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This study employed in silico methods to evaluate the antibreast cancer potential of three phytocomponents from garcinol, anthocyanin, and hydroxycitric acid against nine breast cancer-related protein targets. Molecular docking revealed that garcinol exhibited the strongest binding affinity for BRCA2 (BE - 7.1 kcal/mol, Kd 6.27 µM), anthocyanin for BAX (BE - 7.54 kcal/mol, Kd 2.96 µM) and hydroxycitric acid for BRCA1 (BE - 8.28 kcal/mol, Kd 848.46 nM), outperforming reference drugs doxorubicin and tetracycline. Molecular dynamics simulation of the garcinol-BRCA2 complex demonstrated conformational stability throughout the 100 ns simulation period, supported by consistent RMSD, hydrogen bond count, and compactness metrics (Rg ≈ 1.94-2.0 nm). ADMET and toxicity analyses confirmed favorable drug likeness and non-toxic profiles for the GI phytocomponents. PASS prediction, BOILED-Egg and bioavailability radar assessments further supported their potential as orally bioavailable, CNS-accessible therapeutic candidates. The findings indicate that the relatively unexplored GI possesses a high concentration of pharmacologically active compounds and may serve as an excellent source of novel, natural anticancer agents for future drug development. To the best of our knowledge, this is the first in silico study evaluating the antibreast cancer potential of phytocompounds.
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http://dx.doi.org/10.1007/s13205-025-04365-8 | DOI Listing |
Adv Pharm Bull
July 2025
Cell Therapy Center, The University of Jordan, 11942, Amman, Jordan.
Purpose: Breast cancer is the leading cause of cancer-related deaths among women. Chemotherapy faces challenges such as systemic toxicity and multidrug resistance. Advances in nanotechnology have led researchers to develop safer and more efficient cancer treatment methods.
View Article and Find Full Text PDFInt J Biol Macromol
September 2025
College of Pharmacy, Fujian University of Traditional Chinese Medicine, Fuzhou, 350122, China; Fujian Health College, Fuzhou, 350101, China. Electronic address:
Hyaluronic acid derivatives have broad prospects in the in vivo targeted delivery of insoluble antitumor drugs. In this study, rhein-selenocystamine-hyaluronic acid (RSeHA) polymeric micelles (PMs) were designed and developed to load celastrol (Cela) to solve its poor water solubility, low bioavailability, and severe toxicity for breast cancer treatment. Cela-loaded RSeHA PMs (Cela/RSeHA PMs) with a particle size of 159.
View Article and Find Full Text PDFCancer Rep (Hoboken)
September 2025
Centre for Natural Product Research (CNPR), Department of Chemical Sciences, University of Johannesburg, Johannesburg, South Africa.
Background: Breast cancer is a major public health issue. In 2022, approximately 4,207 new cases and 2,285 deaths were reported in Cameroon. Given the limited accessibility and various issues associated with conventional treatments, herbal medicine has emerged as a promising alternative.
View Article and Find Full Text PDFOrg Lett
September 2025
Guangdong Provincial Key Laboratory of Chinese Medicine Ingredients and Gut Microbiomics, Institute for Inheritance-Based Innovation of Chinese Medicine, School of Pharmacy, Shenzhen University Medical School, Shenzhen University, Shenzhen 518060, P. R. China.
Chizhiaroterpenoids A-C (-), three unprecedented skeletal benzofused lanostane-type triterpenoids with unprecedented 6/6/6/6/6 (), 6/6/6/6/7 (), and 6/6/6/5/6 () ring systems, were isolated from . Their biosynthetic pathways were proposed. and suppressed lipopolysaccharide-induced inflammation in BV2 cells, restored BDNF levels, and alleviated depression-like behaviors in mice.
View Article and Find Full Text PDFJ Pept Sci
October 2025
Renji Hospital, Shanghai Jiaotong University School of Medicine, Shanghai, China.
The development of novel candidate molecules for breast cancer treatment holds significant clinical value. Panurgines (PNG), derived from the venom of the wild bee Panurgus calcaratus, are particularly noteworthy for their anti-breast cancer activity and antibacterial properties. However, linear peptides are often hindered by poor stability and limited cell membrane permeability, making them highly susceptible to protease degradation.
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