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Detoxification and degradation of sulfamethoxazole by soybean peroxidase and UV?+?H2O2 remediation approaches

Development of efficient methods for the degradation of emerging pollutants such as pharmaceuticals and pesticides are being recognized as a research priority as more and more of these organic pollutants are being detected in our water bodies. In this work, the degradation of the emerging pollutant sulfamethoxazole (SMX) was carried out using a soybean peroxidase (SBP) enzyme system and an advanced oxidation process (UV + H2O2). The optimized conditions for sulfamethoxazole degradation by the peroxidase enzyme showed an absolute requirement for a redox mediator (1-hydroxybenzotriazole) and low pH. The other conditions for an efficient degradation were as follows: [H2O2] = 56 muM, [SBP] = 78 nM and [SMX] = 5 ppm. The degradation of the pollutant was followed using UV?Vis spectrophotometry and liquid chromatography?mass spectroscopy (LC?MS). The formed products were identified using liquid chromatography?tandem mass spectrometry. The two remediation methods, an enzymatic approach using SBP + H2O2, and the photolytic technique using UV + H2O2, generated diverse sets of intermediates, suggesting that different degradation routes were at work in the two systems. Phytotoxicity studies carried out using Lactuca sativa (lettuce) showed different levels of detoxification of the SMX pollutant after the two different remediation treatments.

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Reference£º
Isoxazole – Wikipedia,
Isoxazole | C3H3NO – PubChem

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Degradation mechanisms of sulfamethoxazole and its induction of bacterial community changes and antibiotic resistance genes in a microbial fuel cell

In this study, more than 85.1% of sulfamethoxazole (SMX) could be degraded within 60 h. The strengthening of microbial metabolisms and the sustainment of electrical stimulation contributed to the rapid removal of SMX in microbial fuel cells (MFCs). High-performance liquid chromatography identified that SMX could be thoroughly degraded into less harmful alcohols and methane after the MFC processing. In addition, the major role of Shewanella sp. and Geobacteria sp. in power generation, and the promotion of Alcaligenes, Pseudomonas and Achromobacter in SMX degradation have been demonstrated. Moreover, this study further proved that the copy numbers of targeted antibiotic resistance genes and integrons produced in MFCs were much lower than those found in conventional wastewater treatment plants; MFCs seem to be a promising alternative to reduce antibiotics in wastewater treatment and water purification.

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Reference£º
Isoxazole – Wikipedia,
Isoxazole | C3H3NO – PubChem

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Synthetic Route of 1072-67-9, Chemistry is the science of change. But why do chemical reactions take place? Why do chemicals react with each other? The answer is in thermodynamics and kinetics.In a document type is Patent, and a compound is mentioned, 1072-67-9, 5-Methylisoxazol-3-amine, introducing its new discovery.

IDO INHIBITORS

There are disclosed compounds that modulate or inhibit the enzymatic activity of indoleamine 2,3-dioxygenase (IDO), pharmaceutical compositions containing said compounds and methods of treating proliferative disorders, such as cancer, viral infections and/or inflammatory disorders utilizing the compounds of the invention.

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Reference£º
Isoxazole – Wikipedia,
Isoxazole | C3H3NO – PubChem

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Development and Validation of Quantum Mechanically Derived Force-Fields: Thermodynamic, Structural, and Vibrational Properties of Aromatic Heterocycles

A selection of several aromatic molecules, representative of the important class of heterocyclic compounds, has been considered for testing and validating an automated Force Field (FF) parametrization protocol, based only on Quantum Mechanical data. The parametrization is carried out separately for the intra- and intermolecular contributions, employing respectively the Joyce and Picky software packages, previously implemented and refined in our research group. The whole approach is here automated and integrated with a computationally effective yet accurate method, devised very recently (J. Chem. Theory. Comput., 2018, 14, 543-556) to evaluate a large number of dimer interaction energies. The resulting quantum mechanically derived FFs are then used in extensive molecular dynamics simulations, in order to evaluate a number of thermodynamic, structural, and dynamic properties of the heterocycle’s gas and liquid phases. The comparison with the available experimental data is good and furnishes a validation of the presented approach, which can be confidently exploited for the design of novel and more complex materials.

