5112-47-0Relevant academic research and scientific papers
Synthesis and characterisation of new 4-oxo-N-(substituted-thiazol-2-yl)-4H-chromene-2-carboxamides as potential adenosine receptor ligands
Cagide, Fernando,Borges, Fernanda,Gomes, Ligia R.,Low, John Nicolson
, p. 206 - 215 (2015)
Abstract Chromones are 4H-benzopyran-4-one heterocycles that have been thoroughly studied due to their interesting biological activities. Thiazole based compounds have been used in therapeutics as antimicrobial, antiviral and as antifungal agents for a long time but, in the past decades, they have been identified as potent and selective ligands for adenosine receptor. In continuation of our project related to the syntheses of pharmacologically important heterocycles, a new series of chromone-thiazole hybrids have been designed as potential ligands for human adenosine receptors. In this context, new 4-oxo-N-(substituted-thiazol-2-yl)-4H-chromene-2-carboxamides were synthesized from chromone-2-carboxylic acid by two different amidation methods. The development of dissimilar synthetic approaches provided the possibility of working with diverse reaction conditions, namely with conventional heating and/or microwave irradiation. The structure of the compounds has been established on the basis of NMR and MS spectroscopy and X-ray crystallography. Relevant data related to the molecular geometry and conformation of the chromone-thiazole hybrids has been acquired which can be of the utmost importance to understand ligand-receptor binding.
Diastereoselective photodimerization reactions of chromone-2-carboxamides to construct a C2-chiral scaffold
Yagishita, Fumitoshi,Baba, Nozomi,Ueda, Yuki,Katabira, Satoshi,Kasashima, Yoshio,Mino, Takashi,Sakamoto, Masami
, p. 9644 - 9649 (2014)
Irradiation of three chromone-2-carboxamides with a chiral auxiliary resulted in diastereoselective formation of a C2-chiral anti-HH dimer scaffold. Selection of the solvent polarity and decreasing the temperature resulted in asymmetric induction with up to 84% diastereomeric excess (de).
Copper Bis(oxazoline)-Catalyzed Enantioselective Alkynylation of Benzopyrylium Ions
Guan, Yong,Attard, Jonathan W.,Mattson, Anita E.
supporting information, p. 1742 - 1747 (2020/02/05)
The stereocontrolled construction of biologically relevant chromanones and tetrahydroxanthones has been achieved through the addition of alkynes to benzopyrylium trilfates under the influence of copper bis(oxazoline) catalysis. Excellent levels of enantiocontrol (63–98 % ee) are achieved in the addition of a variety of alkynes to an array of chromenones with a hydrogen in the 2-position. Promising levels of enantiocontrol (54–67 % ee) are achieved in the alkynylation of chromenones with esters in the 2-position, generating tertiary ether stereocenters resembling those frequently found in naturally occurring metabolites.
Chromone and donepezil hybrids as new multipotent cholinesterase and monoamine oxidase inhibitors for the potential treatment of Alzheimer's disease
Huang, Ming,Jiang, Neng,Kong, Ling-Yi,Lan, Jin-Shuai,Wang, Xiao-Bing,Yin, Fu-Cheng
, p. 225 - 233 (2020/04/22)
A series of chromone and donepezil hybrids were designed, synthesized, and evaluated as multipotent cholinesterase (ChE) and monoamine oxidase (MAO) inhibitors for the potential therapy of Alzheimer's disease (AD). In vitro studies showed that the great majority of these compounds exhibited potent inhibitory activity toward BuChE and AChE and clearly selective inhibition for hMAO-B. In particular, compound 5c presented the most balanced potential for ChE inhibition (BuChE: IC50 = 5.24 μM; AChE: IC50 = 0.37 μM) and hMAO-B selectivity (IC50 = 0.272 μM, SI = 247). Molecular modeling and kinetic studies suggested that 5c was a mixed-type inhibitor, binding simultaneously to peripheral and active sites of AChE. It was also a competitive inhibitor, which occupied the substrate and entrance cavities of MAO-B. Moreover, compound 5c could penetrate the blood-brain barrier (BBB) and showed low toxicity to rat pheochromocytoma (PC12) cells. Altogether, these results indicated that compound 5c might be a hopeful multitarget drug candidate with possible impact on Alzheimer's disease therapy.
SOLID STATE FORMS OF N-[2-(2-{4-[2-(6,7-DIMETHOXY-3,4-DIHYDRO-2(LH)- ISOQUINOLINYL)ETHYL] PHENYL }-2H-TETRAZOL-5-YL)-4,5-DIMETHOXYPHENYL] -4- OXO-4H-CHROMENE-2-CARBOXAMIDE AND OF ITS MESYLATE SALT
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Paragraph 00148; 00161, (2020/08/28)
The present disclosure relates to solid state forms of Encequidar (previously referred to as HM-30181A) base, Encequidar ((HM-30181A) mesylate, co-crystals of Encequidar (HM-30181A) mesylate, processes for preparation thereof, as well as pharmaceutical compositions including the same.
