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Synthesis and In Vitro Anticancer Evaluation of Novel Phosphonium Derivatives of Chrysin.

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International journal of molecular sciences 📖 저널 OA 100% 2021: 8/8 OA 2022: 38/38 OA 2023: 49/49 OA 2024: 103/103 OA 2025: 453/453 OA 2026: 454/454 OA 2021~2026 2025 Vol.26(22)
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Halmai M, Herr DM, Mayer S, Keglevich P, Abdallah EA, Bózsity-Faragó N

📝 환자 설명용 한 줄

One of the best-known flavonoid chrysin was coupled at position 7 with several trisubstituted phosphine derivatives with a flexible spacer, and their in vitro anticancer activities were investigated o

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APA Halmai M, Herr DM, et al. (2025). Synthesis and In Vitro Anticancer Evaluation of Novel Phosphonium Derivatives of Chrysin.. International journal of molecular sciences, 26(22). https://doi.org/10.3390/ijms262211063
MLA Halmai M, et al.. "Synthesis and In Vitro Anticancer Evaluation of Novel Phosphonium Derivatives of Chrysin.." International journal of molecular sciences, vol. 26, no. 22, 2025.
PMID 41303546 ↗

Abstract

One of the best-known flavonoid chrysin was coupled at position 7 with several trisubstituted phosphine derivatives with a flexible spacer, and their in vitro anticancer activities were investigated on 60 human tumor cell lines (NCI60) and on several gynecological cancer cells. The trisubstituted phosphines contained different substituents on the aromatic ring(s), e.g., methyl and methoxy groups or fluoro atoms. The phosphorus atom was substituted not only with aromatic rings but with cyclohexyl substituents. The ionic phosphonium building block is important because it allows the therapeutic agents to transfer across the cell membrane. Therefore, the pharmacophores linked to it can exert their effects in the mitochondria. Instead of the ionic phosphonium element, a neutral moiety, namely the triphenylmethyl group, was also added to the side chain, being sterically similar but without a charge and phosphorus atom. Most of the hybrids exhibited low micromolar growth inhibition () values against the majority of the tested cell lines. Notably, conjugate stood out, demonstrating nanomolar antitumor activity against the K-562 leukemia cell line ( = 34 nM). One selected compound () with promising cancer selectivity elicited cell cycle disturbances and inhibited the migration of breast cancer. The tumor-selectivity of and was assessed based on their effects on non-tumor Chinese hamster ovary (CHO) cells using the CellTiter-Glo Luminescent Cell Viability Assay. Given their estimated half-maximal inhibitory concentration () values on non-tumor CHO cells (2.65 µM and 1.15 µM, respectively), these conjugates demonstrate promising selectivity toward several cancer cell lines. The excellent results obtained may serve as good starting points for further optimization and the design of even more effective flavonoid- and/or phosphonium-based drugs.

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