Deciphering biological characteristics of tumorigenic subpopulations in human colorectal cancer reveals cellular plasticity

Background: It is supposed that human colorectal cancer consists of a phenotypically distinct population of tumorigenic cancer cells known as cancer stem cells (CSCs) which play a pivotal role in cancer progression, maintenance, metastasis, and the relapse. The aim of this effort was to investigate...

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Main Authors: Hamed Mirzaei, Hossein Salehi, Amirhossein Sahebkar, Amir Avan, Mahmoud Reza Jaafari, Afshin Namdar, Abbas Rezaei, Hamid Reza Mirzaei
Format: Article
Language:English
Published: Wolters Kluwer Medknow Publications 2016-01-01
Series:Journal of Research in Medical Sciences
Subjects:
Online Access:http://www.jmsjournal.net/article.asp?issn=1735-1995;year=2016;volume=21;issue=1;spage=64;epage=64;aulast=Mirzaei
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spelling doaj-794e406a1a4a445a80592a8f1d68f4982020-11-24T21:26:12ZengWolters Kluwer Medknow PublicationsJournal of Research in Medical Sciences1735-19951735-71362016-01-01211646410.4103/1735-1995.187355Deciphering biological characteristics of tumorigenic subpopulations in human colorectal cancer reveals cellular plasticityHamed MirzaeiHossein SalehiAmirhossein SahebkarAmir AvanMahmoud Reza JaafariAfshin NamdarAbbas RezaeiHamid Reza MirzaeiBackground: It is supposed that human colorectal cancer consists of a phenotypically distinct population of tumorigenic cancer cells known as cancer stem cells (CSCs) which play a pivotal role in cancer progression, maintenance, metastasis, and the relapse. The aim of this effort was to investigate and compare biological characterizations of CD133 + with CD133− cell subsets isolated from both primary and metastatic human colorectal tumors. Materials and Methods: Using our optimized protocols, unfixed colorectal tumors were enzymatically and mechanically dissociated into single cells followed by evaluation of postdigestion viability. The obtained single cell suspensions were then subjected to cell sorting using magnetic beads according to CD133 marker. The resultant CD133 + and CD133− cell subsets were cultured in specific cell culture medium followed by aldehyde dehydrogenases (ALDH) activity assessment and flow cytometric analyses. Results: The results demonstrate that CD133 + cells have smaller size and lower complexity of intracellular structure, sphere formation ability, and ALDH enzyme activity while CD133− cells isolated from primary colon cancer samples were not able to form a sphere and did not show ALDH enzyme activity. Intriguingly, CD133− cells isolated from metastatic colorectal cancer specimen were able to form a sphere and shown ALDH enzyme activity. The present study indicates that our results are in agreement with SC theory and possibility of the existence of cellular plasticity among cancer subpopulations should be portrayed. Conclusion: We also conclude that this cellular plasticity is greatly affected by tumor microenvironment cues and the role of CSCs niche in cancer therapeutic strategies should be precisely considered.http://www.jmsjournal.net/article.asp?issn=1735-1995;year=2016;volume=21;issue=1;spage=64;epage=64;aulast=MirzaeiCancer stem cellscancer therapycellular plasticitycolorectal cancer
collection DOAJ
language English
format Article
sources DOAJ
author Hamed Mirzaei
Hossein Salehi
Amirhossein Sahebkar
Amir Avan
Mahmoud Reza Jaafari
Afshin Namdar
Abbas Rezaei
Hamid Reza Mirzaei
spellingShingle Hamed Mirzaei
Hossein Salehi
Amirhossein Sahebkar
Amir Avan
Mahmoud Reza Jaafari
Afshin Namdar
Abbas Rezaei
Hamid Reza Mirzaei
Deciphering biological characteristics of tumorigenic subpopulations in human colorectal cancer reveals cellular plasticity
Journal of Research in Medical Sciences
Cancer stem cells
cancer therapy
cellular plasticity
colorectal cancer
author_facet Hamed Mirzaei
Hossein Salehi
Amirhossein Sahebkar
Amir Avan
Mahmoud Reza Jaafari
Afshin Namdar
Abbas Rezaei
Hamid Reza Mirzaei
author_sort Hamed Mirzaei
title Deciphering biological characteristics of tumorigenic subpopulations in human colorectal cancer reveals cellular plasticity
title_short Deciphering biological characteristics of tumorigenic subpopulations in human colorectal cancer reveals cellular plasticity
title_full Deciphering biological characteristics of tumorigenic subpopulations in human colorectal cancer reveals cellular plasticity
title_fullStr Deciphering biological characteristics of tumorigenic subpopulations in human colorectal cancer reveals cellular plasticity
title_full_unstemmed Deciphering biological characteristics of tumorigenic subpopulations in human colorectal cancer reveals cellular plasticity
title_sort deciphering biological characteristics of tumorigenic subpopulations in human colorectal cancer reveals cellular plasticity
publisher Wolters Kluwer Medknow Publications
series Journal of Research in Medical Sciences
issn 1735-1995
1735-7136
publishDate 2016-01-01
description Background: It is supposed that human colorectal cancer consists of a phenotypically distinct population of tumorigenic cancer cells known as cancer stem cells (CSCs) which play a pivotal role in cancer progression, maintenance, metastasis, and the relapse. The aim of this effort was to investigate and compare biological characterizations of CD133 + with CD133− cell subsets isolated from both primary and metastatic human colorectal tumors. Materials and Methods: Using our optimized protocols, unfixed colorectal tumors were enzymatically and mechanically dissociated into single cells followed by evaluation of postdigestion viability. The obtained single cell suspensions were then subjected to cell sorting using magnetic beads according to CD133 marker. The resultant CD133 + and CD133− cell subsets were cultured in specific cell culture medium followed by aldehyde dehydrogenases (ALDH) activity assessment and flow cytometric analyses. Results: The results demonstrate that CD133 + cells have smaller size and lower complexity of intracellular structure, sphere formation ability, and ALDH enzyme activity while CD133− cells isolated from primary colon cancer samples were not able to form a sphere and did not show ALDH enzyme activity. Intriguingly, CD133− cells isolated from metastatic colorectal cancer specimen were able to form a sphere and shown ALDH enzyme activity. The present study indicates that our results are in agreement with SC theory and possibility of the existence of cellular plasticity among cancer subpopulations should be portrayed. Conclusion: We also conclude that this cellular plasticity is greatly affected by tumor microenvironment cues and the role of CSCs niche in cancer therapeutic strategies should be precisely considered.
topic Cancer stem cells
cancer therapy
cellular plasticity
colorectal cancer
url http://www.jmsjournal.net/article.asp?issn=1735-1995;year=2016;volume=21;issue=1;spage=64;epage=64;aulast=Mirzaei
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