A new class of flavonoids bearing macrocyclic polyethers by stereoselective photochemical cycloaddition reaction
Ishikawa, Hiroki,Uemura, Naohiro,Taira, Ryo,Sano, Kento,Yoshida, Yasushi,Mino, Takashi,Kasashima, Yoshio,Sakamoto, Masami
, p. 3911 - 3916 (2019/06/18)
A new class of flavonoids bearing cyclic polyethers involving a phenyl ring was conveniently provided by the intramolecular photochemical dimerization of 2-chromonecarboxylic esters. Irradiation of 2-chromonecarboxylate with a polyether tethered at both ends promoted intramolecular [2 + 2] cyclobutane formation leading to 14- to 27-membered cyclic polyethers. The efficiency depended on the substituted position of the phenyl ring, with ortho- and meta-substituted derivatives giving cycloadducts in good chemical yields and quantum efficiencies, whereas the para-derivatives were inert toward photolysis. X-ray crystallographic analysis revealed that the stereochemistry of the macrocyclic cycloadducts exhibited C2-symmetry.
Palladium- and Nickel-Catalyzed Decarbonylative C-S Coupling to Convert Thioesters to Thioethers
Ichiishi, Naoko,Malapit, Christian A.,Wo?niak, Aukasz,Sanford, Melanie S.
supporting information, p. 44 - 47 (2018/01/17)
This Letter describes the development of a catalytic decarbonylative C-S coupling reaction that transforms thioesters into thioethers. Both Pd- and Ni-based catalysts are developed and applied to the construction of diaryl, aryl alkyl, and heterocycle-containing thioethers.
Synthesis, nematicidal activity and docking study of novel chromone derivatives containing substituted pyrazole
Li, Wei,Li, Jiuhui,Shen, Hongfeng,Cheng, Jiagao,Li, Zhong,Xu, Xiaoyong
supporting information, p. 911 - 914 (2017/11/01)
A series of chromone derivatives containing substituted pyrazole were designed and synthesized. Preliminary bioassays showed that most of the synthesized compounds exhibited good nematicidal activity in vivo against Meloidogyne incognita at 10 mg/L. Among the tested compounds, A10 and A11 exhibited 100% inhibition rates. In addition, the molecular docking results indicated that both compound A10 and A11 interacts with amino acid residue Tyr121, Trp279, Tyr70, Trp84 and Phe330 of AChE via hydrogen bond and π–π stacking. This investigation suggested that the chromone containing substituted pyrazole scaffold could be further optimized to explore novel, high-bioactivity nematicidal leads.
Synthesis and evaluation of chromone-2-carboxamide derivatives as cytotoxic agents and 5-lipoxygenase inhibitors
Bousejra-ElGarah, Fatima,Lajoie, Barbora,Souchard, Jean-Pierre,Baziard, Geneviève,Bouajila, Jalloul,El Hage, Salomé
, p. 2547 - 2556 (2016/10/25)
In the present study, we prepared a series of 21 chromone carboxamide derivatives bearing diverse amide side chains. Their potency to inhibit the proliferation of breast (MCF-7), ovarian (OVCAR and IGROV), and colon (HCT-116) cancer cell lines, was evaluated in vitro using the MTT assay. Among these compounds, 13 showed promising cytotoxic activity against at least one cancer cell line with IC50 in the range 0.9–10 μM. Our compounds were also screened for their anti-inflammatory activity as putative inhibitors of 5-lipoxygenase. Structure-activity relationships studies on our chromone carboxamide derivatives revealed that the presence of a 6-fluoro substituent on the chromone nucleus (R1) or propyl and 3-ethylphenyl groups on the amide side chain (R2) has a positive impact on the cytotoxic activity. In terms of the anti-inflammatory activity, hydrophilic chromone carboxamide derivatives showed greater 5-lipoxygenase inhibition. The physico-chemical properties of chromone carboxamides are in accordance with the general requirements of drug development process and ligand efficiency values allow further structure optimization, with compound 4b as a lead.
Dual role of Rh(III) catalyst enables regioselective halogenation of (electron-rich) heterocycles
Schr?der, Nils,Lied, Fabian,Glorius, Frank
supporting information, p. 1448 - 1451 (2015/02/19)
The Rh(III)-catalyzed selective bromination and iodination of electron-rich heterocycles is reported. Kinetic investigations show that Rh plays a dual role in the bromination, catalyzing the directed halogenation and preventing the inherent halogenation of these substrates. As a result, this method gives highly selective access to valuable halogenated heterocycles with regiochemistry complementary to those obtained using uncatalyzed approaches, which rely on the inherent reactivity of these classes of substrates. Furans, thiophenes, benzothiophenes, pyrazoles, quinolones, and chromones can be applied.
