In Silico Analysis of the Effect of Hydrastis canadensis on Controlling Breast Cancer

Author:

Vyshnavi AM Hima1,Sankaran Sathianarayanan2ORCID,Namboori PK Krishnan1,Venkidasamy Baskar3ORCID,Hirad Abdurahman4,Alarfaj Abdullah4,Vinayagam Ramachandran5ORCID

Affiliation:

1. Computational Chemistry Group (CCG), Amrita School of Engineering, Amrita Vishwa Vidyapeetham, Coimbatore 641112, India

2. Department of Pharmaceutical Chemistry, NGSM Institute of Pharmaceutical Sciences, Nitte (Deemed to be University), Deralakatte, Mangaluru 575018, India

3. Department of Oral & Maxillofacial Surgery, Saveetha Dental College and Hospitals, Saveetha Institute of Medical and Technical Sciences (SIMATS), Saveetha University, Chennai 600077, India

4. Department of Botany and Microbiology, College of Science, King Saud University, Riyadh 11451, Saudi Arabia

5. Department of Biotechnology, Institute of Biotechnology, College of Life and Applied Sciences, Yeungnam University, 280 Daehak-Ro, Gyeongsan 38541, Gyeongbuk, Republic of Korea

Abstract

Background and Objectives: Breast cancer is a significant type of cancer among women worldwide. Studies have reported the anti-carcinogenic activity of Hydrastis Canadensis (Goldenseal) in cancer cell lines. Hydrastis Canadensis could help eliminate toxic substances due to its anti-cancer, anti-inflammatory, and other properties. The design phase includes the identification of potential and effective molecules through modern computational techniques. Objective: This work aims to study Hydrastis Canadensis’s effect in controlling hormone-independent breast cancer through in-silico analysis. Materials and Methods: The preliminary screening of reported phytochemicals includes biomolecular networking. Identifying functionally relevant phytochemicals and the respective target mutations/genes leads to selecting 3D proteins of the desired mutations being considered the target. Interaction studies have been conducted using docking. The kinetic and thermodynamic stability of complexes was studied through molecular dynamic simulation and MM-PBSA/GBSA analysis. Pharmacodynamic and pharmacokinetic features have been predicted. The mechanism-wise screening, functional enrichment, and interactional studies suggest that canadaline and Riboflavin effectively interact with the target proteins. Results: Hydrastis Canadensis has been identified as the effective formulation containing all these constituents. The phytoconstituents; Riboflavin and Canadensis showed good interaction with the targets of hormone-independent breast cancer. The complexes were found to be kinetically and thermodynamically stable. Conclusions: Hydrastis Canadensis has been identified as effective in controlling ‘hormone-independent or basal-like breast cancer’ followed by ‘hormone-dependent breast cancer: Luminal A’ and Luminal B.

Publisher

MDPI AG

Subject

General Medicine

Reference56 articles.

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3. Cancer Statistics, 2020: Report from National Cancer Registry Programme, India;Mathur;JCO Glob. Oncol.,2020

4. Triple negative breast cancer: Unmet medical needs;Pal;Breast Cancer Res. Treat.,2011

5. Triple-negative breast cancer molecular subtyping and treatment progress;Yin;Breast Cancer Res.,2020

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