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Inhibition of STAT3 signaling targets both tumor-initiating and differentiated cell populations in prostate cancer

Despite of tremendous research efforts to profile prostate cancer, the genetic alterations and biological processes that correlate with disease progression remain partially elusive. In this study we show that the STAT3 small molecule inhibitor Stattic caused S-phase accumulation at low-dose levels a...

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Autores principales: Han, Zhiqiang, Wang, Xiaoli, Ma, Liang, Chen, Lijuan, Xiao, Min, Huang, Liang, Cao, Yang, Bai, Jian, Ma, Ding, Zhou, Jianfeng, Hong, Zhenya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4226693/
https://www.ncbi.nlm.nih.gov/pubmed/25261365
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author Han, Zhiqiang
Wang, Xiaoli
Ma, Liang
Chen, Lijuan
Xiao, Min
Huang, Liang
Cao, Yang
Bai, Jian
Ma, Ding
Zhou, Jianfeng
Hong, Zhenya
author_facet Han, Zhiqiang
Wang, Xiaoli
Ma, Liang
Chen, Lijuan
Xiao, Min
Huang, Liang
Cao, Yang
Bai, Jian
Ma, Ding
Zhou, Jianfeng
Hong, Zhenya
author_sort Han, Zhiqiang
collection PubMed
description Despite of tremendous research efforts to profile prostate cancer, the genetic alterations and biological processes that correlate with disease progression remain partially elusive. In this study we show that the STAT3 small molecule inhibitor Stattic caused S-phase accumulation at low-dose levels and led to massive apoptosis at a relatively high-dose level in prostate cancer cells. STAT3 knockdown led to the disruption of the microvascular niche which tumor-initiating cells (TICs) and non-tumor initiating cells (non-TICs)depend on. Primary human prostate cancer cells and prostate cancer cell line contained high aldehyde dehydrogenase activity (ALDH(high)) subpopulations with stem cell-like characteristics, which expressed higher levels of the active phosphorylated form of STAT3 (pSTAT3) than that of non-ALDH(high) subpopulations. Stattic could singnificantly decreas the population of ALDH(high) prostate cancer cells even at low-dose levels. IL-6 can convert non-ALDH(high) cells to ALDH(high) cells in prostate cancer cell line as well as from cells derived from human prostate tumors, the conversion mediated by IL-6 was abrogated in the presence of STAT3 inhibitor or upon STAT3 knockdown. STAT3 knockdown significantly impaired the ability of prostate cancer cells to initiate development of prostate adenocarcinoma. Moreover, blockade of STAT3 signaling was significantly effective in eradicating the tumor-initiating and bulk tumor cancer cell populations in both prostate cancer cell-line xenograft model and patient-derived tumor xenograft (PDTX) models. This data suggests that targeting both tumor initiating and differentiated cell populations by STAT3 inhibition is predicted to have greater efficacy for prostate cancer treatment.
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spelling pubmed-42266932014-11-17 Inhibition of STAT3 signaling targets both tumor-initiating and differentiated cell populations in prostate cancer Han, Zhiqiang Wang, Xiaoli Ma, Liang Chen, Lijuan Xiao, Min Huang, Liang Cao, Yang Bai, Jian Ma, Ding Zhou, Jianfeng Hong, Zhenya Oncotarget Research Paper Despite of tremendous research efforts to profile prostate cancer, the genetic alterations and biological processes that correlate with disease progression remain partially elusive. In this study we show that the STAT3 small molecule inhibitor Stattic caused S-phase accumulation at low-dose levels and led to massive apoptosis at a relatively high-dose level in prostate cancer cells. STAT3 knockdown led to the disruption of the microvascular niche which tumor-initiating cells (TICs) and non-tumor initiating cells (non-TICs)depend on. Primary human prostate cancer cells and prostate cancer cell line contained high aldehyde dehydrogenase activity (ALDH(high)) subpopulations with stem cell-like characteristics, which expressed higher levels of the active phosphorylated form of STAT3 (pSTAT3) than that of non-ALDH(high) subpopulations. Stattic could singnificantly decreas the population of ALDH(high) prostate cancer cells even at low-dose levels. IL-6 can convert non-ALDH(high) cells to ALDH(high) cells in prostate cancer cell line as well as from cells derived from human prostate tumors, the conversion mediated by IL-6 was abrogated in the presence of STAT3 inhibitor or upon STAT3 knockdown. STAT3 knockdown significantly impaired the ability of prostate cancer cells to initiate development of prostate adenocarcinoma. Moreover, blockade of STAT3 signaling was significantly effective in eradicating the tumor-initiating and bulk tumor cancer cell populations in both prostate cancer cell-line xenograft model and patient-derived tumor xenograft (PDTX) models. This data suggests that targeting both tumor initiating and differentiated cell populations by STAT3 inhibition is predicted to have greater efficacy for prostate cancer treatment. Impact Journals LLC 2014-08-06 /pmc/articles/PMC4226693/ /pubmed/25261365 Text en Copyright: © 2014 Han et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Han, Zhiqiang
Wang, Xiaoli
Ma, Liang
Chen, Lijuan
Xiao, Min
Huang, Liang
Cao, Yang
Bai, Jian
Ma, Ding
Zhou, Jianfeng
Hong, Zhenya
Inhibition of STAT3 signaling targets both tumor-initiating and differentiated cell populations in prostate cancer
title Inhibition of STAT3 signaling targets both tumor-initiating and differentiated cell populations in prostate cancer
title_full Inhibition of STAT3 signaling targets both tumor-initiating and differentiated cell populations in prostate cancer
title_fullStr Inhibition of STAT3 signaling targets both tumor-initiating and differentiated cell populations in prostate cancer
title_full_unstemmed Inhibition of STAT3 signaling targets both tumor-initiating and differentiated cell populations in prostate cancer
title_short Inhibition of STAT3 signaling targets both tumor-initiating and differentiated cell populations in prostate cancer
title_sort inhibition of stat3 signaling targets both tumor-initiating and differentiated cell populations in prostate cancer
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4226693/
https://www.ncbi.nlm.nih.gov/pubmed/25261365
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