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Biomedical subjects

M Wójcik

Publications and source records attributed to M Wójcik.

At least 19 recordsLinked to original sources

Antisense hairpin loop oligonucleotides as inhibitors of expression of multidrug resistance-associated protein 1: their stability in fetal calf serum and human plasma.

Multidrug resistance-associated protein (MRP1) is a transmembrane pump protein responsible for the efflux of chemotherapeutic drugs, an important cause of anticancer treatment failure. Trying to circumvent MRP-mediated resistance we designed and synthesized hairpin loops forming antisense oligodeoxyribonucleotides (ODNs), both phosphodiesters (PO-ODNs) and their phosphorothioate analogues (PS-ODNs), to reduce the protein expression by targeting its mRNA in a sequence specific manner. Melting temperature measurements as well as polyacrylamide gel electrophoresis supported the preferential formation of a secondary structure, which was expected to protect ODNs against 3'-exonuclease degradation. ODNs and PS-ODNs designed in this work were successfully tested as antisense inhibitors of the expression of MRP1 in the leukaemia HL60/ADR cell line. Foreseeing the necessity to perform clinical studies with such ODNs we investigated their stability against the 3'-exonuclease activity of fetal calf serum and human plasma. Under the conditions, corresponding to physiological ones, we observed high stability of hairpin loop forming ODNs, especially those containing longer (e.g. 7 base pair) stems. Comparative studies on the stability of chemically unmodified hairpin loop forming ODNs and their PS-counterparts indicated that endonuclease activity did not play any important role in the process of their nucleolytic degradation. Our studies provide strong evidence for high stability of chemically unmodified hairpin loop ODNs, making them an attractive alternative to phosphorothioate analogues commonly used in antisense strategy.

Animals↗

p53 protein detection by the western blotting technique in normal and neoplastic specimens of human endometrium.

The aim of the study was to investigate p53 protein expression by the Western blotting technique (estimated by integrated optical density - IOD) in normal (n = 13) and neoplastic (n = 40) human endometrial tissues as well as in a case of uterine carcinosarcoma and in a specimen of the botryoid sarcoma of the uterine cervix. p53 protein levels were correlated with patients' age as well as with conventionally used clinicopathological features of the endometrial neoplasm. A statistically significant difference was noted in p53 levels in the nuclear, but not in the cytoplasmatic, fraction between the normal endometria and endometrial cancer tissues (P < 0.0001). In the neoplastic endometria, nuclear p53 protein expression was higher than in cytoplasmatic fraction, and the difference was significant (P < 0.05). Higher nuclear p53 protein levels correlated with advanced histological grading of endometrioid endometrial carcinomas, but no relationship was noted between p53 protein expression and patients' age, clinical stage, histological type or depth of myometrial invasion. A case of uterine carcinosarcoma and a specimen of a botryoid sarcoma of the uterine cervix expressed nuclear p53 oncoprotein (57 IOD and 89 IOD, respectively). In conclusion, we found a statistically higher nuclear p53 levels in malignant as compared to normal human endometrial specimens by the Western blotting technique. Although there were no significant differences between p53 expression and clinicopathological features of the neoplasm (except poor histological grading), further studies are necessary to evaluate the influence of p53 nuclear/cytoplasmatic levels on the clinical outcome of Polish patients suffering from endometrial cancer.

Age Factors↗

Effect of ethanol on ATP-induced phospholipases C and D and serine base exchange in glioma C6 cells.

The effect of extracellular ATP, a nucleotide receptor agonist in the central nervous system, was investigated in glioma C6 cells on the intracellular Ca2+ level and the formation of phosphatidylethanol and phosphatidic acid in the presence and absence of ethanol (150 mM). In the cells prelabeled with [14C]palmitic acid, 100 microM ATP induced both the hydrolysis and the transphosphatidylation reactions leading to the formation of [14C]phosphatidic acid; addition of ethanol generated [14C]phosphatidylethanol. However, ATP-mediated increase in the level of [14C]phosphatidic acid was not inhibited by ethanol. Furthermore, ethanol augmented ATP-induced transient and sustained increase in the intracellular Ca2+ concentration, whereas ethanol alone did not produce any change in the intracellular Ca2+ level. These results indicate that in glioma C6 cells, ATP induces activation of polyphosphoinositide-specific phospholipase C and phospholipase D and that ethanol enhances this effect. In the present investigation we have also shown that long-term (2 days) ethanol treatment, at concentration relevant to chronic alcoholism (100 mM), decreased the incorporation of [14C]serine into phosphatidylserine. Since the effect of ethanol on ATP-induced activities of phospholipase C and phospholipase D and on serine base-exchange in glioma C6 cells differs significantly from that in cultured neuronal cells, these results may contribute to a better understanding of the mechanisms of ethanol action in cells of glial origin.

