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Thrombospondin-1 might be a therapeutic target to suppress RB cells by regulating the DNA double-strand breaks repair

Retinoblastoma (RB) arises from the retina, and its growth usually occurs under the retina and toward the vitreous. Ideal therapy should aim to inhibit the tumor and protect neural cells, increasing the patient's life span and quality of life. Previous studies have demonstrated that Thrombospon...

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Autores principales: Chen, Pei, Yu, Na, Zhang, Zhang, Zhang, Ping, Yang, Ying, Wu, Nandan, Xu, Lijun, Zhang, Jing, Ge, Jian, Yu, Keming, Zhuang, Jing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4868743/
https://www.ncbi.nlm.nih.gov/pubmed/26756218
http://dx.doi.org/10.18632/oncotarget.6835
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author Chen, Pei
Yu, Na
Zhang, Zhang
Zhang, Ping
Yang, Ying
Wu, Nandan
Xu, Lijun
Zhang, Jing
Ge, Jian
Yu, Keming
Zhuang, Jing
author_facet Chen, Pei
Yu, Na
Zhang, Zhang
Zhang, Ping
Yang, Ying
Wu, Nandan
Xu, Lijun
Zhang, Jing
Ge, Jian
Yu, Keming
Zhuang, Jing
author_sort Chen, Pei
collection PubMed
description Retinoblastoma (RB) arises from the retina, and its growth usually occurs under the retina and toward the vitreous. Ideal therapy should aim to inhibit the tumor and protect neural cells, increasing the patient's life span and quality of life. Previous studies have demonstrated that Thrombospondin-1 (TSP-1) is associated with neurogenesis, neovascularization and tumorigenesis. However, at present, the bioactivity of TSP-1 in retinoblastoma has not been defined. Herein, we demonstrated that TSP-1 was silenced in RB cell lines and clinical tumor samples. HDAC inhibitor, Trichostatin A (TSA), could notably transcriptionally up-regulate TSP-1 in RB cells, WERI-Rb1 cells and Y79 cells. Moreover, we found human recombinant TSP-1 (hTSP-1) could significantly inhibit the cell viability of RB cells both in vitro and in vivo. Interestingly, hTSP-1 could significantly induce the expression of γ-H2AX, a well-characterized in situ marker of DNA double-strand breaks (DSBs) in RB cells. The DNA NHEJ pathway in WERI-Rb1 cells could be significantly inhibited by hTSP-1. A mutation in Rb1 might be involved in the hTSP-1-medicated γ-H2AX increasing in WERI-Rb1 cells. Furthermore, hTSP-1 could inhibit RB cells while promoting retinal neurocyte survival in the neuronal and retinoblastoma cell co-culture system. As such, TSP-1 may become a therapeutic target for treatment of retinoblastoma.
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spelling pubmed-48687432016-05-20 Thrombospondin-1 might be a therapeutic target to suppress RB cells by regulating the DNA double-strand breaks repair Chen, Pei Yu, Na Zhang, Zhang Zhang, Ping Yang, Ying Wu, Nandan Xu, Lijun Zhang, Jing Ge, Jian Yu, Keming Zhuang, Jing Oncotarget Research Paper Retinoblastoma (RB) arises from the retina, and its growth usually occurs under the retina and toward the vitreous. Ideal therapy should aim to inhibit the tumor and protect neural cells, increasing the patient's life span and quality of life. Previous studies have demonstrated that Thrombospondin-1 (TSP-1) is associated with neurogenesis, neovascularization and tumorigenesis. However, at present, the bioactivity of TSP-1 in retinoblastoma has not been defined. Herein, we demonstrated that TSP-1 was silenced in RB cell lines and clinical tumor samples. HDAC inhibitor, Trichostatin A (TSA), could notably transcriptionally up-regulate TSP-1 in RB cells, WERI-Rb1 cells and Y79 cells. Moreover, we found human recombinant TSP-1 (hTSP-1) could significantly inhibit the cell viability of RB cells both in vitro and in vivo. Interestingly, hTSP-1 could significantly induce the expression of γ-H2AX, a well-characterized in situ marker of DNA double-strand breaks (DSBs) in RB cells. The DNA NHEJ pathway in WERI-Rb1 cells could be significantly inhibited by hTSP-1. A mutation in Rb1 might be involved in the hTSP-1-medicated γ-H2AX increasing in WERI-Rb1 cells. Furthermore, hTSP-1 could inhibit RB cells while promoting retinal neurocyte survival in the neuronal and retinoblastoma cell co-culture system. As such, TSP-1 may become a therapeutic target for treatment of retinoblastoma. Impact Journals LLC 2016-01-07 /pmc/articles/PMC4868743/ /pubmed/26756218 http://dx.doi.org/10.18632/oncotarget.6835 Text en Copyright: © 2016 Chen 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
Chen, Pei
Yu, Na
Zhang, Zhang
Zhang, Ping
Yang, Ying
Wu, Nandan
Xu, Lijun
Zhang, Jing
Ge, Jian
Yu, Keming
Zhuang, Jing
Thrombospondin-1 might be a therapeutic target to suppress RB cells by regulating the DNA double-strand breaks repair
title Thrombospondin-1 might be a therapeutic target to suppress RB cells by regulating the DNA double-strand breaks repair
title_full Thrombospondin-1 might be a therapeutic target to suppress RB cells by regulating the DNA double-strand breaks repair
title_fullStr Thrombospondin-1 might be a therapeutic target to suppress RB cells by regulating the DNA double-strand breaks repair
title_full_unstemmed Thrombospondin-1 might be a therapeutic target to suppress RB cells by regulating the DNA double-strand breaks repair
title_short Thrombospondin-1 might be a therapeutic target to suppress RB cells by regulating the DNA double-strand breaks repair
title_sort thrombospondin-1 might be a therapeutic target to suppress rb cells by regulating the dna double-strand breaks repair
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4868743/
https://www.ncbi.nlm.nih.gov/pubmed/26756218
http://dx.doi.org/10.18632/oncotarget.6835
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