A new application about 56621-48-8

Here is just a brief introduction to this compound(56621-48-8)Recommanded Product: 4-(Piperazin-1-yl)phenol, more information about the compound(4-(Piperazin-1-yl)phenol) is in the article, you can click the link below.

Recommanded Product: 4-(Piperazin-1-yl)phenol. The protonation of heteroatoms in aromatic heterocycles can be divided into two categories: lone pairs of electrons are in the aromatic ring conjugated system; and lone pairs of electrons do not participate. Compound: 4-(Piperazin-1-yl)phenol, is researched, Molecular C10H14N2O, CAS is 56621-48-8, about Targeting DNA Repair in Tumor Cells via Inhibition of ERCC1-XPF. Author is Elmenoufy, Ahmed H.; Gentile, Francesco; Jay, David; Karimi-Busheri, Feridoun; Yang, Xiaoyan; Soueidan, Olivier M.; Weilbeer, Claudia; Mani, Rajam S.; Barakat, Khaled H.; Tuszynski, Jack A.; Weinfeld, Michael; West, Frederick G..

The ERCC1-XPF heterodimer is a 5′-3′ structure-specific endonuclease, which plays an essential role in several DNA repair pathways in mammalian cells. ERCC1-XPF is primarily involved in the repair of chem. induced helix-distorting and bulky DNA lesions, such as cyclobutane pyrimidine dimers (CPDs), and DNA interstrand cross-links. Inhibition of ERCC1-XPF has been shown to potentiate cytotoxicity of platinum-based drugs and cyclophosphamide in cancer cells. In this study, the previously described ERCC1-XPF inhibitor 4-((6-chloro-2-methoxyacridin-9-yl)amino)-2-((4-methylpiperazin-1-yl)methyl)phenol (compound 1) was used as a reference compound Following the outcome of docking-based virtual screening (VS), we synthesized seven novel derivatives of 1 that were identified in silico as being likely to have high binding affinity for the ERCC1-XPF heterodimerization interface by interacting with the XPF double helix-hairpin-helix (HhH2) domain. Two of the new compounds, 4-((6-chloro-2-methoxyacridin-9-yl)amino)-2-((4-cyclohexylpiperazin-1-yl)methyl)phenol (compound 3) and 4-((6-chloro-2-methoxyacridin-9-yl)amino)-2-((4-(2-(dimethylamino)ethyl) piperazin-1-yl) methyl) phenol (compound 4), were shown to be potent inhibitors of ERCC1-XPF activity in vitro. Compound 4 showed significant inhibition of the removal of CPDs in UV-irradiated cells and the capacity to sensitize colorectal cancer cells to UV radiation and cyclophosphamide.

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Here is just a brief introduction to this compound(56621-48-8)COA of Formula: C10H14N2O, more information about the compound(4-(Piperazin-1-yl)phenol) is in the article, you can click the link below.

Epoxy compounds usually have stronger nucleophilic ability, because the alkyl group on the oxygen atom makes the bond angle smaller, which makes the lone pair of electrons react more dissimilarly with the electron-deficient system. Compound: 4-(Piperazin-1-yl)phenol, is researched, Molecular C10H14N2O, CAS is 56621-48-8, about New N,S-substituted dienes from mono(thio)substituted-2-nitrohalo-1,3-diene and some amines.COA of Formula: C10H14N2O.

1-(4-Methoxyphenylthio)-2-nitro-1,3,4,4-tetrachloro-1,3-butadiene, (I) reacted with piperazine derivatives and yielded N,S-substituted chloronitrodienes in methylene chloride. Compound I gave dioxaspiro-piperidinyl-substituted chloronitrodiene by the reaction with 1,4-dioxa-8-azaspiro-4,5-decane. 4-Substituted piperidinyl chloronitrodiene derivatives were obtained by the reactions of piperidines with I. 1-(4-Methoxyphenylthio)-2-nitro-1-(4-(p-nitrophenyl)piperazin-1-yl)-1,3,4,4-tetrachloro-1,3-butadiene also was structurally characterized using single-crystal X-ray diffraction anal. [triclinic, P-1, a 7.8400(2), b 9.7030(3), c 16.9628(4) Å, α 93.898(3), β 93.879(2), γ 96.9296(13)°, V 1260.67(6) Å3, Z 2].

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Here is just a brief introduction to this compound(118430-78-7)Electric Literature of C8H9N3S, more information about the compound(1-Methyl-3-(thiophen-2-yl)-1H-pyrazol-5-amine) is in the article, you can click the link below.

