Comparison of cancer stem cell enrichment between spheroids derived from single-cell and multicellular aggregate cultures

Introduction: Cancer stem cells (CSCs) represent a distinct group of cells within cancerous tissue that possess the ability to initiate tumorigenesis and exhibit potency, self-renewal, and drug resistance. The study of CSCs often encounters challenges in obtaining these cells of interest or generati...

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Published in:Biomedical Research and Therapy
Main Author: Hairuddin O.N.; Yahaya B.H.; Ibahim M.J.; Verakumarasivam A.; Choy C.S.; Mazlan M.; Rahim N.A.; Dzulkarnain S.M.H.; Mansor S.F.
Format: Article
Language:English
Published: BiomedPress 2023
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85192664629&doi=10.15419%2fbmrat.v10i8.823&partnerID=40&md5=0f4f2767659a614ed2aeeba78e118fcd
id 2-s2.0-85192664629
spelling 2-s2.0-85192664629
Hairuddin O.N.; Yahaya B.H.; Ibahim M.J.; Verakumarasivam A.; Choy C.S.; Mazlan M.; Rahim N.A.; Dzulkarnain S.M.H.; Mansor S.F.
Comparison of cancer stem cell enrichment between spheroids derived from single-cell and multicellular aggregate cultures
2023
Biomedical Research and Therapy
10
8
10.15419/bmrat.v10i8.823
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85192664629&doi=10.15419%2fbmrat.v10i8.823&partnerID=40&md5=0f4f2767659a614ed2aeeba78e118fcd
Introduction: Cancer stem cells (CSCs) represent a distinct group of cells within cancerous tissue that possess the ability to initiate tumorigenesis and exhibit potency, self-renewal, and drug resistance. The study of CSCs often encounters challenges in obtaining these cells of interest or generating a sufficient quantity for downstream analysis. Nevertheless, it is feasible to enrich CSCs in vitro by subjecting them to conditions that stimulate their CSC properties, such as prolonged exposure to drugs or radiation, or by promoting their self-renewal capability through spheroid culture. Spheroids are a specific type of cell culture that organizes cells into a three-dimensional structure, closely mimicking the in vivo environment. These spheroids consist of a heterogeneous cell population, including CSCs or tumor-propagating cells responsible for tumor growth and maintenance. In our study, we cultured spheroids derived from single cells as well as multicellular aggregates to enrich CSCs based on their self-renewal capability and the structural organization provided by the three-dimensional context. Methods: Comparing the spheroid cultures with the parental adherent monolayer cells, we observed higher expression of CSC markers, pluripotent genes, and adipogenic differentiation in both multicellular spheroids (MCS) and single cell-derived spheroids (SCDS) of the two tested cell lines. Results: The spheroids exhibited progressive growth in size throughout the culture period. When comparing the two methods, SCDS demonstrated greater expression of surface markers and all three pluripotent genes associated with CSCs. Furthermore, when assessing drug resistance potential and the expression of the ABCG2 drug efflux gene, only 5637 SCDS displayed increased resistance to cisplatin and upregulation of ABCG2. Conclusion: In conclusion, both the MCS and SCDS methods effectively enriched the population of bladder CSCs in the 5637 and HT-1376 bladder cancer cell lines. However, the SCDS method demonstrated a higher upregulation of CSC markers and pluripotent gene expression compared to MCS. It is worth noting that spheroid culture and CSC enrichment are not mutually exclusive and can coexist with increased chemotherapy resistance and upregulation of ABCG2 drug efflux gene expression. Moreover, the drug efflux capability may vary depending on the specific cell line and clonal lineage. These strategies can serve as valuable models for CSC enrichment, the study of cancer cell behavior, disease modeling, and personalized chemotherapy investigations. © 2023 BiomedPress. All rights reserved.
BiomedPress
21984093
English
Article
All Open Access; Gold Open Access
author Hairuddin O.N.; Yahaya B.H.; Ibahim M.J.; Verakumarasivam A.; Choy C.S.; Mazlan M.; Rahim N.A.; Dzulkarnain S.M.H.; Mansor S.F.
spellingShingle Hairuddin O.N.; Yahaya B.H.; Ibahim M.J.; Verakumarasivam A.; Choy C.S.; Mazlan M.; Rahim N.A.; Dzulkarnain S.M.H.; Mansor S.F.
