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Published on: March 3, 2023
Investigation of Anti-Liver Cancer Activity of the Herbal Drug FDY003 Using Network Pharmacology
Ho-Sung Lee1,2, In-Hee Lee1,2, Sang-In Park3
1The Fore Research Institute, 33 Saemunan-ro 5ga-gil, Jongno-gu, Seoul 03170, Republic of Korea.
Abstract:
Globally, liver cancer (LC) is the sixth-most frequently occurring and the second-most fatal malignancy, responsible for 0.83 million deaths annually. Although the application of herbal drugs in cancer therapies has increased, their anti-LC activity and relevant mechanisms have not been fully studied from a systems perspective. To address these issues, we conducted a system-perspective network pharmacological investigation into the activity and mechanisms underlying the action of the herbal drug. FDY003 reduced the viability of human LC treatment. FDY003 reduced the viability of human LC cells and elevated their chemosensitivity. There were a total of 16 potential bioactive chemical components in FDY003 and they had 91 corresponding targets responsible for the pathological processes in LC. These FDY003 targets were functionally involved in regulating the survival, proliferation, apoptosis, and cell cycle of LC cells. Additionally, we found that FDY003 may target key signaling cascades connected to diverse LC pathological mechanisms, namely, PI3K-Akt, focal adhesion, IL-17, FoxO, MAPK, and TNF pathways. Overall, this study contributed to integrative mechanistic insights into the anti-LC potential of FDY003.
Insights
This study investigated the herbal drug FDY003 for liver cancer (LC) treatment. Network pharmacology revealed FDY003 components target key pathways, reducing LC cell viability and enhancing chemosensitivity.
Area of Science:
- Pharmacology
- Oncology
- Systems Biology
Background:
- Liver cancer (LC) is a leading cause of cancer death globally.
- The anti-LC mechanisms of herbal drugs require further systems-level investigation.
Purpose of the Study:
- To explore the anti-LC activity and mechanisms of the herbal drug FDY003 using network pharmacology.
- To identify bioactive components and molecular targets of FDY003 in liver cancer.
Main Methods:
- Network pharmacology approach to analyze FDY003's chemical components and their targets.
- Investigated the impact of FDY003 on human LC cell viability and chemosensitivity.
Main Results:
- FDY003 contains 16 bioactive components targeting 91 LC-related genes.
- FDY003 reduced LC cell viability and increased chemosensitivity.
- Identified key pathways targeted by FDY003, including PI3K-Akt, MAPK, and TNF signaling.
Conclusions:
- FDY003 demonstrates anti-LC potential through multi-component and multi-target mechanisms.
- Provides insights into the molecular basis of FDY003's efficacy against liver cancer.
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