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The preparation of ester heterocycles mostly uses heteroatoms as nucleophilic sites, which are achieved by intramolecular substitution or addition reactions. Compound: 1-(2,4-Difluorophenyl)-2-(1H-1,2,4-triazol-1-yl)ethanone( cas:86404-63-9 ) is researched.SDS of cas: 86404-63-9.Hashemi, Seyedeh Mahdieh; Badali, Hamid; Faramarzi, Mohammad Ali; Samadi, Nasrin; Afsarian, Mohammad Hosein; Irannejad, Hamid; Emami, Saeed published the article 《Novel triazole alcohol antifungals derived from fluconazole: design, synthesis, and biological activity》 about this compound( cas:86404-63-9 ) in Molecular Diversity. Keywords: triazole alc antifungal fluconazole design synthesis biol activity. Let’s learn more about this compound (cas:86404-63-9).

A series of new triazole alc. antifungals were designed by replacing one of the triazolyl moiety from fluconazole with a distinct 4-amino-3-mercapto-1,2,4-triazole motif, which is found in some antimicrobial agents. The antimicrobial susceptibility testing of target compounds demonstrated that the direct analogs of fluconazole (difluorophenethyl-triazoles) were less active against fungi, while compound 10h containing dichloro substitutions on both Ph rings of the mol. had potent activity against yeasts including Candida albicans (four strains) and Cryptococcus neoformans (MICs = 2-8 μg/mL). Also, compound 10h was active against Candida parapsilosis, Epidermophyton floccosum, and Trichophyton mentagrophytes, while it showed no activity against Gram-pos. and Gram-neg. bacteria. Finally, a mol. docking study suggested that compound 10h interacts suitably with lanosterol 14α-demethylase, which is the key enzyme in ergosterol biosynthesis.

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Heterocyclic compounds can be divided into two categories: alicyclic heterocycles and aromatic heterocycles. Compounds whose heterocycles in the molecular skeleton cannot reflect aromaticity are called alicyclic heterocyclic compounds. Compound: 86404-63-9, is researched, Molecular C10H7F2N3O, about New azoles with potent antifungal activity: Design, synthesis and molecular docking, the main research direction is azole preparation antifungal activity; triazole preparation antifungal activity.Category: triazoles.

In response to the urgent need for novel antifungal agents with improved activity and broader spectrum, computer modeling was used for rational design of novel antifungal azoles. On the basis of the active site of lanosterol 14α-demethylase from Candida albicans (CACYP51), a series of new azoles with substituted-phenoxypropyl piperazine side chains were rationally designed and synthesized. In vitro antifungal activity assay indicates that the new azoles show good activity against most of the tested pathogenic fungi. Interestingly, the designed compounds are also active against an azole-resistant clin. strain. Compared to fluconazole and itraconazole, several compounds (such as I) show higher antifungal activity and a broader spectrum, which are promising leads for the development of novel antifungal agents.

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Quality Control of 1-(2,4-Difluorophenyl)-2-(1H-1,2,4-triazol-1-yl)ethanone. Aromatic heterocyclic compounds can also be classified according to the number of heteroatoms contained in the heterocycle: single heteroatom, two heteroatoms, three heteroatoms and four heteroatoms. Compound: 1-(2,4-Difluorophenyl)-2-(1H-1,2,4-triazol-1-yl)ethanone, is researched, Molecular C10H7F2N3O, CAS is 86404-63-9, about Fluconazole analogues containing 2H-1,4-benzothiazin-3(4H)-one or 2H-1,4-benzoxazin-3(4H)-one moieties, a novel class of anti-Candida agents. Author is Borate, Hanumant B.; Maujan, Suleman R.; Sawargave, Sangmeshwer P.; Chandavarkar, Mohan A.; Vaiude, Sharangi R.; Joshi, Vinay A.; Wakharkar, Radhika D.; Iyer, Ramki; Kelkar, Ramesh G.; Chavan, Subhash P.; Kunte, Sunita S..

A series of fluconazole analogs was designed and synthesized wherein one of the triazole moieties in fluconazole was replaced with 2H-1,4-benzothiazin-3(4H)-one or 2H-1,4-benzoxazin-3(4H)-one moiety, e.g., I (R1 = H, R2 = Br, R3 = 7-MeO, X = S). The new chem. entities thus synthesized were screened against various fungi and it was observed that compounds I (R1 = R2 = F, R3 = H, X = O, S) were potent inhibitors of Candida strains. The structure-activity relationship for these compounds was discussed.

