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1.
Eur J Med Chem ; 248: 115112, 2023 Feb 15.
Article in English | MEDLINE | ID: mdl-36641860

ABSTRACT

Triple negative breast cancer (TNBC) is a specific breast cancer subtype, and poor prognosis is associated to this tumour when it is in the metastatic form. The overexpression of the inducible Nitric Oxide Synthase (iNOS) is considered a predictor of poor outcome in TNBC patients, and this enzyme is reported as a valuable molecular target to compromise TNBC progression. In this work, new amidines containing a benzenesulfonamide group were designed and synthesized as selective iNOS inhibitors. An in vitro biological evaluation was performed to assess compounds activity against both the inducible and constitutive NOSs. The most interesting compounds 1b and 2b were evaluated on MDA-MB-231 cells as antiproliferative agents, and 1b capability to counteract cell migration was also studied. Finally, an in-depth docking study was performed to shed light on the observed potency and selectivity of action of the most promising compounds.


Subject(s)
Antineoplastic Agents , Triple Negative Breast Neoplasms , Humans , Nitric Oxide Synthase Type II , Triple Negative Breast Neoplasms/drug therapy , Triple Negative Breast Neoplasms/pathology , Antineoplastic Agents/pharmacology , Antineoplastic Agents/therapeutic use , Amidines/pharmacology , Cell Line, Tumor , Cell Proliferation , Benzenesulfonamides
2.
Bioorg Med Chem ; 44: 116294, 2021 08 15.
Article in English | MEDLINE | ID: mdl-34218000

ABSTRACT

In search of new Nitric Oxide Synthase (NOS) inhibitor agents, two isosteric series of derivatives with an imidamide scaffold (one of them with a hydroxyl group and the other with a carbonyl one) were synthesized and evaluated on inducible (iNOS) and neuronal (nNOS) isoforms. These compounds have been designed by combining a kynurenamine framework with an amidine moiety in order to improve selectivity for the inducible isoform. In general, the in vitro inhibitory assays exhibited better inhibition values on the iNOS isoform, being the N-(3-(2-amino-5-methoxyphenyl)-3-hydroxypropyl)-4-(trifluoromethyl)benzimidamide 4i the most active inhibitor with the highest iNOS selectivity, without inhibiting eNOS. Docking studies on the two most active compounds suggest a different binding mode on both isozymes, supporting the experimentally observed selectivity towards the inducible isoform. Physicochemical in silico studies suggest that these compounds possess good drug-likeness properties.


Subject(s)
Amidines/pharmacology , Enzyme Inhibitors/pharmacology , Molecular Docking Simulation , Nitric Oxide Synthase Type II/antagonists & inhibitors , Nitric Oxide Synthase Type I/antagonists & inhibitors , Amidines/chemical synthesis , Amidines/chemistry , Dose-Response Relationship, Drug , Enzyme Inhibitors/chemical synthesis , Enzyme Inhibitors/chemistry , Humans , Molecular Structure , Nitric Oxide Synthase Type I/metabolism , Nitric Oxide Synthase Type II/metabolism , Structure-Activity Relationship
3.
Arch Pharm (Weinheim) ; 349(8): 638-50, 2016 Aug.
Article in English | MEDLINE | ID: mdl-27328401

ABSTRACT

The synthesis of different compounds with a quinazolinone, quinazolinthione, or quinazolinimine skeleton and their in vitro biological evaluation as inhibitors of inducible and neuronal nitric oxide synthase (iNOS and nNOS) isoforms are described. These derivatives were obtained from substituted 2-aminobenzylamines, using diverse cyclization procedures. Furthermore, the diamines were synthesized by two routes: A conventional pathway and an efficient one-pot synthesis in a continuous-flow hydrogenator. The structures of these heterocycles were confirmed by (1) H and (13) C nuclear magnetic resonance and high-resolution mass spectroscopy data. The structure-activity relationships of the target molecules are discussed in terms of the effects of both the R radical and the X heteroatom in the 2-position. In general, the assayed compounds behave as better iNOS than nNOS inhibitors, with the quinazolinone 11e being the most active inhibitor of all tested compounds and the most iNOS/nNOS selective one.