So far, in addition to halogen atoms, other non-metallic atoms can become part of the aromatic heterocycle, and the target ring system is still aromatic.Jiang, Bo; Fan, Wei; Sun, Mu-Yan; Ye, Qin; Wang, Shu-Liang; Tu, Shu-Jiang; Li, Guigen researched the compound: 1-Methyl-3-(thiophen-2-yl)-1H-pyrazol-5-amine( cas:118430-78-7 ).Electric Literature of C8H9N3S.They published the article 《Domino Reaction of Arylglyoxals with Pyrazol-5-amines: Selective Access to Pyrazolo-Fused 1,7-Naphthyridines, 1,3-Diazocanes, and Pyrroles》 about this compound( cas:118430-78-7 ) in Journal of Organic Chemistry. Keywords: domino heterocyclization arylglyoxal pyrazolamine pyrazolo naphthyridine diazocane pyrrole. We’ll tell you more about this compound (cas:118430-78-7).

New multicomponent domino reactions of arylglyoxals with pyrazol-5-amines have been established, providing selective access to unprecedented pyrazolo-fused 1,7-naphthyridines, 1,3-diazocanes, and pyrroles (up to 52 examples). The unreported dipyrazolo-fused 1,7-naphthyridines were regioselectively synthesized through a special double [3 + 2 + 1] heteroannulation accompanied by direct C-C formation between two electrophilic sites of arylglyoxals [e.g., PhCOCH(OH)2 + 1,3-dimethyl-5-pyrazolamine in presence of TsOH → I (70%)]. The unusual [3 + 3 + 1 + 1] cyclization resulted in 20 examples of novel dipyrazolo-fused 1,3-diazocanes [e.g., PhCOCH(OH)2 + 1-methyl-3-phenyl-5-pyrazolamine in presence of TsOH → II (71%)], whereas pyrrolo[2,3-c]pyrazoles were obtained in good yields by varying arylglyoxals and pyrazol-5-amines in the ratio 1:2 [e.g., PhCOCH(OH)2 + 1-phenyl-3-methyl-5-pyrazolamine in presence of TsOH → III (78%)]. Mechanisms of formation of these three new types of heterocycles are also proposed.

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Application In Synthesis of 4-(Piperazin-1-yl)phenol. The mechanism of aromatic electrophilic substitution of aromatic heterocycles is consistent with that of benzene. Compound: 4-(Piperazin-1-yl)phenol, is researched, Molecular C10H14N2O, CAS is 56621-48-8, about Novel N,S- and S,S-substituted dienes synthesized from mercapto triazole and some amine derivatives. Author is Ibis, Cemil; Aydinli, Goeksin.

2-Nitro diene Cl2C:CClC(NO2):CCl2 reacted with 3-mercapto-1,2,4-triazole (I) and cyclohexanethiol to yield the resp. dithioacetals Cl2C:CClC(NO2):C(SR)R1 (II; R = 1,2,4-triazol-3-yl, cyclohexyl; R1 = SR). Dithioacetals II (R = 1,2,4-triazol-3-yl; R1 = octylthio, decylthio, hexdecylthio, cyclohexylthio) were obtained by reactions of appropriate vinyl sulfides with I. Novel N,S-substituted dienes were obtained by treatment of II [R = decyl, R1 = Cl (III)] with piperazines. Compound III was reacted with N-(2-aminoethyl)morpholine to give the corresponding N,S-substituted diene. Compound III gave a new N-butadienylhomopiperazine on reaction with homopiperazine in CH2Cl2. Compound II (R = cyclohexyl, R1 = cyclohexylthio) was characterized by single-crystal x-ray diffraction [monoclinic, space group P21/n, a 12.0862(12), b 11.1625(8), c 16.337(1) Å, β 110.840(4)°, V 2059.9(3) Å3, Z 4].

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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, European Journal of Organic Chemistry called gem-Bisphosphonate-Ended Group Dendrimers: Design and Gadolinium Complexing Properties, Author is Franc, Gregory; Turrin, Cedric-Olivier; Cavero, Emma; Costes, Jean-Pierre; Duhayon, Carine; Caminade, Anne-Marie; Majoral, Jean-Pierre, which mentions a compound: 56621-48-8, SMILESS is OC1=CC=C(N2CCNCC2)C=C1, Molecular C10H14N2O, Category: ethers-buliding-blocks.