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HPLC of Formula: 86404-63-9. Aromatic heterocyclic compounds can also be classified according to the number of heteroatoms contained in the heterocycle: single heteroatom, two heteroatoms, three heteroatoms and four heteroatoms. Compound: 1-(2,4-Difluorophenyl)-2-(1H-1,2,4-triazol-1-yl)ethanone, is researched, Molecular C10H7F2N3O, CAS is 86404-63-9, about Design and synthesis of novel triazole antifungal derivatives by structure-based bioisosterism. Author is Sheng, Chunquan; Che, Xiaoying; Wang, Wenya; Wang, Shengzheng; Cao, Yongbing; Miao, Zhenyuan; Yao, Jianzhong; Zhang, Wannian.

The incidence of life-threatening fungal infections is increasing dramatically. In an attempt to develop novel antifungal agents, our previously synthesized phenoxyalkylpiperazine triazole derivatives were used as lead structures for further optimization. By means of structure-based bioisosterism, triazolone was used as a new bioisostere of oxygen atom. This type of bioisosteric replacement can improve the water solubility without loss of hydrogen-bonding interaction with the target enzyme. A series of triazolone-containing triazoles were rationally designed and synthesized. As compared with fluconazole, several compounds showed higher antifungal activity with broader spectrum, suggesting their potential for further evaluations.

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The three-dimensional configuration of the ester heterocycle is basically the same as that of the carbocycle. Compound: 1-(2,4-Difluorophenyl)-2-(1H-1,2,4-triazol-1-yl)ethanone(SMILESS: FC1=CC=C(C(CN2N=CN=C2)=O)C(F)=C1,cas:86404-63-9) is researched.Name: 5-Methoxy-1H-indole-2-carbaldehyde. The article 《Structure-Based Optimization of Azole Antifungal Agents by CoMFA, CoMSIA, and Molecular Docking》 in relation to this compound, is published in Journal of Medicinal Chemistry. Let’s take a look at the latest research on this compound (cas:86404-63-9).

In a continuing effort to develop highly potent azole antifungal agents, the three-dimensional quant. structure-activity relationship methods, CoMFA and CoMSIA, were applied using a set of novel azole antifungal compounds The binding mode of the compounds at the active site of lanosterol 14α-demethylase was further explored using the flexible docking method. Various hydrophobic, van der Waals, π-π stacking, and hydrogen bonding interactions were observed between the azoles and the enzyme. Based on results from the mol. modeling, a receptor-based pharmacophore model was established to guide the rational optimization of the azole antifungal agents. Thus, a total of 57 novel azoles were designed and synthesized by a three-step optimization process. In vitro antifungal assay revealed that the antifungal activities of these novel azoles were greatly improved, which confirmed the reliability of the model from mol. modeling.

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Most of the compounds have physiologically active properties, and their biological properties are often attributed to the heteroatoms contained in their molecules, and most of these heteroatoms also appear in cyclic structures. A Journal, Article, Acta Crystallographica, Section E: Structure Reports Online called (2,4-Difluorophenyl)[1-(1H-1,2,4-triazol-1-yl)cyclopropyl]methanone, Author is Wu, Chunli; Lei, Wei; Ma, Huiyan; Qiao, Jiabin; Li, Aixing, which mentions a compound: 86404-63-9, SMILESS is FC1=CC=C(C(CN2N=CN=C2)=O)C(F)=C1, Molecular C10H7F2N3O, HPLC of Formula: 86404-63-9.

The asym. unit of the title compound, C12H9F2N3O, contains two independent mols. (A and B) in which the benzene and cyclopropane rings form dihedral angles of 33.0(1) and 29.7(1)°, resp. In the crystal, weak intermol. C-H···O hydrogen bonds link alternating A and B mols. into chains along [010].

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Most of the natural products isolated at present are heterocyclic compounds, so heterocyclic compounds occupy an important position in the research of organic chemistry. A compound: 86404-63-9, is researched, SMILESS is FC1=CC=C(C(CN2N=CN=C2)=O)C(F)=C1, Molecular C10H7F2N3OJournal, Article, Research Support, Non-U.S. Gov’t, Journal of Medicinal Chemistry called Structure-Based Optimization of Azole Antifungal Agents by CoMFA, CoMSIA, and Molecular Docking, Author is Sheng, Chunquan; Zhang, Wannian; Ji, Haitao; Zhang, Min; Song, Yunlong; Xu, Hui; Zhu, Jie; Miao, Zhenyuan; Jiang, Qingfen; Yao, Jianzhong; Zhou, Youjun; Zhu, Jue; Lue, Jiaguo, the main research direction is antifungal agent CoMFA pharmacophore preparation SAR mol modeling.Category: triazoles.