Adenosine Triphosphate↗

Solvation of Cr3+ cation in water-acetonitrile mixture studied by IR spectroscopy: molecular penetration into the solvation shells.

Infrared spectra of mixtures of water and deuteroacetonitrile containing the Cr3+ cation have been studied as a function of concentration, time and temperature. The CN stretching vibration of CD3CN molecules has been used as a probe of the structural environments. The CN band in the spectra of the solutions is a superposition of four subbands, which may be attributed to CD3CN bound in the first, second, and third solvation shells of the cation and to non-bound CD3CN. The character of changes of the integral intensities of the subbands with time for various H2O:Cr3+ molar ratios are explained by suggesting mechanisms of molecular replacement within the solvation shells of Cr3+.

Acetonitriles↗

Multidrug resistance-associated protein--reduction of expression in human leukaemia cells by antisense phosphorothioate olignucleotides.

Multidrug resistance-associated protein (MRP1) causes cellular drug resistance in several cancer cell lines. In this paper we show that antisense oligonucleotides decrease MRP1 expression in human leukaemia cells. We investigated biological activity of a series of 12 linear phosphorothioate oligonucleotides, complementary to several regions of MRP1 mRNA. The oligonucleotides were administered to leukaemia HL60/ADR cells overexpressing MRP1 protein. Then, the level of MRP1 mRNA was determined by means of semiquantitative RT-PCR and the protein level by reaction with specific monoclonal antibodies. Some of the investigated antisense oligonucleotides decrease the expression level of the MRP1 protein by 46% and its mRNA level by 76%.

DNA-Binding Proteins↗

Sphingosine, sphingosylphosphorylcholine and sphingosine 1-phosphate modulate phosphatidylserine homeostasis in glioma C6 cells.

The effect of sphingosine, sphingosylphosphorylcholine and sphingosine 1-phosphate on L-[U-14C]serine incorporation into phosphatidylserine and phosphatidylserine-derived phosphatidylethanolamine was investigated in intact glioma C6 cells. Sphingosine, sphingosylphosphorylcholine and sphingosine 1-phosphate are potent signalling molecules which, due to their physicochemical features, may function as amphiphilic compounds. It has been found that sphingosine and sphingosylphosphorylcholine (amphiphilic cations) significantly increase [14C]phosphatidylserine synthesis and decrease the amount of 14C-labeled phosphatidylethanolamine. Sphingosine 1-phosphate (an amphiphilic anion) was without effect on phosphatidylserine synthesis but, similarly as sphingosine and sphingosylphosphorylcholine, reduced the conversion of phosphatidylserine to phosphatidylethanolamine. These results strongly suggest that sphingosine, sphingosylphosphorylcholine and sphingosine 1-phosphate can modulate cellular phospholipid homeostasis by stimulation of phosphatidylserine synthesis and an interference with phosphatidylserine decarboxylase.

Brain Neoplasms↗

[Non Hodgkin's lymphoma--treatment of choice and the role of high dose chemotherapy].

Non Hodgkin's Lymphomas protocols currently used at the CMUJ Department of Haematology in Cracow based on updated results of randomised trials are summarised. High dose chemotherapy with hematopoietic blood stem cell support is only one of the elements of modern NHL therapy; it's effectiveness depends on optimal indications and timing of the procedure.

Antineoplastic Combined Chemotherapy Protocols↗

[Supportive therapy in patients with autologous hemopoietic stem cell transplantation].

Infectious complications remain one of the most serious diagnostic and therapeutic problems in modern hematology and are the major cause of morbidity and mortality following stem cell transplantation. Myeloablative therapy supported by haemopoietic stem cell transplantation remains standard policy in the treatment of certain haematological malignancies and solid tumors. Proper preventive strategies for patients in deep immunosuppression including prompt diagnosis and treatment of infections correlate with favourable prognosis and survival. Prophylaxis and therapy of bacterial, fungal and viral infections in neutropenic patients following myeloablative chemotherapy have been submitted in this article. Our guidelines are based on European Group for Bone and Marrow Transplantation recommendations and some European transplantological centres protocols. These standards were adapted to Polish conditions and now are used at Bone Marrow Transplantation Ward at Haematology Department at the Jagiellonian University.

Bacterial Infections↗

Inhibition of plasminogen activator inhibitor release in endothelial cell cultures by antisense oligodeoxyribonucleotides with a 5'-end lipophilic modification.

