Search PubMed⌕ Search

Biomedical subjects

W Witkowski

Publications and source records attributed to W Witkowski.

18 recordsLinked to original sources

A structure-function study of nucleic acid-fluorenone complexes.

Several 2.7-bis-[(dialkylamino)-acetylamino]-fluoren-9-one derivatives (fluoramides) were synthesized as analogues of the DNA binding compound tilorone (2,7-bis[(diethylamino)-ethoxy]-fluoren-9-one). Previous studies showed the drugs to induce cytokines and inhibit reverse transcription. Here, their binding to DNA was evaluated using UV and circular dichroism studies. Like tilorone, the fluoramides derivatives also intercalate resulting in increased Tm values and new CD signatures. A preference to alternating A-T and G-C sequences was detected; only minor interaction to homologous sequences was observed. Moreover, no upper limit in the drug/DNA ratio was found, testing limit being the precipitation of the drug. However, surface plasmon resonance (SPR) studies of tilorone and 2,7-bis-[(dipropylamino)-acetyl-amino]-fluoren-9-one, indicate an astonishing drug/base pair ratio (r > 1), which point to a multitude of interactions under SPR conditions. Molecular modeling calculations, where the geometries of the complexes optimized under the assumption of intercalative and multitude of suprahelical arrangements, rationalize the observations. Based on the thermodynamic and biological studies, a structure-function model is proposed.

Animals↗

[Experimental studies of in vitro IFN induction by different polynucleotides in human cell culture systems].

Several polynucleotides were tested for interferon induction in comparison with the standard Poly (IC) in human diploid fibroblasts and in human leukocyte suspensions. We received high IFN-titre following superinduction of the polynucleotides in human fibroblasts. These results show that under superinduction conditions partly 3 times more interferon is induced in comparison with the standard inductor Poly (IC). The tested concentration of 10 micrograms/ml polynucleotides did not result in any IFN yields or only in very low ones in human leukocytes, which were only within the range of detectability.

Cells, Cultured↗

The dsRNA motif in interferon induction.

A dynamic recognition process is proposed for the triggers of interferon induction. It might account not only for dsRNAs but also for a more general dsRNA-type recognition motif, created by various low-- and high-molecular-weight nucleic acid effectors.

Interferon Inducers↗

Comparison of antiviral properties in mice of bis-pyrrolidinoacetamido-fluorenone (MLU-B75), bis-dipropylaminoacetamido-fluorenone (MLU-B76), and tilorone hydrochloride.

Like tilorone . HCl, its analogues, bis-pyrrolidinoacetamido-fluorenone (MLU-B75), and bis-dipropylaminoacetamido-fluorenone (MLU-B76), significantly protected mice against intraperitoneal challenge with a lethal dose of Mengo virus when administered prophylactically in a single oral dose of 250 mg per kg body weight. At lower doses the antiviral activity of MLU-B75 and MLU-B76 decreased more rapidly than that of tilorone. HCl. At the dose of 250 mg per kg the degree of antiviral protection and the titre of interferon induced by tilorone. HCl correlated well, but there was no correlation between the extent of protection and the detected amount of virus inhibitor induced by MLU-B76. It remains to be determined whether the antiviral protection elicited by the analogues of tilorone is mediated by interferon.

Animals↗

Interferon induction in human lymphocytes by complexes of vinyl copolymers with polynucleotides.

Analogues of the dsRNA poly(I).poly(C), namely double-stranded like complexes of poly(I) or poly(C), respectively, with corresponding vinyl nucleobases copolymerized with various vinyl compounds are highly effective interferon inducers in human lymphocyte cultures. Like poly(I).poly(C) they stimulate the liberation of an inhibitor(s) of interferon activity and, moreover, display mitogenic effect. With respect to the extent of these effects the various inducers differ considerably.

DNA↗