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Reference£º
Isoxazole – Wikipedia,
Isoxazole | C3H3NO – PubChem

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A non-target approach to identify disinfection byproducts of structurally similar sulfonamide antibiotics

There is growing concern over the formation of new types of disinfection byproducts (DBPs) from pharmaceuticals and other emerging contaminants during drinking water production. Free chlorine is a widely used disinfectant that reacts non-selectively with organic molecules to form a variety of byproducts. In this research, we aimed to investigate the DBPs formed from three structurally similar sulfonamide antibiotics (sulfamethoxazole, sulfathiazole, and sulfadimethoxine) to determine how chemical structure influences the types of chlorination reactions observed. We conducted free chlorination experiments and developed a non-target approach to extract masses from the experimental dataset that represent the masses of candidate DBPs. Structures were assigned to the candidate DBPs based on analytical data and knowledge of chlorine chemistry. Confidence levels were assigned to each proposed structure according to conventions in the field. In total, 11, 12, and 15 DBP structures were proposed for sulfamethoxazole, sulfathiazole, and sulfadimethoxine, respectively. The structures of the products suggest a variety of reaction types including chlorine substitution, S. C cleavage, S. N hydrolysis, desulfonation, oxidation/hydroxylation, and conjugation reactions. Some reaction types were common to all of the sulfonamide antibiotics, but unique reaction types were also observed for each sulfonamide antibiotic suggesting that selective prediction of DBP structures of other sulfonamide antibiotics based on chemical structure is unlikely to be possible based on these data alone. This research offers an approach to comprehensively identify DBPs of organic molecules and fills in much needed data on the formation of specific DBPs from three environmentally relevant sulfonamide antibiotics.

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Reference£º
Isoxazole – Wikipedia,
Isoxazole | C3H3NO – PubChem

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In silico virtual screening approaches for anti-viral drug discovery

Despite the considerable advances in medical and pharmaceutical research during the past years, diseases caused by viruses have remained a major burden to public health. Virtual in silico screening has repeatedly proven to be useful to meet the special challenges of antiviral drug discovery. Large virtual compound libraries are filtered by different computational screening methods such as docking, ligand-based similarity searches or pharmacophore-based screening, reducing the number of candidate molecules to a smaller set of promising candidates that are then tested biologically. This rational approach makes the drug discovery process more goal-oriented and saves resources in terms of time and money. In this review we discuss how different virtual screening techniques can be applied to antiviral drug discovery, present recent success stories in this field and finally address the main differences between the methods.

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Reference£º
Isoxazole – Wikipedia,
Isoxazole | C3H3NO – PubChem

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Phosphoramides bearing isoxazole derivative: Spectroscopic and structural characterization, study of hydrogen-bonding interactions and two lanthanide complexes (Ln III = Ce and Eu)

In this study, the synthesis and spectroscopic characterization of new phosphoramides based on 3-amino-5-methylisoxazole with the formula R 2P(O)[NH-C4H4NO], R = C6H5O (1), C6H5 (2), RP(O)[NH-C4H4NO]2, R = C6H5O (3), CH3-C6H4O (4), C6H5NH (5), (C6H5)ClP(O)[NH-C4H4NO] (6) and two lanthanide complexes [Ln(2)2(NO3)3(EtOH)]¡¤EtOH, LnIII = Ce (7) and Eu (8), have been reported. The structural study of (3) shows the presence of two conformers (crystallographically independent molecules) in the crystalline lattice, caused by different orientations of the phenyl and isoxazole rings. For (3), the intermolecular interactions have been studied by Hirshfeld surface analysis and fingerprint plots. Furthermore, the electronic and energy aspects of hydrogen bonds between molecules of (3) have been explored by density functional theory (DFT) calculations. X-ray crystallography of complexes (7) and (8) reveals that two phosphoramide ligands take part in coordination to the metal, one as monodentate from Ophosphoryl, and the other one as chelate through Ophosphoryl and Nring. The complexes are also composed of two conformers in the solid-state structure. Quantum theory of atoms in molecules (QTAIM) analysis discloses the electrostatic nature of the Ln-ligand interaction.

