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Four neutral Rh1-Rh4 complexes of the general formula [Rh(CHCOO)L], where L is an -alkylimidazole ligand, were synthesized and characterized using various spectroscopic techniques, and in the case of Rh4 the crystal structure was confirmed. Investigation of the interactions of these complexes with HSA by fluorescence spectroscopy revealed that the binding constants are moderately strong (∼10 M), and site-marker competition experiments showed that the complexes bind to Heme site III (subdomain IB). Competitive binding studies for CT DNA using EB and HOE showed that the complexes bind to the minor groove, which was also confirmed by viscosity experiments. Molecular docking confirmed the experimental data for HSA and CT DNA. Antimicrobial tests showed that the Rh2-Rh4 complexes exerted a strong inhibitory effect on G bacteria and G bacteria as well as on the yeast , which showed a higher sensitivity compared to fluconazole. The cytotoxic activity of Rh1-Rh4 complexes tested on three cancer cell lines (HeLa, HCT116 and MDA-MB-231) and on healthy MRC-5 cells showed that all investigated complexes elicited more efficient cytotoxicity on all tested tumor cells than on control cells. Investigation of the mechanism of action revealed that the Rh1-Rh4 complexes inhibit cell proliferation different mechanisms of action, namely apoptosis (increase in expression of the pro-apoptotic Bax protein and caspase-3 protein in HeLa and HCT116 cells; changes in mitochondrial potential and mitochondrial damage; release of cytochrome c from the mitochondria; cell cycle arrest in G2/M phase in both HeLa and HCT116 cells together with a decrease in the expression of cyclin A and cyclin B) and autophagy (reduction in the expression of the protein p62 in HeLa and HCT116 cells).
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http://dx.doi.org/10.1039/d4dt01082e | DOI Listing |
Fitoterapia
August 2025
Guangdong Engineering Technology Research Center for the Development and Utilization of Mangrove Wetland Medicinal Resources, Zhangjiang Key Laboratory of R&D Marine Microbial Resources in the Beibu Gulf Rim, and the School of Ocean and Tropical Medicine, Guangdong Medical University, Zhanjiang, Gua
Phytochemical investigation of the 95 % ethanol extract of the tubers of Hemsleya chinensis led to the isolation of five previously undescribed cucurbitane-type triterpenoids (1-5, named hemslyencins G-K), along with five known analogues (6-10). The structures of these compounds were elucidated through comprehensive spectroscopic analysis (UV, IR, HR-ESI-MS, 1D and 2D NMR data). Compounds 1, 2, 7, 9, and 10 are characterized as 24‑oxygenated cucurbitane-type triterpenoids, were rarely found in the genus Hemsleya.
View Article and Find Full Text PDFACS Pharmacol Transl Sci
August 2025
LAQV/REQUIMTE, Laboratory of Pharmacology, Department of Drug Sciences, Faculty of Pharmacy, University of Porto, Porto 4050-313, Portugal.
Isoxazole-derived compounds possess various bioactivities including anticancer, immunomodulatory, antimicrobial, anti-inflammatory, or antipsychotic effects with successful implementation in clinical practice. Treatment of hematological malignancies with isoxazole derivatives represents a promising area of research. The present study aimed to synthesize 11 novel 3,5-diaryl-4,5-dihydroisoxazole compounds and assess their antiproliferative effects using cell viability assay in a panel of nine cancer types including breast (MCF-7), colon (HCT-116), cervical (HeLa), lung (A549), ovarian cancer (A2780), glioblastoma (U87), hepatocellular carcinoma (HepG2), and leukemia (Jurkat and HL-60) cells as well as two noncancerous cell lines (Bj-5ta and MCF-10A).
View Article and Find Full Text PDFPolymers (Basel)
August 2025
Drug Research Center, Faculty of Pharmacy, University of Medicine and Pharmacy of Craiova, 2 Petru Rareş Street, 200349 Craiova, Romania.
, a medicinal mushroom valued for its bioactive compounds, has not been previously characterized from Romanian sources. This study presents the first comprehensive chemical and biological screening of , introducing novel polymer-based encapsulation systems to enhance the stability and bioavailability of its bioactive constituents. Two distinct delivery systems were designed to enhance the functionality of extracts: (i) microencapsulation in maltodextrin (MIO) and (ii) a sequential approach involving preparation of silver nanoparticle-loaded (IO-AgNPs), followed by microencapsulation to yield the hybrid MIO-AgNP system.
View Article and Find Full Text PDFRSC Med Chem
July 2025
Department of Chemistry, Indian Institute of Technology (IIT) Gandhinagar Palaj Gandhinagar Gujarat 382355 India
The Golgi apparatus (GA), a critical sub-cellular organelle, plays a pivotal role in numerous biological signaling pathways, including the post-translational modification of proteins and their secretion to various cellular destinations. Dysregulation of GA function is implicated in the development of several diseases, including cancer. As a result, detouring clinically approved drugs into the GA for an enhanced anti-cancer effect remained a major challenge.
View Article and Find Full Text PDFMolecules
July 2025
Department of Chemistry, College of Science, Imam Abdulrahman Bin Faisal University, P.O. Box 1982, Dammam 31441, Saudi Arabia.
A series of eleven new -alkyl 3-(3-benzyloxyquinoxalin-2-yl) propanamides were prepared based on the azide coupling of 3-(3-benzyloxyquinoxalin-2-yl) propanhydrazide with a variety of primary and secondary amines and the consequent conjunction of a broad spectrum of lipophile and hydrophile characters to a quinoxaline ring system. 3-(3-benzyloxyquinoxalin-2-yl) propanhydrazide was produced in a two-step reaction of methyl 3-(3-oxo-3,4-dihydroquinoxalin-2-yl) propanoate with benzyl chloride followed by the hydrazinolysis of the corresponding ester. The antiproliferative activity of the compounds was tested in various cancer cell lines, including PC-3, Hela, HCT-116, and MCF-7; they showed a wide spectrum of activity for most of the tested compounds.
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