Academic literature on the topic 'Carbonic Anhydrase, Inhibitors, Molecular Modeling, Enzymatic Assay'

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Journal articles on the topic "Carbonic Anhydrase, Inhibitors, Molecular Modeling, Enzymatic Assay"

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Zareei, Samira, Maryam Mohammadi-Khanaposhtani, Mehdi Adib, Mohammad Mahdavi, and Parham Taslimi. "Sulfonamide-phosphonate hybrids as new carbonic anhydrase inhibitors: In vitro enzymatic inhibition, molecular modeling, and ADMET prediction." Journal of Molecular Structure 1271 (January 2023): 134114. http://dx.doi.org/10.1016/j.molstruc.2022.134114.

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Gumus, Arzu, Murat Bozdag, Atilla Akdemir, Andrea Angeli, Silvia Selleri, Fabrizio Carta, and Claudiu T. Supuran. "Thiosemicarbazide-Substituted Coumarins as Selective Inhibitors of the Tumor Associated Human Carbonic Anhydrases IX and XII." Molecules 27, no. 14 (July 19, 2022): 4610. http://dx.doi.org/10.3390/molecules27144610.

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A novel series of thiosemicarbazide-substituted coumarins was synthesized and the inhibitory effects against four physiologically relevant carbonic anhydrase isoforms I, II, IX and XII showed selective activities on the tumor-associated IX and XII isozymes. Molecular modeling studies on selected compounds 14a and 22a were performed. The binding modes of such compounds were determined assuming their enzymatically active structures (i.e., cinnamic acid) in the thermodynamically favored, and not previously explored, E geometry. Molecular modelling suggests multiple interactions within the enzymatic cavity and may explain the high potency and selectivity reported for the hCAs IX and XII.
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Buran, Kerem, Silvia Bua, Giulio Poli, F. Önen Bayram, Tiziano Tuccinardi, and Claudiu T. Supuran. "Novel 8-Substituted Coumarins That Selectively Inhibit Human Carbonic Anhydrase IX and XII." International Journal of Molecular Sciences 20, no. 5 (March 10, 2019): 1208. http://dx.doi.org/10.3390/ijms20051208.

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A novel series of 8-substituted coumarin-based compounds, characterized by the presence of alkylpiperazine and arylpiperazine chains, were synthesized and tested for their inhibitory activity against four human carbonic anhydrase (hCA) isoforms. All compounds displayed nanomolar potency against the cancer-related hCA IX and hCA XII; moreover, they were shown to be devoid of any inhibitory activity toward the cytosolic hCA I and hCA II up to 10 µM concentration in the assay system. Therefore, the synthesized coumarin ligands demonstrated to be potent and selective hCA IX/XII inhibitors, and were shown to be as potent as the reference inhibitor acetazolamide against hCA XII, with single-digit nanomolar Ki values. Molecular modeling studies provided a rationale for explaining the selectivity profile of these non-classic hCA inhibitors and their interactions with the enzymes, according to their specific mechanism of action, thus paving the way for future structure-based lead optimization studies.
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Agamennone, Mariangela, Marialuigia Fantacuzzi, Simone Carradori, Anél Petzer, Jacobus P. Petzer, Andrea Angeli, Claudiu T. Supuran, and Grazia Luisi. "Coumarin-Based Dual Inhibitors of Human Carbonic Anhydrases and Monoamine Oxidases Featuring Amino Acyl and (Pseudo)-Dipeptidyl Appendages: In Vitro and Computational Studies." Molecules 27, no. 22 (November 15, 2022): 7884. http://dx.doi.org/10.3390/molecules27227884.

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The involvement of human carbonic anhydrase (hCA) IX/XII in the pathogenesis and progression of many types of cancer is well acknowledged, and more recently human monoamine oxidases (hMAOs) A and B have been found important contributors to tumor development and aggressiveness. With a view of an enzymatic dual-blockade approach, in this investigation, new coumarin-based amino acyl and (pseudo)-dipeptidyl derivatives were synthesized and firstly evaluated in vitro for inhibitory activity and selectivity against membrane-bound and cytosolic hCAs (hCA IX/XII over hCA I/II), as well as the hMAOs, to estimate their potential as anticancer agents. De novo design of peptide-coumarin conjugates was subsequently carried out and involved the combination of the widely explored coumarin nucleus with the unique biophysical and structural properties of native or modified peptides. All compounds displayed nanomolar inhibitory activities towards membrane-anchored hCAs, whilst they were unable to block the ubiquitous CA I and II isoforms. Structural features pertinent to potent and selective CA inhibitory activity are discussed, and modeling studies were found to support the biological data. Lower potency inhibition of the hMAOs was observed, with most compounds showing preferential inhibition of hMAO-A. The binding of the most potent ligands (6 and 16) to the hydrophobic active site of hMAO-A was investigated in an attempt to explain selectivity on the molecular level. Calculated Ligand Efficiency values indicate that compound 6 has the potential to serve as a lead compound for developing innovative anticancer agents based on the dual inhibition strategy. This information may help design new coumarin-based peptide molecules with diverse bioactivities.
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Dissertations / Theses on the topic "Carbonic Anhydrase, Inhibitors, Molecular Modeling, Enzymatic Assay"

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Nocentini, Alessio. "MODELING AND STRUCTURE-BASED APPROACHES IN THE DESIGN, SYNTHESIS AND BIOLOGICAL EVALUATION OF LIGANDS TARGETING THE METALLOENZYMES CARBONIC ANHYDRASES." Doctoral thesis, 2018. http://hdl.handle.net/2158/1118577.

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