Subject(s)
Enzyme Inhibitors/chemical synthesis , Enzyme Inhibitors/pharmacology , Nitric Oxide Synthase Type II/antagonists & inhibitors , Nitric Oxide Synthase Type I/antagonists & inhibitors , Quinazolines/pharmacology , Quinazolinones/pharmacology , Thiones/pharmacology , Drug Design , Enzyme Inhibitors/chemistry , Quinazolines/chemical synthesis , Quinazolines/chemistry , Quinazolinones/chemical synthesis , Quinazolinones/chemistry , Radioligand Assay , Structure-Activity Relationship , Thiones/chemical synthesis , Thiones/chemistry
4.
Magn Reson Chem ; 54(10): 793-799, 2016 Oct.
Article in English | MEDLINE | ID: mdl-27173052

ABSTRACT

The (1) H and (13) C NMR resonances of seventeen N-alkyl and aryl-N'-[3-hydroxy-3-(2-nitro-5-substitutedphenyl)propyl]-thioureas and ureas (1-17), and seventeen N-alkyl or aryl-N'-[3-(2-amino-5-substitutedphenyl)-3-hydroxypropyl]-thioureas and ureas (18-34), designed as NOS inhibitors, were assigned completely using the concerted application of one- and two-dimensional experiments (DEPT, HSQC and HMBC). NOESY studies confirm the preferred conformation of these compounds. Copyright © 2016 John Wiley & Sons, Ltd.


Subject(s)
Enzyme Inhibitors/chemistry , Enzyme Inhibitors/pharmacology , Nitric Oxide Synthase/antagonists & inhibitors , Thiourea/analogs & derivatives , Thiourea/chemistry , Urea/analogs & derivatives , Urea/chemistry , Carbon-13 Magnetic Resonance Spectroscopy/standards , Enzyme Inhibitors/chemical synthesis , Molecular Structure , Nitric Oxide Synthase/metabolism , Proton Magnetic Resonance Spectroscopy/standards , Reference Standards , Thiourea/chemical synthesis , Thiourea/pharmacology , Urea/chemical synthesis , Urea/pharmacology
6.
ChemMedChem ; 10(5): 874-82, 2015 May.
Article in English | MEDLINE | ID: mdl-25801086

ABSTRACT

Herein we describe the synthesis of a new family of kynurenamine derivatives with a urea or thiourea moiety, together with their in vitro biological evaluation as inhibitors of both neuronal and inducible nitric oxide synthases (nNOS and iNOS, respectively), enzymes responsible for the biogenesis of NO. These compounds were synthesized from a 5-substituted-2-nitrophenyl vinyl ketone scaffold in a five-step procedure with moderate to high chemical yields. In general, the assayed compounds show greater inhibition of iNOS than of nNOS, with 1-[3-(2-amino-5-chlorophenyl)-3-oxopropyl]-3-ethylurea (compound 5 n) being the most potent iNOS inhibitor in the series and the most iNOS/nNOS-selective compound. In this regard, we performed molecular modeling studies to propose a binding mode for this family of compounds to both enzymes and, thereby, to elucidate the differential molecular features that could explain the observed selectivity between iNOS and nNOS.


Subject(s)
Drug Design , Enzyme Inhibitors/pharmacology , Kynuramine/pharmacology , Nitric Oxide Synthase Type II/antagonists & inhibitors , Nitric Oxide Synthase Type I/antagonists & inhibitors , Urea/chemistry , Animals , Dose-Response Relationship, Drug , Enzyme Inhibitors/chemical synthesis , Enzyme Inhibitors/chemistry , Human Umbilical Vein Endothelial Cells/drug effects , Human Umbilical Vein Endothelial Cells/metabolism , Humans , Kynuramine/analogs & derivatives , Kynuramine/chemistry , Male , Models, Molecular , Molecular Structure , Nitric Oxide/analysis , Nitric Oxide Synthase Type I/metabolism , Nitric Oxide Synthase Type II/metabolism , Rats , Rats, Wistar , Structure-Activity Relationship , Urea/analogs & derivatives
7.
Bioorg Med Chem ; 21(14): 4132-42, 2013 Jul 15.
Article in English | MEDLINE | ID: mdl-23735830

