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Seven new quinoline-based bioorganic compounds were prepared by solvent-free synthesis and characterized using spectral techniques. The binding of these compounds with human serum albumin (HSA) was investigated by multi-spectroscopic methods. The quenching of Trp fluorescence upon addition of these compounds to HSA confirmed their significant binding. The quenching analysis at three different temperatures revealed that the complex formation is static and the reaction is entropy driven, spontaneous, and exothermic. Hydrogen bonds and van der Waals forces mainly contributed in the interactions as confirmed by the negative DeltaH and DeltaS values as well as molecular docking. The results from the circular dichroism (CD) spectroscopy indicated the minimal conformational changes of the protein upon binding with these quinoline compounds. The specific binding site and mode of interactions with HSA were also modeled using induced fit molecular docking procedure and their binding site was found to be in the interface of domains II and III, which is similar to the binding of the drug iodipamide with serum albumin. Communicated by Ramaswamy H. Sarma.

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Reference:
Benzodioxan,
1,4-Benzodioxane | C8H8O2 – PubChem

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Application of 214894-89-0,New Advances in Chemical Research in 2021. The appropriate choice of redox mediator can avoid electrode passivation and overpotential, which strongly inhibit the efficient activation of substrates in electrolysis. 214894-89-0, Name is 5-(Bromomethyl)-2,3-dihydro-1,4-benzodioxine,introducing its new discovery.

The present invention relates to compound of formula I, II, III, or IV, and/or a pharmaceutical acceptable addition salt thereof and/or a stereoisomer thereof and/or a solvate thereof, wherein R1, R2, R3, R4, R5, R6, R7, R8, R9, R11, and R12 are as defined in the claim 1. The present invention also relates to a method for their preparation, as well as to pharmaceutical compositions thereof. The present invention further relates to the use of said compounds as biologically active ingredients, more specifically as medicaments for the treatment of disorders and pathologic conditions such as, but not limited to, immune and auto-immune disorders, organ and cells transplant rejections.

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Reference:
Benzodioxan,
1,4-Benzodioxane | C8H8O2 – PubChem

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The present invention relates to a compound represented by the formula (E) which is useful for treating or preventing melanoma.

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Reference:
Benzodioxan,
1,4-Benzodioxane | C8H8O2 – PubChem

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Electric Literature of 22013-33-8, Chemical Research Letters, May 2021. The appropriate choice of redox mediator can avoid electrode passivation and overpotential, which strongly inhibit the efficient activation of substrates in electrolysis. 22013-33-8, Name is 2,3-Dihydrobenzo[b][1,4]dioxin-6-amine,introducing its new discovery.

The present invention provides 4-pyrimidineamine compounds having antiproliferative activity, compositions comprising the compounds and methods of using the compounds to inhibit cellular proliferation and to treat proliferative diseases such as tumorigenic cancers.

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Reference:
Benzodioxan,
1,4-Benzodioxane | C8H8O2 – PubChem

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The treatment of aryl acyloin (alpha-hydroxyketone) O-alkyl and O-phenyl derivatives with 2-3 equiv of Zn and 1-2 equiv of NH4Cl in ethanol, refluxing for 20-120 min, gave the corresponding ketones with excellent yields. Further, alpha,beta-epoxy ketones can be efficiently transformed to beta-hydroxy ketones, and 2,2-dialkoxy-1-phenyl ketone also can be dealkoxylated to 1-phenyl ketone. Copyright Taylor & Francis Group, LLC.

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Benzodioxan,
1,4-Benzodioxane | C8H8O2 – PubChem

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A transition-metal-free method for the synthesis of C6 phenanthridine derivatives by arylative cyclization of 2-isocyanobiphenyls with arylamines in one pot was developed. Mechanistic studies suggest that electrophilic aromatic substitution (SEAr) of a nitrilium intermediate and homolytic aromatic substitution (HAS) of an imidoyl radical intermediate are two competitive reaction pathways involved in the annulation step.

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Benzodioxan,
1,4-Benzodioxane | C8H8O2 – PubChem

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Forty-two new disubstituted phenylsulfamates have been synthesized, and 30 of these have been combined with 40 already available from earlier work to create a training database of 70 compounds. On the basis of panel taste data these were divided into three categories, N (nonsweet), N/S (nonsweet/sweet), and (S) sweet, and a “sweetness value” or weighting was also calculated for each compound. Using these 70 compounds as a training set and a series of nine predictors derived from Corey-Pauling-Koltun (CPK) models, calculated from the PC SPARTAN PRO program and Hammett sigma values taken from the literature, a classification and regression tree analysis (CART) was carried out leading to a regression tree that correctly classified 62 of the 70 compounds (89% overall correct classification). The tree’s predictive ability varies for the different taste categories, and for nonsweet compounds it is virtually 100%; for nonsweet/sweet compounds it is 66%, and for sweet compounds it is ?75%. This tree correctly predicted taste categories for 10 compounds from a test set of 12 randomly selected from among the 42 new compounds (83% correct classification). Therefore, it can be used with a good degree of confidence to predict the tastes of disubstituted phenylsulfamates. For the design of new sweeteners, appropriate values or ranges of the descriptors are derived.

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Reference:
Benzodioxan,
1,4-Benzodioxane | C8H8O2 – PubChem

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Herein, we report the photocatalytic decarboxylative alkenylation reactions of N-(acyloxy)phthalimide derived from alpha-amino and alpha-hydroxy acids with 1,1-diarylethene, and with cinnamic acid derivatives through double decarboxylation, using sodium iodide and triphenylphosphine as redox catalysts. The reaction proceeds under mild irradiation conditions with visible blue light (440 nm or 456 nm) in an acetone solvent without recourse to transition-metal or organic dye based photoredox catalysts. The reaction proceeds via photoactivation of a transiently self-assembled chromophore from N-(acyloxy)phthalimide and NaI/PPh3. Solvation plays a crucial role in the reactivity.

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Benzodioxan,
1,4-Benzodioxane | C8H8O2 – PubChem

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The present invention relates to substituted tricyclic compounds, which can be used as vanilloid receptor ligands. In particular, compounds described herein are useful for treating or preventing diseases, conditions and/or disorders modulated by vanilloid receptor-1 (VRl). Also provided herein are pharmaceutical compositions and methods for treating or preventing diseases, conditions and/or disorders modulated by VRl.

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Reference:
Benzodioxan,
1,4-Benzodioxane | C8H8O2 – PubChem

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Disclosed herein, inter alia, are compositions and methods useful for modulating PPP2R1 A and for the treatment of cancer.

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Reference:
Benzodioxan,
1,4-Benzodioxane | C8H8O2 – PubChem