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Synthesis of a Dual Functional Anti-MDR Tumor Agent PH II-7 with Elucidations of Anti-Tumor Effects and Mechanisms

Multidrug resistance mediated by P-glycoprotein in cancer cells has been a major issue that cripples the efficacy of chemotherapy agents. Aimed for improved efficacy against resistant cancer cells, we designed and synthesized 25 oxindole derivatives based on indirubin by structure-activity relations...

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Autores principales: Su, Ye, Cheng, Xin, Tan, Yaohong, Hu, Yunhui, Zhou, Yuan, Liu, Juanni, Xu, Yuanfu, Xie, Yinliang, Wang, Caiyun, Gao, Yingdai, Wang, Jianxiang, Cheng, Tao, Yang, Chunzheng, Xiong, Dongsheng, Miao, Hua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3293869/
https://www.ncbi.nlm.nih.gov/pubmed/22403708
http://dx.doi.org/10.1371/journal.pone.0032782
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author Su, Ye
Cheng, Xin
Tan, Yaohong
Hu, Yunhui
Zhou, Yuan
Liu, Juanni
Xu, Yuanfu
Xie, Yinliang
Wang, Caiyun
Gao, Yingdai
Wang, Jianxiang
Cheng, Tao
Yang, Chunzheng
Xiong, Dongsheng
Miao, Hua
author_facet Su, Ye
Cheng, Xin
Tan, Yaohong
Hu, Yunhui
Zhou, Yuan
Liu, Juanni
Xu, Yuanfu
Xie, Yinliang
Wang, Caiyun
Gao, Yingdai
Wang, Jianxiang
Cheng, Tao
Yang, Chunzheng
Xiong, Dongsheng
Miao, Hua
author_sort Su, Ye
collection PubMed
description Multidrug resistance mediated by P-glycoprotein in cancer cells has been a major issue that cripples the efficacy of chemotherapy agents. Aimed for improved efficacy against resistant cancer cells, we designed and synthesized 25 oxindole derivatives based on indirubin by structure-activity relationship analysis. The most potent one was named PH II-7, which was effective against 18 cancer cell lines and 5 resistant cell lines in MTT assay. It also significantly inhibited the resistant xenograft tumor growth in mouse model. In cell cycle assay and apoptosis assay conducted with flow cytometry, PH II-7 induced S phase cell cycle arrest and apoptosis even in resistant cells. Consistently revealed by real-time PCR, it modulates the expression of genes related to the cell cycle and apoptosis in these cells, which may contributes to its efficacy against them. By side-chain modification and FITC-labeling of PH II-7, we were able to show with confocal microscopy that not only it was not pumped by P-glycoprotein, it also attenuated the efflux of Adriamycin by P-glycoprotein in MDR tumor cells. Real-time PCR and western blot analysis showed that PH II-7 down-regulated MDR1 gene via protein kinase C alpha (PKCA) pathway, with c-FOS and c-JUN as possible mediators. Taken together, PH II-7 is a dual-functional compound that features both the cytotoxicity against cancer cells and the inhibitory effect on P-gp mediated drug efflux.
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spelling pubmed-32938692012-03-08 Synthesis of a Dual Functional Anti-MDR Tumor Agent PH II-7 with Elucidations of Anti-Tumor Effects and Mechanisms Su, Ye Cheng, Xin Tan, Yaohong Hu, Yunhui Zhou, Yuan Liu, Juanni Xu, Yuanfu Xie, Yinliang Wang, Caiyun Gao, Yingdai Wang, Jianxiang Cheng, Tao Yang, Chunzheng Xiong, Dongsheng Miao, Hua PLoS One Research Article Multidrug resistance mediated by P-glycoprotein in cancer cells has been a major issue that cripples the efficacy of chemotherapy agents. Aimed for improved efficacy against resistant cancer cells, we designed and synthesized 25 oxindole derivatives based on indirubin by structure-activity relationship analysis. The most potent one was named PH II-7, which was effective against 18 cancer cell lines and 5 resistant cell lines in MTT assay. It also significantly inhibited the resistant xenograft tumor growth in mouse model. In cell cycle assay and apoptosis assay conducted with flow cytometry, PH II-7 induced S phase cell cycle arrest and apoptosis even in resistant cells. Consistently revealed by real-time PCR, it modulates the expression of genes related to the cell cycle and apoptosis in these cells, which may contributes to its efficacy against them. By side-chain modification and FITC-labeling of PH II-7, we were able to show with confocal microscopy that not only it was not pumped by P-glycoprotein, it also attenuated the efflux of Adriamycin by P-glycoprotein in MDR tumor cells. Real-time PCR and western blot analysis showed that PH II-7 down-regulated MDR1 gene via protein kinase C alpha (PKCA) pathway, with c-FOS and c-JUN as possible mediators. Taken together, PH II-7 is a dual-functional compound that features both the cytotoxicity against cancer cells and the inhibitory effect on P-gp mediated drug efflux. Public Library of Science 2012-03-05 /pmc/articles/PMC3293869/ /pubmed/22403708 http://dx.doi.org/10.1371/journal.pone.0032782 Text en Su et al. http://creativecommons.org/licenses/by/4.0/ 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 properly credited.
spellingShingle Research Article
Su, Ye
Cheng, Xin
Tan, Yaohong
Hu, Yunhui
Zhou, Yuan
Liu, Juanni
Xu, Yuanfu
Xie, Yinliang
Wang, Caiyun
Gao, Yingdai
Wang, Jianxiang
Cheng, Tao
Yang, Chunzheng
Xiong, Dongsheng
Miao, Hua
Synthesis of a Dual Functional Anti-MDR Tumor Agent PH II-7 with Elucidations of Anti-Tumor Effects and Mechanisms
title Synthesis of a Dual Functional Anti-MDR Tumor Agent PH II-7 with Elucidations of Anti-Tumor Effects and Mechanisms
title_full Synthesis of a Dual Functional Anti-MDR Tumor Agent PH II-7 with Elucidations of Anti-Tumor Effects and Mechanisms
title_fullStr Synthesis of a Dual Functional Anti-MDR Tumor Agent PH II-7 with Elucidations of Anti-Tumor Effects and Mechanisms
title_full_unstemmed Synthesis of a Dual Functional Anti-MDR Tumor Agent PH II-7 with Elucidations of Anti-Tumor Effects and Mechanisms
title_short Synthesis of a Dual Functional Anti-MDR Tumor Agent PH II-7 with Elucidations of Anti-Tumor Effects and Mechanisms
title_sort synthesis of a dual functional anti-mdr tumor agent ph ii-7 with elucidations of anti-tumor effects and mechanisms
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3293869/
https://www.ncbi.nlm.nih.gov/pubmed/22403708
http://dx.doi.org/10.1371/journal.pone.0032782
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