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Study of the mechanism by which dinaciclib induces apoptosis and cell cycle arrest of lymphoma Raji cells through a CDK1‐involved pathway

OBJECTIVE: This study aimed to identify and evaluate the mechanism by which apoptosis and cell cycle arrest were induced by dinaciclib in lymphoma Raji cells. METHODS: The colony formation assay was used to detect cell proliferation of Raji cells. Cell cycle arrest and cell apoptosis were determined...

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Autores principales: Zhao, Huayan, Li, Shenglei, Wang, Guannan, Zhao, Wugan, Zhang, Dandan, Wang, Fang, Li, Wencai, Sun, Ling
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6675732/
https://www.ncbi.nlm.nih.gov/pubmed/31207099
http://dx.doi.org/10.1002/cam4.2324
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author Zhao, Huayan
Li, Shenglei
Wang, Guannan
Zhao, Wugan
Zhang, Dandan
Wang, Fang
Li, Wencai
Sun, Ling
author_facet Zhao, Huayan
Li, Shenglei
Wang, Guannan
Zhao, Wugan
Zhang, Dandan
Wang, Fang
Li, Wencai
Sun, Ling
author_sort Zhao, Huayan
collection PubMed
description OBJECTIVE: This study aimed to identify and evaluate the mechanism by which apoptosis and cell cycle arrest were induced by dinaciclib in lymphoma Raji cells. METHODS: The colony formation assay was used to detect cell proliferation of Raji cells. Cell cycle arrest and cell apoptosis were determined by flow cytometry and TUNEL assays, respectively. Protein expression related to the Raji cell state was evaluated by Western blot. The Raji/Dinaciclib drug‐resistant cell line was established, where the regulating functions of CDK1‐involved pathway were verified. In addition, the effect of dinaciclib in vivo was examined in orthotopically implanted tumors in nude mice. RESULTS: Cell apoptosis was induced, and DNA synthesis ability was decreased in a time‐dependent manner in dinaciclib‐treated lymphoma Raji cells. Furthermore, the cell cycle was found to be blocked in the G2/M Phase. Further study indicated that CDK1‐involved pathway played a key regulatory role in this process. It was revealed by cell transfection that the expression of cell cycle proteins was downregulated after treatment with dinaciclib through a CDK1‐involved pathway, which eventually led to apoptosis. Knockdown of CDK1 restored the sensitivity of the Raji/Dinaciclib cells to dinaciclib. Xenograft model of nude mice showed that dinaciclib treatment in vivo could effectively inhibit tumor growth, consistent with the experiment results mentioned before. CONCLUSION: In this study, we clarified the mechanisms through which dinaciclib induces Raji cell apoptosis and blocks the cell cycle through a CDK1‐involved pathway, which supported that dinaciclib had potential values in the treatment of lymphoma.
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spelling pubmed-66757322019-08-06 Study of the mechanism by which dinaciclib induces apoptosis and cell cycle arrest of lymphoma Raji cells through a CDK1‐involved pathway Zhao, Huayan Li, Shenglei Wang, Guannan Zhao, Wugan Zhang, Dandan Wang, Fang Li, Wencai Sun, Ling Cancer Med Cancer Biology OBJECTIVE: This study aimed to identify and evaluate the mechanism by which apoptosis and cell cycle arrest were induced by dinaciclib in lymphoma Raji cells. METHODS: The colony formation assay was used to detect cell proliferation of Raji cells. Cell cycle arrest and cell apoptosis were determined by flow cytometry and TUNEL assays, respectively. Protein expression related to the Raji cell state was evaluated by Western blot. The Raji/Dinaciclib drug‐resistant cell line was established, where the regulating functions of CDK1‐involved pathway were verified. In addition, the effect of dinaciclib in vivo was examined in orthotopically implanted tumors in nude mice. RESULTS: Cell apoptosis was induced, and DNA synthesis ability was decreased in a time‐dependent manner in dinaciclib‐treated lymphoma Raji cells. Furthermore, the cell cycle was found to be blocked in the G2/M Phase. Further study indicated that CDK1‐involved pathway played a key regulatory role in this process. It was revealed by cell transfection that the expression of cell cycle proteins was downregulated after treatment with dinaciclib through a CDK1‐involved pathway, which eventually led to apoptosis. Knockdown of CDK1 restored the sensitivity of the Raji/Dinaciclib cells to dinaciclib. Xenograft model of nude mice showed that dinaciclib treatment in vivo could effectively inhibit tumor growth, consistent with the experiment results mentioned before. CONCLUSION: In this study, we clarified the mechanisms through which dinaciclib induces Raji cell apoptosis and blocks the cell cycle through a CDK1‐involved pathway, which supported that dinaciclib had potential values in the treatment of lymphoma. John Wiley and Sons Inc. 2019-06-17 /pmc/articles/PMC6675732/ /pubmed/31207099 http://dx.doi.org/10.1002/cam4.2324 Text en © 2019 The Authors. Cancer Medicine published by John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Cancer Biology
Zhao, Huayan
Li, Shenglei
Wang, Guannan
Zhao, Wugan
Zhang, Dandan
Wang, Fang
Li, Wencai
Sun, Ling
Study of the mechanism by which dinaciclib induces apoptosis and cell cycle arrest of lymphoma Raji cells through a CDK1‐involved pathway
title Study of the mechanism by which dinaciclib induces apoptosis and cell cycle arrest of lymphoma Raji cells through a CDK1‐involved pathway
title_full Study of the mechanism by which dinaciclib induces apoptosis and cell cycle arrest of lymphoma Raji cells through a CDK1‐involved pathway
title_fullStr Study of the mechanism by which dinaciclib induces apoptosis and cell cycle arrest of lymphoma Raji cells through a CDK1‐involved pathway
title_full_unstemmed Study of the mechanism by which dinaciclib induces apoptosis and cell cycle arrest of lymphoma Raji cells through a CDK1‐involved pathway
title_short Study of the mechanism by which dinaciclib induces apoptosis and cell cycle arrest of lymphoma Raji cells through a CDK1‐involved pathway
title_sort study of the mechanism by which dinaciclib induces apoptosis and cell cycle arrest of lymphoma raji cells through a cdk1‐involved pathway
topic Cancer Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6675732/
https://www.ncbi.nlm.nih.gov/pubmed/31207099
http://dx.doi.org/10.1002/cam4.2324
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