Comparison of cancer stem cell enrichment between spheroids derived from single-cell and multicellular aggregate cultures
author_facet Hairuddin O.N.; Yahaya B.H.; Ibahim M.J.; Verakumarasivam A.; Choy C.S.; Mazlan M.; Rahim N.A.; Dzulkarnain S.M.H.; Mansor S.F.
author_sort Hairuddin O.N.; Yahaya B.H.; Ibahim M.J.; Verakumarasivam A.; Choy C.S.; Mazlan M.; Rahim N.A.; Dzulkarnain S.M.H.; Mansor S.F.
title Comparison of cancer stem cell enrichment between spheroids derived from single-cell and multicellular aggregate cultures
title_short Comparison of cancer stem cell enrichment between spheroids derived from single-cell and multicellular aggregate cultures
title_full Comparison of cancer stem cell enrichment between spheroids derived from single-cell and multicellular aggregate cultures
title_fullStr Comparison of cancer stem cell enrichment between spheroids derived from single-cell and multicellular aggregate cultures
title_full_unstemmed Comparison of cancer stem cell enrichment between spheroids derived from single-cell and multicellular aggregate cultures
title_sort Comparison of cancer stem cell enrichment between spheroids derived from single-cell and multicellular aggregate cultures
publishDate 2023
container_title Biomedical Research and Therapy
container_volume 10
container_issue 8
doi_str_mv 10.15419/bmrat.v10i8.823
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85192664629&doi=10.15419%2fbmrat.v10i8.823&partnerID=40&md5=0f4f2767659a614ed2aeeba78e118fcd
description Introduction: Cancer stem cells (CSCs) represent a distinct group of cells within cancerous tissue that possess the ability to initiate tumorigenesis and exhibit potency, self-renewal, and drug resistance. The study of CSCs often encounters challenges in obtaining these cells of interest or generating a sufficient quantity for downstream analysis. Nevertheless, it is feasible to enrich CSCs in vitro by subjecting them to conditions that stimulate their CSC properties, such as prolonged exposure to drugs or radiation, or by promoting their self-renewal capability through spheroid culture. Spheroids are a specific type of cell culture that organizes cells into a three-dimensional structure, closely mimicking the in vivo environment. These spheroids consist of a heterogeneous cell population, including CSCs or tumor-propagating cells responsible for tumor growth and maintenance. In our study, we cultured spheroids derived from single cells as well as multicellular aggregates to enrich CSCs based on their self-renewal capability and the structural organization provided by the three-dimensional context. Methods: Comparing the spheroid cultures with the parental adherent monolayer cells, we observed higher expression of CSC markers, pluripotent genes, and adipogenic differentiation in both multicellular spheroids (MCS) and single cell-derived spheroids (SCDS) of the two tested cell lines. Results: The spheroids exhibited progressive growth in size throughout the culture period. When comparing the two methods, SCDS demonstrated greater expression of surface markers and all three pluripotent genes associated with CSCs. Furthermore, when assessing drug resistance potential and the expression of the ABCG2 drug efflux gene, only 5637 SCDS displayed increased resistance to cisplatin and upregulation of ABCG2. Conclusion: In conclusion, both the MCS and SCDS methods effectively enriched the population of bladder CSCs in the 5637 and HT-1376 bladder cancer cell lines. However, the SCDS method demonstrated a higher upregulation of CSC markers and pluripotent gene expression compared to MCS. It is worth noting that spheroid culture and CSC enrichment are not mutually exclusive and can coexist with increased chemotherapy resistance and upregulation of ABCG2 drug efflux gene expression. Moreover, the drug efflux capability may vary depending on the specific cell line and clonal lineage. These strategies can serve as valuable models for CSC enrichment, the study of cancer cell behavior, disease modeling, and personalized chemotherapy investigations. © 2023 BiomedPress. All rights reserved.
publisher BiomedPress
issn 21984093
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