Publications by authors named "Polkowski K"

In vitro cytotoxicity tests currently in use applied in the developmental stages of anticancer drug discovery are able to select the most potent compounds, but are not predictive of their potential toxicity. In this study, we have demonstrated the applicability of neutral red uptake assay using mouse fibroblasts Balb/c 3T3 cell line (3T3 NRU assay) for in vitro toxicity testing of newly synthesized genistein glycosides, the compounds that appear to show anticancer activity. We have also proven the compatibility of in-house 3T3 NRU assay with the prediction model for acute rodent oral toxicity testing, endorsed by NIEHS-ICCVAM workshop.

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Methods for determination of genistein and its four new analogues in culture media have been developed to support studies on their potential anticancer activities. The investigated compounds were extracted from the media using liquid-liquid extraction with appropriate solvent. After evaporation of organic solvents each of the dry extracts was reconstituted in appropriate mobile phase.

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Genistein, the principal soy isoflavone, is a molecule of great interest as an innovative chemotherapeutic agent or as a lead-compound in anticancer drug design. To enhance intrinsic activity of genistein and to explore its pharmacophoric potential, its glycosidic derivatives were synthesized. On the basis of structural features and calculated lipophilicity coefficient (ClogP) the derivatives were classified as hydrophilic (i.

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Genistein, a principal soy isoflavone, has recently aroused interest in medical research owning to its numerous biochemical properties such as: inhibition of the activity of tyrosine-specific protein kinases and topoisomerase II, estrogenic and antioxidant activity as well as antiproliferative and antiangiogenic effects. Therefore, genistein is extensively investigated as a novel anticancer drug. To improve physicochemical properties of genistein (e.

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Genistein--a soy derived isoflavone has recently attracted much attention of the medical scientific community. This compound was found to be a potent agent in both prophylaxis and treatment of cancer as well as other chronic diseases. The great interest that has focused on genistein led to the identification of numerous intracellular targets of its action in the live cell.

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