dr inż. Monika Pawłowska
Employment
- Assistant professor at Department of Pharmaceutical Technology and Biochemistry
- 2018 - present Postdoctoral research assistant at Department of Pharmaceutical Technology and Bichemistry
Publications
Filters
total: 17
Catalog Publications
Year 2024
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c-Myc inhibition and p21 modulation contribute to unsymmetrical bisacridines-induced apoptosis and senescence in pancreatic cancer cells
PublicationBackground Pancreatic cancer (PC) is one of the most aggressive cancers and is the seventh leading cause of cancer-related death worldwide. PC is characterized by rapid progression and resistance to conventional treatments. Mutations in KRAS, CDKN2A, TP53, SMAD4/DPC4, and MYC are major genetic alterations associated with poor treatment outcomes in patients with PC. Therefore, optimizing PC therapy is a tremendous challenge. Unsymmetrical...
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Thermosensitive composite based on agarose and chitosan saturated with carbon dioxide. Preliminary study of requirements for production of new CSAG bioink.
PublicationThis study introduces a method for producing printable, thermosensitive bioink formulated from agarose (AG) and carbon dioxide-saturated chitosan (CS) hydrogels. The research identified medium molecular weight chitosan as optimal for bioink production, with a preferred chitosan hydrogel content of 40–60 %. Rheological analysis reveals the bioink's pseudoplastic behavior and a sol-gel phase transition between 27.0 and 31.5 °C. The...
Year 2023
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Reactions of cobalt(ii) chloride and cobalt(ii) acetate with hemisalen-type ligands: ligand transformation, oxidation of cobalt and complex formation. Preliminary study on the cytotoxicity of Co(ii) and Co(iii) hemisalen complexes
PublicationSeveral molecular cobalt(II) complexes, one Co(II) coordination polymer, and one ionic cobalt(III) complex with imine hemisalen ligands were synthesized. The hemisalen ligands were synthesized from o-vanillin (oVP) and diverse aminopyridines (compounds HL1–HL4) or aminophenol (compound HL5). It was observed that cobalt(II) chloride in dry acetonitrile catalyzes a transformation of HL1 and HL3 instead of complex formation. The conversion...
Year 2022
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c-Myc Protein Level Affected by Unsymmetrical Bisacridines Influences Apoptosis and Senescence Induced in HCT116 Colorectal and H460 Lung Cancer Cells
PublicationUnsymmetrical bisacridines (UAs) are highly active antitumor compounds. They contain in their structure the drugs previously synthesized in our Department: C-1311 and C-1748. UAs exhibit different properties than their monomer components. They do not intercalate to dsDNA but stabilize the G-quadruplex structures, particularly those of the MYC and KRAS genes. Since MYC and KRAS are often mutated and constitutively expressed in cancer...
Year 2021
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Metabolic Profiles of New Unsymmetrical Bisacridine Antitumor Agents in Electrochemical and Enzymatic Noncellular Systems and in Tumor Cells
PublicationNew unsymmetrical bisacridines (UAs) demonstrated high activity not only against a set of tumor cell lines but also against human tumor xenografts in nude mice. Representative UA compounds, named C-2028, C-2045 and C-2053, were characterized in respect to their physicochemical properties and the following studies aimed to elucidate the role of metabolic transformations in UAs action. We demonstrated with phase I and phase II enzymes...
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The Influence of Antitumor Unsymmetrical Bisacridines on 3D Cancer Spheroids Growth and Viability
PublicationThe culture of 3D spheroids is a promising tool in drug development and testing. Recently, we synthesized a new group of compounds, unsymmetrical bisacridines (UAs), which exhibit high cytotoxicity against various human cell lines and antitumor potency against several xenografts. Here, we describe the ability of four UAs—C-2028, C-2041, C-2045, and C-2053—to influence the growth of HCT116 and H460 spheres and the viability of HCT116...
Year 2020
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Enhanced Activity of P4503A4 and UGT1A10 Induced by Acridinone Derivatives C-1305 and C-1311 in MCF-7 and HCT116 Cancer Cells: Consequences for the Drugs’ Cytotoxicity, Metabolism and Cellular Response
PublicationActivity modulation of drug metabolism enzymes can change the biotransformation of chemotherapeutics and cellular responses induced by them. As a result, drug-drug interactions can be modified. Acridinone derivatives, represented here by C-1305 and C-1311, are potent anticancer drugs. Previous studies in non-cellular systems showed that they are mechanism-based inhibitors of cytochrome P4503A4 and undergo glucuronidation via UDP-glucuronosyltranspherase...
Year 2018
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Modulation of UDP-glucuronidation by acridinone antitumor agents C-1305 and C-1311 in HepG2 and HT29 cell lines, despite slight impact in noncellular systems.