The synthesis of the first gem-bisphosphonate-ended group dendrimers is described using nucleophilic substitution of terminal P(S)Cl2 units of phosphorus dendrimers of generation 1 to 3 with protected aminophenols followed by deprotection of amino groups and Michael addition with vinylidene tetraisopropyl bisphosphonate. These dendrimers were found to act as chelating agents towards Gd ions. Contrary to the phosphonic acids that can introduce bridges between Gd ions, these synthons act as unique chelating agents toward the Gd ions. Furthermore, it appears that the number of Gd ions introduced in the isolated units is equal to the number of gem-bisphosphonate pairs. Eventually, the magnetic measurements demonstrate clearly that the Gd ions are not coordinated to these pairs as isolated ions but that at least some of these ions are bridged through oxygen atoms that are not P=O functions, as shown by the structural determination given in the paper. Studies concerning properties of these Gd dendrimers complexes are under active study. (© Wiley-VCH Verlag GmbH & Co. KGaA, 69451 Weinheim, Germany, 2009).

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A new synthetic route of 56621-48-8

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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 Design, synthesis and biological evaluation of novel pleuromutilin derivatives possessing acetamine phenyl linker, published in 2019-11-01, which mentions a compound: 56621-48-8, mainly applied to acetamine phenyl pleuromutilin preparation antibacterial pharmacokinetic; Antibiotics; In vivo; MRSA; Pleuromutilin; Synthesis, HPLC of Formula: 56621-48-8.

A series of novel acetamine Ph pleuromutilin derivatives incorporating 2-aminothiophenol moieties into the C14 side chain were synthesized via acylation reactions under mild conditions. The in vitro antibacterial activities of the synthesized derivatives against three Staphylococcus aureus (MRSA ATCC 43300, ATCC 29213 and AD 3) and two Escherichia coli (ATCC 25922 and 9-1) were evaluated by the broth dilution method. Most of the synthesized derivatives displayed potent activities. Compound I was found to be the most active antibacterial derivative against MRSA (minimal inhibitory concentration = 0.015 μg/mL) which may lead to a promising antibacterial drug. Furthermore, compound I displayed more rapid bactericidal kinetic than tiamulin in in vitro time-kill studies and possessed a longer PAE than tiamulin against MRSA. The PK properties of compound I were then measured. The half life (t1/2), clearance rate (Cl) and the area under the plasma concentration-time curve (AUC0→∞) of compound I were 6.88 h, 21.64 L/h/kg and 0.48 μg h/mL, resp. The in vivo antibacterial activities of compound I against MRSA were further evaluated using thigh infection model and systemic infection model. Compound I possessed superior antibacterial efficacy to tiamulin against MRSA infection in both model.

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Synthetic Route of C10H14N2O. So far, in addition to halogen atoms, other non-metallic atoms can become part of the aromatic heterocycle, and the target ring system is still aromatic. Compound: 4-(Piperazin-1-yl)phenol, is researched, Molecular C10H14N2O, CAS is 56621-48-8, about Design, synthesis and antibacterial evaluation of novel pleuromutilin derivatives possessing piperazine linker.

A series of pleuromutilin derivatives bearing piperazine ring have been reported. The in vitro antibacterial activities of the synthetic derivatives against MRSA (ATCC 43300), Staphylococcus aureus (ATCC 29213), Enterococcus faecalis (ATCC 29212), Enterococcus faecium (ATCC35667) and Escherichia coli (ATCC25922) were evaluated by the broth dilution method. Most of the synthesized derivatives displayed potent activities. Compounds 11c, 12a and 12c were found to be the most active antibacterial derivatives against MRSA (min. inhibitory concentration = 0.015 μg/mL). The binding of compounds 11c, 12a and 12c (I – III, resp.) to the 50s ribosome were investigated by mol. modeling. Compound 11c possessed lower binding free energy compared with compounds 12a and 12c. Compound 11c was further evaluated in MRSA systemic infection model and displayed superior in vivo efficacy to that of tiamulin.

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The three-dimensional configuration of the ester heterocycle is basically the same as that of the carbocycle. Compound: 4-(Piperazin-1-yl)phenol(SMILESS: OC1=CC=C(N2CCNCC2)C=C1,cas:56621-48-8) is researched.Synthetic Route of C10H14N2O. The article 《Synthesis, Radiofluorination, and In Vitro Evaluation of Pyrazolo[1,5-a]pyridine-Based Dopamine D4 Receptor Ligands: Discovery of an Inverse Agonist Radioligand for PET》 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:56621-48-8).

