Ulinastatin reduces the resistance of liver cancer cells to epirubicin by inhibiting autophagy.

During chemotherapy, drug resistance caused by autophagy remains a major challenge to successful treatment of cancer patients. The purpose of this study is to show that ulinastatin (UTI), a trypsin inhibitor, could reduce the resistance of liver cancer cells to chemotherapeutic agent epirubicin (EPI...

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Main Authors: Bin Song, Qi Bian, Cheng Hao Shao, Gang Li, An An Liu, Wei Jing, Rui Liu, Yi-Jie Zhang, Ying-Qi Zhou, Xian-Gui Hu, Gang Jin
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4376693?pdf=render
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spelling doaj-220c5ba8a788444a9442e9e14ca6cf022020-11-25T01:45:20ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-01103e012069410.1371/journal.pone.0120694Ulinastatin reduces the resistance of liver cancer cells to epirubicin by inhibiting autophagy.Bin SongQi BianCheng Hao ShaoGang LiAn An LiuWei JingRui LiuYi-Jie ZhangYing-Qi ZhouXian-Gui HuGang JinDuring chemotherapy, drug resistance caused by autophagy remains a major challenge to successful treatment of cancer patients. The purpose of this study is to show that ulinastatin (UTI), a trypsin inhibitor, could reduce the resistance of liver cancer cells to chemotherapeutic agent epirubicin (EPI). We achieved this conclusion by analyzing the effect of EPI alone or UTI plus EPI on SMMC-7721 and MHCC-LM3 liver cancer cells. We also generated an EPI-resistant liver cancer cell line (MHCC-LM3er cells), and found that UTI could sensitize the LM3er cells to EPI. Autophagy usually functions to protect cancer cells during chemotherapy. Our study showed that UTI inhibited the autophagy induced by EPI in liver cancer cells, which promoted apoptosis, and therefore, reduced the resistance of the cancer cells to EPI. Further studies showed that the UTI-mediated inhibition on autophagy was achieved by inhibiting transcriptional factor nuclear factor-κB (NF-κB) signaling pathway. To verify our results in vivo, we injected MHCC-LM3 liver cancer cells or EPI-resistant LM3er cells into mice, and found that EPI could only effectively inhibit the growth of tumor in MHCC-LM3 cell-injected mice, but not in LM3er cell-injected mice. However, when UTI was also administered, the growth of tumor was inhibited in the MHCC-LM3er cell-injected mice as well. Our results suggest that UTI may be used in combination with anti-cancer drugs, such as EPI, to improve the outcome of cancer therapy.http://europepmc.org/articles/PMC4376693?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Bin Song
Qi Bian
Cheng Hao Shao
Gang Li
An An Liu
Wei Jing
Rui Liu
Yi-Jie Zhang
Ying-Qi Zhou
Xian-Gui Hu
Gang Jin
spellingShingle Bin Song
Qi Bian
Cheng Hao Shao
Gang Li
An An Liu
Wei Jing
Rui Liu
Yi-Jie Zhang
Ying-Qi Zhou
Xian-Gui Hu
Gang Jin
Ulinastatin reduces the resistance of liver cancer cells to epirubicin by inhibiting autophagy.
PLoS ONE
author_facet Bin Song
Qi Bian
Cheng Hao Shao
Gang Li
An An Liu
Wei Jing
Rui Liu
Yi-Jie Zhang
Ying-Qi Zhou
Xian-Gui Hu
Gang Jin
author_sort Bin Song
title Ulinastatin reduces the resistance of liver cancer cells to epirubicin by inhibiting autophagy.
title_short Ulinastatin reduces the resistance of liver cancer cells to epirubicin by inhibiting autophagy.
title_full Ulinastatin reduces the resistance of liver cancer cells to epirubicin by inhibiting autophagy.
title_fullStr Ulinastatin reduces the resistance of liver cancer cells to epirubicin by inhibiting autophagy.
title_full_unstemmed Ulinastatin reduces the resistance of liver cancer cells to epirubicin by inhibiting autophagy.
title_sort ulinastatin reduces the resistance of liver cancer cells to epirubicin by inhibiting autophagy.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2015-01-01
description During chemotherapy, drug resistance caused by autophagy remains a major challenge to successful treatment of cancer patients. The purpose of this study is to show that ulinastatin (UTI), a trypsin inhibitor, could reduce the resistance of liver cancer cells to chemotherapeutic agent epirubicin (EPI). We achieved this conclusion by analyzing the effect of EPI alone or UTI plus EPI on SMMC-7721 and MHCC-LM3 liver cancer cells. We also generated an EPI-resistant liver cancer cell line (MHCC-LM3er cells), and found that UTI could sensitize the LM3er cells to EPI. Autophagy usually functions to protect cancer cells during chemotherapy. Our study showed that UTI inhibited the autophagy induced by EPI in liver cancer cells, which promoted apoptosis, and therefore, reduced the resistance of the cancer cells to EPI. Further studies showed that the UTI-mediated inhibition on autophagy was achieved by inhibiting transcriptional factor nuclear factor-κB (NF-κB) signaling pathway. To verify our results in vivo, we injected MHCC-LM3 liver cancer cells or EPI-resistant LM3er cells into mice, and found that EPI could only effectively inhibit the growth of tumor in MHCC-LM3 cell-injected mice, but not in LM3er cell-injected mice. However, when UTI was also administered, the growth of tumor was inhibited in the MHCC-LM3er cell-injected mice as well. Our results suggest that UTI may be used in combination with anti-cancer drugs, such as EPI, to improve the outcome of cancer therapy.
url http://europepmc.org/articles/PMC4376693?pdf=render
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