Network Pharmacology and Molecular Docking-Based Screening of Immunotherapeutic Targets for HuaChanSu Against Breast
Yujun Tang1, Jie Luo1,2, Liuqing Qin1
1Guangxi Medical University, Nanning, China.
Abstract:
Breast cancer has emerged as the primary cause of mortality stemming from malignancies among women. HuaChanSu has demonstrated efficacy in suppressing the progression of various malignancies. However, the specific immune targets and pathways influenced by HuaChanSu within mammary tumors remain elusive. This study is designed to uncover potent monomers and pivotal targets associated with HuaChanSu's anti-breast cancer Immunotherapy. The genes pertinent to HuaChanSu and breast cancer were acquired individually from publicly available databases. Interaction analysis using Cytoscape was conducted on common genes to determine the most suitable targets and crucial constituents of HuaChanSu's Immunotherapy against breast cancer. Following this, molecular docking was employed to validate ligand and receptor binding interactions. Lastly, the identified core genes underwent assessment of immune infiltration. The intersection of HuaChanSu and BC targets yielded a total of 49 differentially expressed genes. Bufalin emerged as the most potent constituent in Immunotherapy. Immunoassay data demonstrated significant correlations (r > 0.03, p < 0.05) between S100B, MMP9, FOS, EGFR, KIT, MME, and immune infiltration within BC. Molecular docking further corroborated the effective binding of Bufalin with immune-related genes. Through network pharmacological validation, we propose the extraction of Bufalin, a monomeric constituent of Huachansu, to exert immunomodulatory effects aimed at inhibiting the progression of breast cancer. Most of the target genes (S100B, BIRC5, MMP9, FOS, EGFR, KIT, and MME) are common targets for immunotherapy.
Insights
This study identifies Bufalin, a component of HuaChanSu, as a potent immunotherapy agent against breast cancer. Bufalin targets key genes like S100B and MMP9, modulating the immune response to inhibit tumor progression.
Area of Science:
- Oncology
- Immunology
- Pharmacology
Background:
- Breast cancer is a leading cause of cancer mortality in women.
- HuaChanSu shows promise in cancer treatment, but its immune mechanisms in breast cancer are unclear.
Purpose of the Study:
- To identify key immune targets and active compounds in HuaChanSu for breast cancer immunotherapy.
- To validate the therapeutic potential of identified compounds and targets.
Main Methods:
- Network pharmacology analysis of HuaChanSu and breast cancer-related genes.
- Identification of core targets and potent monomers using Cytoscape and molecular docking.
- Assessment of immune infiltration in relation to target genes.
Main Results:
- Identified 49 differentially expressed genes common to HuaChanSu and breast cancer.
- Bufalin was identified as the most potent monomer for immunotherapy.
- Significant correlations were found between S100B, MMP9, FOS, EGFR, KIT, MME, and immune infiltration in breast cancer.
Conclusions:
- Bufalin, a monomer from HuaChanSu, shows potential for breast cancer immunotherapy through immunomodulatory effects.
- Key target genes like S100B, MMP9, and EGFR are crucial for Bufalin's anti-breast cancer activity.
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