A series of conjugates containing residues of lipophilic alcohols covalently bound to 5' end of oligodeoxyribonucleotides targeted against human plasminogen activator inhibitor (PAI-1) mRNA was synthesized via the oxathiaphospholane approach. The highest anti-PAI-1 activity in EA.hy 926 endothelial cell cultures was found for conjugates containing menthyl or heptadecanyl groups linked with an oligonucleotide complementary to a segment of human PAI-1 mRNA. The phosphodiester antisense oligonucleotides, which otherwise exhibit only limited anti-PAI-1 activity, were found to be more active than phosphorothioate oligonucleotides when conjugated to lipophilic alcohol residues. For menthyl conjugates an evidence of antisense mechanism of inhibition was found.

Base Sequence↗

Novel internucleotide 3'-NH-P(CH3)(O)-O-5' linkage. Oligo(deoxyribonucleoside methanephosphonamidates); synthesis, structure and hybridization properties.

Diastereomeric dithymidine methanephosphonamidates (TnpmT) were synthesized by reaction of 3'-amino-3'-deoxythymidine with 3'- O -acetylthymidin-5-yl-methanephosphonochloridate. Separated dinucleotide TnpmT(fast) and TnpmT(slow) diastereomers were used as building blocks to prepare chimeric dodecathy-midylates, possessing one to four modified linkages, by means of phosphoramidite automated solid phase synthesis. As expected, the methanephosphonamidate internucleotide linkage is resistant to nuclease P1, snake venom PDE and 3'-exonuclease from human plasma. Degradation of dodecathymidylates possessing modified internucleotide linkages in alternate positions proved the 'hopping' properties of 3'-exonuclease. Oligo(deoxyribonucleotide methanephosphonamidates) were tested for their binding affinity to complementary oligomers in thermal denaturation experiments. All the oligomers showed lower binding affinity to DNA and RNA targets, however, oligomers originating from the TnpmT(fast) dimeric unit exhibited better hybridization properties than their diastereomeric TnpmT(slow) counterparts. A lowering of T m of approximately 2.4 degrees C (1.0-1.8 degrees C) was observed for each introduced TnpmT(fast) modification and 6.0 degrees C (4.2-5.0 degrees C) for each TnpmT(slow) modification in duplexes of modified dodecathymidylates with dA12(A12) oligomers. The oligo(deoxyribonucleoside methanephosphonamidate) designated F4, possessing four modified methanephosphonate linkages originating from the TnpmT(fast) diastereomeric unit, exhibits a tendency for triplex formation, as was demonstrated in thermal denaturation experiments with the d(A21C4T21) hairpin oligomer.

Animals↗

Synthesis, biochemical and biological studies on oligonucleotides bearing a lipophilic dimethoxytrityl group.

Dimethoxytritylphosphono-oligonucleotide conjugates have been prepared. They are totally resistant to nucleases present in human serum and do not affect cleavage of a complementary oligoribonucleotide by RNase H. Conjugates possessing a phosphate backbone gave better antisense inhibition of expression of plasminogen activator inhibitor type-1 within endothelial cells as compared with unconjugated oligonucleotides.

Cells, Cultured↗

Stability of stereoregular oligo(nucleoside phosphorothioate)s in human plasma: diastereoselectivity of plasma 3'-exonuclease.

The stability of stereoregular oligo(nucleoside phosphorothioate)s (PS-oligos) in human plasma has been studied. 3'-Exonuclease present in human plasma appeared to be RP specific, that is, it cleaves internucleotide phosphorothioate linkages of [RP]-configuration and not those of [SP]-configuration. Therefore, PS-oligos containing all phosphorothioate internucleotide linkages of [RP]-configuration [RP-PS-oligos]) are more effectively degraded by the enzyme than PS-oligos prepared via nonstereo-controlled methods (so-called random mixture of diastereomers [Mix-PS-oligos]), whereas oligo(nucleoside phosphorothioate)s of [S(P)]-configuration remain intact. The enzyme activity depends on the sequence of nucleobases. The presence of deoxycytidine units (three or more residues) at the 3'-end of PS-oligo substrate significantly inhibits the enzyme activity.

Drug Stability↗

Isolation of the homogeneous constituents from non-diffusible sugar-peptide (NSP) fraction originating from bovine plasma. IV. The influence on cell growth of REF and R-XC cells in vitro.

The effect of the NSP fraction and its four peptide constituents (A, C2, D and G) on the 3H-thymidine incorporation into REF and R-XC cells in vitro was described. Only peptide G (at concentration 5 micrograms/ml) affected the growth of the investigated cells, decreasing the 3H-thymidine uptake to 4-13% relative to untreated control, regardless of the kind of investigated cells. The effect of peptide G, added in concentration 10 ng-1 microgram, however was dependent on the type of investigated cells, suggests that neoplastic transformation changes the response of rat cells in vitro. The possible explanation of the differences in the biological response of the investigated cells to peptide G is proposed.

Animals↗