ABSTRACT

In a preliminary article, we reported a series of 4,5-dihydro-1H-pyrazole derivatives as neuronal nitric oxide synthase (nNOS) inhibitors. Here we present the data about the inhibition of inducible nitric oxide synthase (iNOS) of these compounds. In general, we can confirm that these pyrazoles are nNOS selective inhibitors. In addition, taking these compounds as a reference, we have designed and synthesized a series of new derivatives by modification of the heterocycle in 1-position, and by introduction of electron-donating or electron-withdrawing substituents in the aromatic ring. These derivatives have been evaluated as nNOS and iNOS inhibitors in order to identify new compounds with improved activity and selectivity. Compound 3r, with three methoxy electron-donating groups in the phenyl moiety, is the most potent nNOS inhibitor, showing good selectivity nNOS/iNOS.


Subject(s)
Enzyme Inhibitors/chemical synthesis , Enzyme Inhibitors/pharmacology , Nitric Oxide Synthase Type II/antagonists & inhibitors , Nitric Oxide Synthase Type I/antagonists & inhibitors , Acylation , Animals , Binding Sites , Dose-Response Relationship, Drug , Enzyme Activation/drug effects , Humans , Inhibitory Concentration 50 , Models, Molecular , Molecular Structure , Pyrazoles/chemical synthesis , Pyrazoles/chemistry , Pyrazoles/pharmacology , Structure-Activity Relationship
8.
Magn Reson Chem ; 50(7): 515-22, 2012 Jul.
Article in English | MEDLINE | ID: mdl-22693150

ABSTRACT

The (1) H and (13) C NMR resonances of twenty-seven 2,2-dimethyl-5-(2-nitrophenyl-5-substituted)-2,3-dihydro-1,3,4-thiadiazoles, and twenty-seven 3-acyl-5-(2-amino-5-substituted)-2,2-dimethyl-2,3-dihydro-1,3,4-thiadiazoles were assigned completely using the concerted application of one-dimensional and two-dimensional experiments (DEPT, HMQC and HMBC). NOESY experiments, X-ray crystallography and conformational analysis confirm the preferred conformation of these compounds.


Subject(s)
Thiadiazoles/chemistry , Magnetic Resonance Spectroscopy/standards , Molecular Structure , Reference Standards
9.
Eur J Med Chem ; 50: 129-39, 2012 Apr.
Article in English | MEDLINE | ID: mdl-22336385

ABSTRACT

The synthesis of new compounds with a 1,3,4-thiadiazole structure, and their in vitro biological evaluation as inhibitors of both neuronal and inducible Nitric Oxide Synthase (nNOS and iNOS) is described. These compounds have been designed by an isosteric modification of a series of 4,5-dihydro-1H-pyrazole derivatives, previously described as the nNOS inhibitors. The insertion of the S atom in the heterocyclic ring induces a selective inhibition of the iNOS isoform. Some of these compounds show as iNOS inhibition percentage near of 100% at a concentration of 50 µM, and the IC(50) values measured for the more potent compounds are in a range of 20-40 µM.


Subject(s)
Enzyme Inhibitors/chemical synthesis , Enzyme Inhibitors/pharmacology , Nitric Oxide Synthase Type II/antagonists & inhibitors , Nitric Oxide Synthase Type I/antagonists & inhibitors , Thiadiazoles/chemistry , Humans , Molecular Structure , Structure-Activity Relationship
10.
Magn Reson Chem ; 50(1): 58-61, 2012 Jan.
Article in English | MEDLINE | ID: mdl-22259186

ABSTRACT

The (13) C NMR resonances of 19 1-acyl-3-(2-nitro-5-substitutedphenyl)-4,5-dihydro-1H-pyrazoles, and 19 1-acyl-3-(2-amino-5-substituted)-4,5-dihydro-1H-pyrazoles, were completely assigned using the concerted application of one- and two-dimensional NMR experiments (DEPT, gs-HSQC and gs-HMBC).