A series of fluoro-substituted analogs structurally derived from the aminomethyl-substituted pyrazolo[1,5-a]pyridine lead compounds FAUC 113 and FAUC 213 were synthesized and evaluated as high-affinity D4 receptor (D4R) ligands (Ki = 1.3-28 nM). The para-fluoroethoxy-substituted derivatives I and II revealed an outstanding D4 subtype selectivity of more than 3 orders of magnitude over both congeners D2 and D3 combined with inverse agonism at D4R. The corresponding 18F-labeled radioligands revealed high serum stability in vitro and log P values of 2-3. In vitro rat brain autoradiog. showed specific binding of [18F]-II in distinct brain regions, including the gyrus dentate of the hippocampus, that were inhibited by both eticlopride (65-80%) and the selective D4R antagonist 10 (78-93%). The observed binding pattern was mainly consistent with the known D4R distribution in the rat brain. Thus, [18F]-II (FAUC F41) represents a potential radioligand for studying the D4R in vivo by positron emission tomog. (PET).

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Application of 118430-78-7. So far, in addition to halogen atoms, other non-metallic atoms can become part of the aromatic heterocycle, and the target ring system is still aromatic. Compound: 1-Methyl-3-(thiophen-2-yl)-1H-pyrazol-5-amine, is researched, Molecular C8H9N3S, CAS is 118430-78-7, about Domino Reaction of Arylglyoxals with Pyrazol-5-amines: Selective Access to Pyrazolo-Fused 1,7-Naphthyridines, 1,3-Diazocanes, and Pyrroles.

New multicomponent domino reactions of arylglyoxals with pyrazol-5-amines have been established, providing selective access to unprecedented pyrazolo-fused 1,7-naphthyridines, 1,3-diazocanes, and pyrroles (up to 52 examples). The unreported dipyrazolo-fused 1,7-naphthyridines were regioselectively synthesized through a special double [3 + 2 + 1] heteroannulation accompanied by direct C-C formation between two electrophilic sites of arylglyoxals [e.g., PhCOCH(OH)2 + 1,3-dimethyl-5-pyrazolamine in presence of TsOH → I (70%)]. The unusual [3 + 3 + 1 + 1] cyclization resulted in 20 examples of novel dipyrazolo-fused 1,3-diazocanes [e.g., PhCOCH(OH)2 + 1-methyl-3-phenyl-5-pyrazolamine in presence of TsOH → II (71%)], whereas pyrrolo[2,3-c]pyrazoles were obtained in good yields by varying arylglyoxals and pyrazol-5-amines in the ratio 1:2 [e.g., PhCOCH(OH)2 + 1-phenyl-3-methyl-5-pyrazolamine in presence of TsOH → III (78%)]. Mechanisms of formation of these three new types of heterocycles are also proposed.

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Downstream Synthetic Route Of 56621-48-8

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The three-dimensional configuration of the ester heterocycle is basically the same as that of the carbocycle. Compound: 4-(Piperazin-1-yl)phenol(SMILESS: OC1=CC=C(N2CCNCC2)C=C1,cas:56621-48-8) is researched.Reference of 5-Methoxy-2-[[(4-methoxy-3,5-dimethyl-2-pyridyl)methyl]thio]benzimidazole. The article 《Thermodynamic study of the electrochemical oxidation of some aminophenol derivatives: Experimental and theoretical investigation》 in relation to this compound, is published in Electrochimica Acta. Let’s take a look at the latest research on this compound (cas:56621-48-8).

Electrochem. oxidation of some aminophenol derivatives (1-5) was studied both exptl. and theor. Exptl. results were obtained using cyclic voltammetry and controlled potential coulometry. The theor. results were calculated at DFT (B3LYP and BP86) levels of theory and 6-311 + G (p,d) basis sets. Using a general thermodn. cycle, the calculated ΔGtot of the oxidation of the studied aminophenol derivatives indicates that thermodn. is one of the important parameters on the potential oxidation Electrochem. oxidation potential of 1-5 is directly dependent on the ΔGtot of electrochem. oxidation In addition mechanisms of the electrochem. oxidation of 4-(piperazin-1-yl) phenol (6) in the presence of various nucleophiles was studied in viewpoint of the thermodn. Mechanistic study of the electrochem. oxidation of 6 in the presence of different nucleophiles indicates that although the electrochem. oxidations of 6H+ in the presence of different nucleophiles have different mechanisms but proceed in the thermodynamically favored directions.

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