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Reference£º
Isoxazole – Wikipedia,
Isoxazole | C3H3NO – PubChem

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Transition metal-free: N -fluoroalkylation of amines using cyanurate activated fluoroalcohols

A novel and highly efficient method for N-fluoroalkylation of amines using 2,4,6-tris(fluoroalkoxy)-1,3,5-triazines was developed. This simple approach allowed the N-fluoroalkylation of amines under fast, mild and efficient reaction conditions, without using a transition metal as a catalyst.

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Isoxazole – Wikipedia,
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Phenazine – 1 – carboxylic acid amides and use thereof (by machine translation)

The present invention provides a phenazine – 1 – carboxylic acid amides and its application, belongs to the chemical field, the compounds of the general formula has the following structure: Wherein: C R is4 – C10 Alkyl, C3 – C10 Alkenyl, C3 – C10 Alkynyl, C3 – C10 Ester, amido, cyano, aldehyde, keto and containing one or more saturated or unsaturated alkyl, alkoxy, halogen, fluorine-containing methyl, nitro, cyano, ester, keto, aldehyde group substituted phenyl, substituted pyridyl, substituted furyl, substituted pyrazolyl, substituted thiazolyl, substituted thienyl; R ‘ is hydrogen, methyl, ethyl, acetic acid ethoxycarbonyl; n is 0 – 10 of any value. This invention has a novel structure of phenazine – 1 – carboxylic acid amides, can be used for preventing the disease on the crops. (by machine translation)

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Reference£º
Isoxazole – Wikipedia,
Isoxazole | C3H3NO – PubChem

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Facile Synthesis, Structural Activity Relationship, Molecular Modeling and In Vitro Biological Evaluation of New Urea Derivatives with Incorporated Isoxazole and Thiazole Moieties as Anticancer Agents

A new series of isoxazolyl and thiazolyl urea derivatives was synthesized, fully characterized and evaluated in vitro as anticancer agents. The chemistry involves a facile protocol for the preparation of urea derivatives 12?22 through the reaction of isocyanates (p-tolylsulfonyl isocyanate, p-tolyl isocyanate, benzoyl isocyanate and ethylisocyanate) 8?11 with the corresponding aminoisoxazoles and aminothiazoles 2, 3, 6 and 7. The cytotoxicity of the synthesized compounds 12?22 were evaluated using human lung adenocarcinoma cell line (A549), cervical cancer cell line (HeLa), and breast cancer cell line (MCF7). All novel compounds (except compounds 12, 17, and 18) were potential cytotoxic against lung cancer as it displayed IC50s less than the reference drug (5-Fluro uracil (5FU)). All tested compounds (except 15 and 19) showed strong inhibition of breast cancer cell line even much better than the 5FU. The tested compounds were less cytotoxic against cervical cancer except compounds 16, 19, 20, and 21. The molecular docking studies of the synthesized compounds against the three different proteins Janus kinase 2 (JAK2), cyclin dependent kinase-2 (CDK2), and B-cell lymphoma-2 (BCL2) that are major proteins involved in pathogenesis of cancer were discussed. The molecular-docking analyses revealed that compounds 13, 14 and 20 were the best docked ligand compared to reference docked ligands against the tested targeted proteins. In conclusion, the urea derivatives 13 and 14 were the most promising compounds with lowest IC50s against the tested cancer cell lines, and they displayed the lowest binding energies, critical hydrogen bonds and hydrophobic interactions with the molecular targets compared to other tested compounds.

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Reference£º
Isoxazole – Wikipedia,
Isoxazole | C3H3NO – PubChem