Subject(s)
Pyrazoles/chemistry , Carbon Isotopes , Magnetic Resonance Spectroscopy/standards , Pyrazoles/chemical synthesis , Reference Standards
11.
Magn Reson Chem ; 47(12): 1101-9, 2009 Dec.
Article in English | MEDLINE | ID: mdl-19821470

ABSTRACT

The 1H and 13C NMR resonances of 22 5-(5-substituted-2-nitrophenyl)-1H-pyrrole-2-carboxamides, 22 5-(5-substituted-2-aminophenyl)-1H-pyrrole-2-carboxamides, and 9 5-phenyl-1H-pyrrole-2-carboxamides were assigned completely using the concerted application of one- and two-dimensional experiments (DEPT, gs-HMQC and gs-HMBC). NOE studies and conformational analysis confirm the preferred conformations of such compounds.


Subject(s)
Pyrazoles/chemistry , Carbon Isotopes , Magnetic Resonance Spectroscopy , Molecular Conformation , Protons , Pyrazoles/chemical synthesis , Reference Standards , Stereoisomerism
12.
Eur J Med Chem ; 44(6): 2655-66, 2009 Jun.
Article in English | MEDLINE | ID: mdl-19117642

ABSTRACT

We have previously described a series of 3-phenyl-4,5-dihydro-1H-pyrazole derivatives as moderately potent nNOS inhibitors. As a follow up of these studies, several new 5-phenyl-1H-pyrrole-2-carboxamide derivatives have been synthesized, and their biological evaluation as in vitro inhibitors of both neural and inducible Nitric Oxide Synthase (nNOS and iNOS) is described. Some of these compounds show good iNOS/nNOS selectivity and the more potent compounds 5-(2-aminophenyl)-1H-pyrrole-2-carboxilic acid methylamide (QFF205) and cyclopentylamide (QFF212) have been tested as regulators of the in vivo nNOS and iNOS activity. Both compounds prevented the increment of the inducible NOS activity in both cytosol (iNOS) and mitochondria (i-mtNOS) observed in the MPTP model of Parkinson's disease.


Subject(s)
Enzyme Inhibitors/pharmacology , Nitric Oxide Synthase Type II/antagonists & inhibitors , Nitric Oxide Synthase Type I/antagonists & inhibitors , Pyrazoles/pharmacology , Animals , Binding Sites , Cytosol/enzymology , Drug Design , Enzyme Inhibitors/chemical synthesis , Enzyme Inhibitors/chemistry , Mice , Mitochondria/enzymology , Models, Molecular , Molecular Structure , Pyrazoles/chemical synthesis , Pyrazoles/chemistry , Stereoisomerism , Structure-Activity Relationship
13.
Magn Reson Chem ; 46(9): 878-85, 2008 Sep.
Article in English | MEDLINE | ID: mdl-18523976

ABSTRACT

The (1)H and (13)C NMR resonances of 22 1-alkyl-pyrazole and 25 1-alkyl-pyrazoline derivatives were assigned completely using the concerted application of one- and two-dimensional experiments (DEPT, gs-HMQC and gs-HMBC). Nuclear Overhauser enhancement (NOE) effects, conformational analysis and X-ray crystallography confirm the preferred conformation of those compounds.


Subject(s)
Magnetic Resonance Spectroscopy/methods , Magnetic Resonance Spectroscopy/standards , Pyrazoles/chemistry , Carbon Isotopes , Crystallography, X-Ray , Models, Molecular , Molecular Conformation , Protons , Pyrazoles/chemical synthesis , Reference Standards , Stereoisomerism
14.
Eur J Med Chem ; 43(11): 2579-91, 2008 Nov.
Article in English | MEDLINE | ID: mdl-18325637

ABSTRACT

We have previously described a series of 4,5-dihydro-1H-pyrazole as moderately potent nNOS inhibitors. As a follow up of these studies, we report here the preparation and the preliminary evaluation of a series of 1-alkyl-3-benzoyl-4,5-dihydro-1H-pyrazole and 1-alkyl-3-benzoyl-1H-pyrazole as potential inhibitors of both neuronal and inducible nitric oxide synthases (nNOS and iNOS). None of the reported compounds exhibited significant iNOS or nNOS inhibition, although the 1-benzyl-3-(2-amino-5-chlorobenzoyl)-1H-pyrazole-5-carboxylic acid ethyl ester derivative (10l), which shows an inhibition of 50% versus iNOS at a 1mM final concentration and no activity against nNOS, is potentially amenable of further optimization. The reasons for the inactivity of the reported series are discussed on the basis of docking studies.


