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Topotecan induces hepatocellular injury via ASCT2 mediated oxidative stress.
Author: QinMeisong, YangJianting, YuHao, ZhangXiaolin, ZhouGuoliang
Original Abstract of the Article :
BACKGROUND: Topotecan is an anti-cancer chemotherapy drug with common side effects, including hepatotoxicity. In this study, we aim to investigate the mechanisms of topotecan-induced hepatocellular injury beyond conventional DNA damage. MATERIALS AND METHODS: Methyl Thiazolyl Tetrazolium (MTT) assa...See full text at original site
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* 解説の内容は Health Journal が独自に解釈・作成したものであり、原論文の著者または出版社の見解を反映するものではありません。
引用元:
https://doi.org/10.1016/j.gastrohep.2020.05.017
データ提供:米国国立医学図書館(NLM)
Topotecan: A Double-Edged Sword in Cancer Treatment
The field of cancer chemotherapy is constantly striving to improve treatment efficacy while minimizing side effects. This study investigates the mechanisms of topotecan-induced hepatotoxicity, a common side effect of this chemotherapy drug. The researchers discovered that topotecan inhibits the expression of glutamine transporter ASCT2, leading to reduced glutamine uptake and increased oxidative stress in liver cells. This oxidative stress contributes to hepatocellular injury and cell death.
A Delicate Balance: Topotecan's Impact on Liver Cells
This study reveals a crucial role of glutamine transporter ASCT2 in mediating the hepatotoxicity of topotecan. The researchers demonstrated that topotecan inhibits ASCT2 expression, leading to reduced glutamine uptake and increased oxidative stress. This finding suggests that targeting ASCT2 could potentially mitigate the liver toxicity of topotecan.
Protecting the Liver: Strategies for Minimizing Side Effects
This research emphasizes the importance of understanding the mechanisms of drug-induced toxicity to develop strategies for minimizing side effects. By identifying the role of ASCT2 in topotecan-induced hepatotoxicity, researchers can explore potential interventions to protect the liver, such as supplementing glutamine or developing ASCT2-specific inhibitors.
Dr.Camel's Conclusion
This study sheds light on the complex mechanisms of topotecan-induced hepatotoxicity. The discovery of ASCT2's involvement in this process provides valuable insights for developing strategies to minimize liver toxicity. Further research is needed to explore the potential of targeting ASCT2 to protect the liver during topotecan therapy.
Date :
- Date Completed 2021-10-29
- Date Revised 2021-10-29
Further Info :
Related Literature
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