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Artikel ; Online: In-silico

Shahid, Izzah / Shoaib, Muhammad / Raza, Rabail Zehra / Jahangir, Muhammad / Abbasi, Sumra Wajid / Riasat, Areej / Akbar, Ansa / Mehnaz, Samina

Anti-cancer agents in medicinal chemistry

2023  Band 23, Heft 12, Seite(n) 1388–1396

Abstract: Background: Breast cancer is characterized by uncontrolled cell growth in the breast tissue and is a leading cause of death globally. Cytotoxic effects and reduced efficacy of currently used therapeutics insist to look for new chemo-preventive ... ...

Abstract Background: Breast cancer is characterized by uncontrolled cell growth in the breast tissue and is a leading cause of death globally. Cytotoxic effects and reduced efficacy of currently used therapeutics insist to look for new chemo-preventive strategies against breast cancer.
Objective: The utilization of drug-likeness filters and molecular simulation has helped evaluate the pharmacological activity and binding abilities of selected drug candidates to the target proteins in many cancer studies.
Methods: The current
Results: Among the three honokiol derivatives, ligand-protein binding energy of 3' formylhonokiol with
Conclusion: It was further established that 3'- formylhonokiol displays an excellent profile of distribution, metabolism, and absorption, indicating it is an anticipated future drug candidate.
Mesh-Begriff(e) Humans ; Female ; Breast Neoplasms/pathology ; Molecular Docking Simulation ; Protein Serine-Threonine Kinases/metabolism ; Biphenyl Compounds/pharmacology ; Molecular Dynamics Simulation
Chemische Substanzen honokiol (11513CCO0N) ; Protein Serine-Threonine Kinases (EC 2.7.11.1) ; Biphenyl Compounds
Sprache Englisch
Erscheinungsdatum 2023-04-03
Erscheinungsland Netherlands
Dokumenttyp Journal Article
ZDB-ID 2217610-X
ISSN 1875-5992 ; 1871-5206
ISSN (online) 1875-5992
ISSN 1871-5206
DOI 10.2174/1871520623666230330083630
Signatur
Zs.A 5583: Hefte anzeigen Standort:
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