PublicationBackground Among the studied antitumor acridinone derivatives developed in our laboratory, 5-dimethylaminopropylamino-8-hydroxytriazoloacridinone (C-1305) and 5-diethylaminoethylamino-8-hydroxyimidazoacridinone (C-1311) exhibited cytotoxic and antitumor properties against several cancer types and were selected to be evaluated in preclinical and early-phase clinical trials. In the present work, we investigated the impact of C-1305...
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Quantum dots conjugates with unsymmetrical bisacridines enhance cytotoxicity of these antitumor compounds in lung cancer cells and have protecting effects on normal cells
PublicationBackground: In recent years, with the rapid development of nanotechnology and its extensive applications in the medicine, nanocarriers for anticancer drug delivery have gained a great importance. Spherical semiconductor nanocrystals, frequently called quantum dots (QDs) are very attractive nanomaterials for bioimaging applications and they possess properties as potential candidates for drug carrier. Unsymmetrical bisacridines (UAs),...
Year 2016
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The role of glucuronidation in drug resistance
PublicationThe final therapeutic effect of a drug candidate, which is directed to a specific molecular target strongly depends on its absorption, distribution, metabolism and excretion (ADME). The disruption of at least one element of ADME may result in serious drug resistance. In this work we described the role of one element of this resistance: phase II metabolism with UDP-glucuronosyltransferases (UGTs). UGT function is the transformation...
Year 2013
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CYP3A4 overexpressin enhances the cytotoxicity of the antitumor triazoloacridinone derivative C-1305 in CHO cells
PublicationW pracy badano wpływ nadekspresji izoenzymu CYP3A4 na cytotoksyczność i odpowiedź komórkową indukowaną przez przeciwnowotworową pochodną triazoloakrydonu w modelowym układzie komórek CHO: dzikego typu, z nadekspresją reduktazy cytochromu P450 (CHO-HR) oraz z koekspresją reduktazy i izoenzymu CYP3A4 (CHO-HR-3A4). Wykazano, że komórki CHO wykazywały różną wrażliwość na badany związek, a linia CHO-HR okazała się najbardziej wrażliwa,...
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CYP3A4 overexpression enhances the cytotoxicity of the antitumor triazoloacridinone derivative C-1305 in CHO cells
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Modulation of CYP3A4 activity and induction of apoptosis, necrosis and senescence by the antitumor imidazoacridinone C-1311 in human hepatoma cells
PublicationThere is increasing evidence that the expression level of drug metabolic enzymes affects the final cellular response following drug treatment. Moreover, anti-tumour agents may modulate enzymatic activity and/or cellular expression of metabolic enzymes in tumour cells. We investigated the influence of CYP3A4 overexpression on the cellular response induced by the anti-tumour agent C-1311 in hepatoma cells. C-1311-mediated CYP3A4...
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Modulation of CYP3A4 activity and induction of apoptosis, necrosis and senescence by the anti-tumour imidazoacridinone C-1311 in human hepatoma cells
Publication
Year 2011
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Different expression level of CYP3A4 isoenzyme modulate cellular response of CHO cells following treatment with the CYP3A4 inhibitor, C-1311 compound
PublicationEfektywność terapii przeciwnowotworowej może być zmieniana przez różne czynniki. Jednym z ograniczeń jest odmienny u każdego pacjenta poziom enzymów metabolizujących odpowiedzialnych za aktywację i detoksykację leków, co może zmieniać jego odpowiedź na zastosowaną terapię. Co więcej, enzymy metabolizujące często są celem molekularnym wielu ksenobiotyków, co dodatkowo może zmieniać skuteczność terapii. Zatem zrozumienie oddziaływań...
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Systemy ekspresyjne białek cytochromu P450 w badaniach in vitro metabolizmu leków = Expression systems of cytochrome P450 proteins in studies of drug metabolism in vitro
PublicationBiałka cytochromu P450 to najważniejsze enzymy biorące udział w metabolizmie większości stosowanych w klinice leków, odpowiedzialne za ich aktywację lub detoksykację. Niektóre z dróg metabolizmu leku mogą być jednak odpowiedzialne za jego podwyższoną toksyczność. Nowe systemy ekspresyjne białek cytochromu P450 w komórkach ssaków, w tym człowieka, projektowane są w celu poznania roli metabolizmu w mechanizmie działania potencjalnych,...
Year 2010
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The increased level of cytochrome P450 isoenzyme CYP3A4 affects the cellular response in CHO cells upon antitumor imidazoacridinone C-1311 treatment
PublicationPochodna C-1311 to potencjalny związek przeciwnowotworowy, który dotarł do II fazy badań klinicznych. Związek ten ulega metabolicznej transformacji pod wpływem szczurzych i ludzkich białek mikrosomalnych. Wykazano, że białka cytochromu P450 odpowiadają za przemiany metaboliczne C-1311 jedynie w niewielkim stopniu. Z drugiej strony wykazano, że pochodna C-1311 jest inhibitorem białek cytochromu P450, zwłaszcza izoenzymu CYP1A2...
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