Subject(s)
Enzyme Inhibitors/chemical synthesis , Enzyme Inhibitors/pharmacology , Nitric Oxide Synthase Type II/antagonists & inhibitors , Nitric Oxide Synthase Type I/antagonists & inhibitors , Pyrazoles/chemical synthesis , Pyrazoles/pharmacology , Alkylation , Animals , Enzyme Inhibitors/chemistry , Male , Models, Molecular , Molecular Structure , Nitric Oxide Synthase Type I/metabolism , Nitric Oxide Synthase Type II/metabolism , Protein Binding , Pyrazoles/chemistry , Rats , Rats, Wistar , Structure-Activity Relationship
15.
J Med Chem ; 48(26): 8174-81, 2005 Dec 29.
Article in English | MEDLINE | ID: mdl-16366599

ABSTRACT

To find new compounds with potential neuroprotective activity, we have designed, synthesized, and characterized a series of neural nitric oxide synthase (nNOS) inhibitors with a kynurenamine structure. Among them, N-[3-(2-amino-5-methoxyphenyl)-3-oxopropyl]acetamide is the main melatonin metabolite in the brain and shows the highest activity in the series, with an inhibition percentage of 65% at a 1 mM concentration. The structure-activity relationship of the new series partially reflects that of the previously reported 2-acylamido-4-(2-amino-5-methoxyphenyl)-4-oxobutyric acids, endowed with a kynurenine-like structure. Structural comparisons between these new kinurenamine derivatives, kynurenines, and 1-acyl-3-(2-amino-5-methoxyphenyl)-4,5-dihydro-1H-pyrazole derivatives also reported confirm our previous model for the nNOS inhibition.


Subject(s)
Kynuramine/analogs & derivatives , Kynuramine/pharmacology , Nitric Oxide Synthase Type I/antagonists & inhibitors , Animals , Corpus Striatum/drug effects , Corpus Striatum/enzymology , Enzyme Inhibitors/chemical synthesis , Enzyme Inhibitors/pharmacology , Kynuramine/chemical synthesis , Kynurenine 3-Monooxygenase/antagonists & inhibitors , Molecular Conformation , Rats
16.
J Med Chem ; 47(23): 5641-50, 2004 Nov 04.
Article in English | MEDLINE | ID: mdl-15509163

ABSTRACT

In an attempt to find new compounds with neuroprotective activity, we have designed, synthesized and characterized 19 new nNOS inhibitors with a 4,5-dihydro-1H-pyrazole structure. Compounds 11r [1-cyclopropanecarbonyl-3-(2-amino-5-chlorophenyl)-4,5-dihydro-1H-pyrazole] and 11e [1-cyclopropanecarbonyl-3-(2-amino-5-methoxyphenyl)- 4,5-dihydro-1H-pyrazole] show the highest activities with inhibition percentages of 70% and 62%, respectively. A structure-activity relationship for the nNOS inhibition can be established from the structural comparison of these new pyrazole derivatives and the described synthetic kynurenines 10.


Subject(s)
Aniline Compounds/chemical synthesis , Corpus Striatum/drug effects , Nitric Oxide Synthase/antagonists & inhibitors , Pyrazoles/chemical synthesis , Aniline Compounds/chemistry , Aniline Compounds/pharmacology , Animals , Corpus Striatum/enzymology , In Vitro Techniques , Kynurenine/analogs & derivatives , Kynurenine/chemistry , Kynurenine/pharmacology , Models, Molecular , Molecular Conformation , Nitric Oxide Synthase Type I , Pyrazoles/chemistry , Pyrazoles/pharmacology , Rats , Structure-Activity Relationship
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