In a continuing effort to develop highly potent azole antifungal agents, the three-dimensional quant. structure-activity relationship methods, CoMFA and CoMSIA, were applied using a set of novel azole antifungal compounds The binding mode of the compounds at the active site of lanosterol 14α-demethylase was further explored using the flexible docking method. Various hydrophobic, van der Waals, π-π stacking, and hydrogen bonding interactions were observed between the azoles and the enzyme. Based on results from the mol. modeling, a receptor-based pharmacophore model was established to guide the rational optimization of the azole antifungal agents. Thus, a total of 57 novel azoles were designed and synthesized by a three-step optimization process. In vitro antifungal assay revealed that the antifungal activities of these novel azoles were greatly improved, which confirmed the reliability of the model from mol. modeling.

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The preparation of ester heterocycles mostly uses heteroatoms as nucleophilic sites, which are achieved by intramolecular substitution or addition reactions. Compound: 1-(2,4-Difluorophenyl)-2-(1H-1,2,4-triazol-1-yl)ethanone( cas:86404-63-9 ) is researched.Related Products of 86404-63-9.Ramesh, B.; Narayana, P. Sreeman; Reddy, A. Shiva; Devi, P. Sita published the article 《Spectrodensitometric evaluation and determination of fluconazole and its impurities in pharmaceutical formulations by high performance thin layer chromatography》 about this compound( cas:86404-63-9 ) in Journal of Pharmacy Research. Keywords: fluconazole impurity determination densitometry HPTLC. Let’s learn more about this compound (cas:86404-63-9).

A quant. densitometric HPTLC method was developed and validated for the determination of fluconazole and its structurally related impurities. The separations were accomplished on silica gel 60 F254 plates using a saturated mixture of butanol: water: acetic acid (8:2:1 volume/volume). UV light facilitated the visualization of the active drug substance fluconazole and impurity-e while impurity-b was visible only when exposed to iodine vapors, as dark brown chromatog. zone. Densitometric quantification was performed at λ = 254nm by reflecting scanning and fluconazole (Rr 0.67 ± 0.02) resolved well from the 2 impurities. The standard fluconazole curve is linear (r = > 0.9995) over a concentration range of 1-6 μg/spot. Recovery from tablet formulation was statistically equal to 100%. The limits of detection and quantification were 0.031 and 0.098 μg/spot resp. The precision of the method with respect to concentration is acceptable with a relative standard deviation of 2%. The proposed method is specific for fluconazole in the presence of its structurally related impurities and proved to be a valuable complimentary method for impurity profiling and quality control.

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Heterocyclic compounds can be divided into two categories: alicyclic heterocycles and aromatic heterocycles. Compounds whose heterocycles in the molecular skeleton cannot reflect aromaticity are called alicyclic heterocyclic compounds. Compound: 86404-63-9, is researched, Molecular C10H7F2N3O, about Studies on synthesis, structure and biological activities of novel triazole compounds containing thioamide, the main research direction is triazole thioamide preparation triazole isothiocyanate aryl ketone; benzoyl triazole ethanethioamide preparation agrochem fungicide.Quality Control of 1-(2,4-Difluorophenyl)-2-(1H-1,2,4-triazol-1-yl)ethanone.

Four novel triazole compounds containing thioamide group were designed and synthesized by using triazole, Ph isothiocyanate and aryl Et ketones as starting materials. The desired intermediates were thus derivatives of α-(1H-1,2,4-triazol-1-yl)methyl ketones. Their structures were confirmed by elemental anal., 1H NMR, IR and MS spectra. The crystal structure of 1-[1-[(anilino)thiocarbonyl]-1-(4-fluorobenzoyl)methyl]-1,2,4-triazole [also, i.e., α-(fluorobenzoyl)-N-phenyl-1,2,4-triazole-1-ethanethioamide] has been determined by X-ray diffraction anal. The preliminary bioassays have shown that the title compounds exhibit certain antifungal activity.

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In organic chemistry, atoms other than carbon and hydrogen are generally referred to as heteroatoms. The most common heteroatoms are nitrogen, oxygen and sulfur. Now I present to you an article called Structure-based rational design, synthesis and antifungal activity of oxime-containing azole derivatives, published in 2010-05-01, which mentions a compound: 86404-63-9, mainly applied to triazolylpropanol piperidinone oxime ether containing derivative preparation antifungal activity; mol docking CACYP51 triazolylpropanol piperidinone oxime ether containing derivative, Related Products of 86404-63-9.

In an attempt to find novel azole antifungal agents with improved activity and broader spectrum, computer modeling was used to design a series of new azoles with piperidin-4-one O-substituted oxime side chains. Mol. docking studies revealed that they formed hydrophobic and hydrogen-bonding interactions with lanosterol 14α-demethylase of Candida albicans (CACYP51). In vitro antifungal assay indicates that most of the synthesized compounds showed good activity against tested fungal pathogens. In comparison with fluconazole, itraconazole and voriconazole, several compounds (such as I, R = H, 3-Cl, 2-F) show more potent antifungal activity and broader spectrum, suggesting that they are promising leads for the development of novel antifungal agents.

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