayoung
Shin, Hyemi
Cho, Hee Jin
Kang, Hyunju
Lee, Jin-Ku
Seo, Yun Jee
Shin, Yong Jae
Kim, Donggeon
Koo, Harim
Kong, Doo-Sik
Seol, Ho Jun
Lee, Jung-Il
Lee, Hye Won
Nam, Do-Hyun
Sphere-Forming Culture for Expanding Genetically Distinct Patient-Derived Glioma Stem Cells by Cellular Growth Rate Screening
title Sphere-Forming Culture for Expanding Genetically Distinct Patient-Derived Glioma Stem Cells by Cellular Growth Rate Screening
title_full Sphere-Forming Culture for Expanding Genetically Distinct Patient-Derived Glioma Stem Cells by Cellular Growth Rate Screening
title_fullStr Sphere-Forming Culture for Expanding Genetically Distinct Patient-Derived Glioma Stem Cells by Cellular Growth Rate Screening
title_full_unstemmed Sphere-Forming Culture for Expanding Genetically Distinct Patient-Derived Glioma Stem Cells by Cellular Growth Rate Screening
title_short Sphere-Forming Culture for Expanding Genetically Distinct Patient-Derived Glioma Stem Cells by Cellular Growth Rate Screening
title_sort sphere-forming culture for expanding genetically distinct patient-derived glioma stem cells by cellular growth rate screening
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7139415/
https://www.ncbi.nlm.nih.gov/pubmed/32120790
http://dx.doi.org/10.3390/cancers12030549
work_keys_str_mv AT shinkayoung sphereformingcultureforexpandinggeneticallydistinctpatientderivedgliomastemcellsbycellulargrowthratescreening
AT shinhyemi sphereformingcultureforexpandinggeneticallydistinctpatientderivedgliomastemcellsbycellulargrowthratescreening
AT choheejin sphereformingcultureforexpandinggeneticallydistinctpatientderivedgliomastemcellsbycellulargrowthratescreening
AT kanghyunju sphereformingcultureforexpandinggeneticallydistinctpatientderivedgliomastemcellsbycellulargrowthratescreening
AT leejinku sphereformingcultureforexpandinggeneticallydistinctpatientderivedgliomastemcellsbycellulargrowthratescreening
AT seoyunjee sphereformingcultureforexpandinggeneticallydistinctpatientderivedgliomastemcellsbycellulargrowthratescreening
AT shinyongjae sphereformingcultureforexpandinggeneticallydistinctpatientderivedgliomastemcellsbycellulargrowthratescreening
AT kimdonggeon sphereformingcultureforexpandinggeneticallydistinctpatientderivedgliomastemcellsbycellulargrowthratescreening
AT kooharim sphereformingcultureforexpandinggeneticallydistinctpatientderivedgliomastemcellsbycellulargrowthratescreening
AT kongdoosik sphereformingcultureforexpandinggeneticallydistinctpatientderivedgliomastemcellsbycellulargrowthratescreening
AT seolhojun sphereformingcultureforexpandinggeneticallydistinctpatientderivedgliomastemcellsbycellulargrowthratescreening
AT leejungil sphereformingcultureforexpandinggeneticallydistinctpatientderivedgliomastemcellsbycellulargrowthratescreening
AT leehyewon sphereformingcultureforexpandinggeneticallydistinctpatientderivedgliomastemcellsbycellulargrowthratescreening
AT namdohyun sphereformingcultureforexpandinggeneticallydistinctpatientderivedgliomastemcellsbycellulargrowthratescreening