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Accumulating evidence shows that urinary volatile organic compounds (VOCs) could be perturbed in many physiological and pathological states, including several diseases and different dietary exposures. Few studies investigated the urinary metabolic signature associated to excess body weight and obesity in adult populations, while a different VOCs profile was found in exhaled breath in obese as compared to lean children. Aim of this study was to evaluate the VOCs profile in the urine of 21 overweight/obese (OW/Ob) and 28 normal-weight (NW) children belonging to the Italian cohort of the I. Family study. Urine samples were analysed by Solid Phase Micro-Extraction (SPME) GC-MS under both acidic and alkaline conditions, in order to profile a wider range of urinary volatiles with different physicochemical properties. Multivariate statistics techniques were applied to bioanalytical data to visualize clusters of cases and detect the VOCs able to differentiate OW/Ob from NW children. Under alkaline conditions, fourteen VOCs were identified, distinguishing OW/Ob from NW children. Our results suggest that VOCs signatures differ between OW/Ob and NW children. However, the biological and pathophysiological meaning of the observed differences needs to be elucidated, in order to better understand the potential of urinary VOCs as early metabolic biomarkers of obesity.

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Reference:
Isoxazole – Wikipedia,
Isoxazole | C3H3NO – PubChem

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This chapter reviews gold-catalyzed inter- A nd intramolecular oxidative reactions of alkynes proceeding through alpha-oxo gold(I) carbenes or related intermediates. Oxidative reactions of enynes and applications of gold-catalyzed oxidative reactions in total synthesis are also covered.

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Reference:
Isoxazole – Wikipedia,
Isoxazole | C3H3NO – PubChem

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Novel strategies are needed to modulate beta-cell differentiation and function as potential beta-cell replacement or restorative therapies for diabetes. We previously demonstrated that small molecules based on the isoxazole scaffold drive neuroendocrine phenotypes. The nature of the effects of isoxazole compounds on beta-cells was incompletely defined. We find that isoxazole induces genes that support neuroendocrine and beta-cell phenotypes and suppresses genes important for proliferation. Isoxazole alters beta-cell metabolites and protects glucose-responsive signaling pathways under lipotoxic conditions. Finally, we show that isoxazole improves glycemia in a mouse model of beta-cell regeneration. Isoxazole is a prime candidate to alter cell fate in different contexts.

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Reference:
Isoxazole – Wikipedia,
Isoxazole | C3H3NO – PubChem

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288-14-2, Name is Isoxazole, belongs to isoxazole compound, is a common compound. COA of Formula: C3H3NOIn an article, once mentioned the new application about 288-14-2.

Sulfur (SVI) based moieties, especially, the sulfonyl or sulfonamide based analogues have showed a variety of pharmacological properties, and its derivatives propose a high degree of structural diversity that has established useful for the finding of new therapeutic agents. The developments of new less toxic, low cost and highly active sulfonamides containing analogues are hot research topics in medicinal chemistry. Currently, more than 150 FDA approved Sulfur (SVI)-based drugs are available in the market, and they are widely used to treat various types of diseases with therapeutic power. This comprehensive review highlights the recent developments of sulfonyl or sulfonamides based compounds in huge range of therapeutic applications such as antimicrobial, anti-inflammatory, antiviral, anticonvulsant, antitubercular, antidiabetic, antileishmanial, carbonic anhydrase, antimalarial, anticancer and other medicinal agents. We believe that, this review article is useful to inspire new ideas for structural design and developments of less toxic and powerful Sulfur (SVI) based drugs against the numerous death-causing diseases.

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Isoxazole – Wikipedia,
Isoxazole | C3H3NO – PubChem

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The purpose of this study was to investigate pesticide residues in fruits and vegetables from the Aegean region of Turkey. A total of 1423 samples of fresh fruit and vegetables were collected from 2010 to 2012. The samples were analysed to determine the concentrations of 186 pesticide residues. The analyses utilized ultrahigh performance liquid chromatography coupled with tandem mass spectrometry (UPLC/MS/MS) and gas chromatography with an electron capture detector (GC-ECD) confirmed by gas chromatography with mass spectrometry (GC-MS) after a multi-residue extraction procedure (the QuEChERS method). The results were evaluated according to maximum residue limits (MRLs) for each commodity and pesticide by Turkish Regulation. All pomegranate, cauliflower and cabbage samples were pesticides-free. A total of 754 samples contained detectable residues at or below MRLs, and 48 (8.4%) of the fruit samples and 83 (9.8%) of the vegetable samples contained pesticide residues above MRLs. MRL values were most often exceeded in arugula, cucumber, lemon, and grape commodities. All detected pesticides in apricot, carrot, kiwifruit and leek were below the MRLs. Acetamiprid, chlorpyriphos and carbendazim were the most detected pesticide residues.

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Reference:
Isoxazole – Wikipedia,
Isoxazole | C3H3NO – PubChem

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Aim: New triazolotetrahydrobenzothienopyrimidinone derivatives were synthesized. Experimental: Their structures were confirmed, and their anti-inflammatory, antimicrobial activities and ulcerogenic potentials were evaluated. Results: Compounds 7a, 10a and 11a showed minimal ulcerogenic effect and high selectivity toward human recombinant COX-2 over COX-1 enzyme with IC50 values of 1.39, 1.22 and 0.56 muM, respectively. Their docking outcome correlated with their biological activity and confirmed the high selectivity binding toward COX-2. Compound 12b displayed antimicrobial activity comparable to that of ampicillin against Escherichia coli while compounds 6 and 11c were similar to ampicillin against Staphylococcus aureus. In addition, compounds 7a, 9a, 10b and 11c showed dual anti-inflammatory/antimicrobial activities. Conclusion: This work represents a promising matrix for developing new potential anti-inflammatory, antimicrobial and dual antimicrobial/anti-inflammatory candidates. Quality Control of Isoxazole

Reference:
Isoxazole – Wikipedia,
Isoxazole | C3H3NO – PubChem

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Novel isoxazoline derivatives were synthesized by condensation of substituted acetophenones with aldehyde in presence of alcoholic NaOH to get intermediate chalcones, which were further treated with hydroxylamine hydrochloride in presence of sodium hydroxide to get isoxazoline derivatives. The latter were refluxed separately with isonicotinic acid hydrazide and sulphanilamide in presence of formaldehyde for 6-10 h to afford corresponding Mannich bases. The structures of synthesized compounds were established on the basis of melting point, TLC, IR,1H NMR and HRMS. Antimycobacterial activity of compounds (3a-j) were assessed against M. tuberculosis (vaccine strain, H37 Rv strain) ATCC27294 using microplate Alamar Blue assay (MABA). Further the derivatives were evaluated for the antibacterial activity against Gram positive bacteria S. aureus (ATCC 9144), S. epidemidis (ATCC12228) and Gram negative bacteria E. coli (ATCC 25922), Klebsiella (ATCC 4352), while antifungal activity against A. flavus (ATCC 9643) and A. niger (ATCC 16404) by using agar well diffusion method using ciprofloxacin and fluconazole as standards, respectively. The results of antimicrobial studies showed that some of the derivatives posses mild to moderate biological activity as compared to standard.

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Isoxazole – Wikipedia,
Isoxazole | C3H3NO – PubChem

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A straightforward, simple and unprecedented transformative protocol has been accomplished towards furnishing a wide variety of pharmaceutically promising functionalised 3-methyl-4-(hetero)arylmethylene isoxazole-5(4H)-ones and 6-Amino-3-methyl-4-phenyl-1,4-[2,3-c]pyrazole-5-carbonitriles. Sulfonated graphene oxide (SGO), a new class of heterogeneous carbocatalyst, was found to be efficient for thisone pot rapid conversion of isoxazoles and pyranopyrazoles from aldehyde. The prepared SGO was characterised by FEG-SEM, HR-TEM, FTIR and was recyclable up to 5th run without a significant drop in its catalytic activity. Metal free synthesis, good to excellent yield, high atom economy, usage of readily available starting material, operational simplicity, easy workup, and recyclable catalyst are the fundamental features of this protocol.

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Reference:
Isoxazole – Wikipedia,
Isoxazole | C3H3NO – PubChem

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Background: Neglected tropical diseases are a group of infections caused by mi-croorganisms and viruses that affect mainly poor regions of the world. In addition, most available drugs are associated with long periods of treatment and high toxicity which limits the application and patient compliance. Investment in research and development is not seen as an attractive deal by the pharmaceutical industry since the final product must ideally be cheap, not returning the amount invested. Natural products have always been an important source for bioactive compounds and are advantageous over synthetic compounds when considering the unique structural variety and biological activities. On the other hand, isolation difficulties and low yields, environmental impact and high cost usually limit their application as drug per se. Objective: In this review, the use of natural products as prototypes for the semi-synthesis or total synthesis, as well as natural products as promising hits is covered, specifically regarding compounds with activities against trypanosomatids such as Trypanosoma spp. and Leishmania spp. Methods: Selected reports from literature with this approach were retrieved. Conclusion: As summary, it can be concluded that natural products are an underestimated source for designing novel agents against these parasites.

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Reference:
Isoxazole – Wikipedia,
Isoxazole | C3H3NO – PubChem

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A series of 2?-heteroaryl and 2?-oxime anilinomethylimidazolines was prepared and evaluated in in vitro functional assays for cloned human alpha1A, alpha1B, and alpha1D receptor subtypes. Potent and selective alpha1A agonists have been identified in these series.

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Reference:
Isoxazole – Wikipedia,
Isoxazole | C3H3NO – PubChem