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1.
Chem Asian J ; 18(21): e202300726, 2023 Nov 02.
Article in English | MEDLINE | ID: mdl-37711073

ABSTRACT

A palladium-catalyzed denitrogenative transannulation strategy to access various 3-substituted isocoumarin-1-imine frameworks using 1,2,3-benzotriazin-4(3H)-ones and terminal alkynes is described. The reaction is highly regioselective and tolerates a wide range of functional groups. The reaction is believed to proceed via a five-membered palladacycle intermediate extruding environmentally benign molecular nitrogen as a by-product. The utility of this method was showcased through the one-pot synthesis of biologically relevant 3-substituted isocoumarin scaffolds.

2.
ACS Omega ; 8(20): 18306-18311, 2023 May 23.
Article in English | MEDLINE | ID: mdl-37251178

ABSTRACT

An efficient and straightforward approach to synthesize salicylanilide aryl and alkyl sulfonates from 1,2,3-benzotriazin-4(3H)-ones and organosulfonic acids is described. This protocol is operationally simple and scalable, exhibits a broad substrate scope with high functional group tolerance, and affords the desired products in good to high yield. Application of the reaction is also demonstrated by converting the desired product to synthetically useful salicylamides in high yields.

3.
Chem Asian J ; 17(15): e202200400, 2022 Aug 01.
Article in English | MEDLINE | ID: mdl-35575143

ABSTRACT

The cascade annulation between alkylidene malononitriles and cyclic sulfamidate imines has been controlled by leveraging the sulfamate functionality under organocatalysis, which allows selective access to polycyclic and densely functionalized dihydropyridines and pyridines in high yields. The protocol is scalable and shows broad substrate scope. The products were also engaged in the preparation of tetracyclic pyridopyrimidines, showcasing the synthetic versatility.


Subject(s)
Dihydropyridines , Pyridines , Catalysis , Imines , Sulfonic Acids
4.
Org Biomol Chem ; 20(10): 2048-2053, 2022 03 09.
Article in English | MEDLINE | ID: mdl-35179163

ABSTRACT

A practical method is disclosed for the reduction of activated primary and secondary amides into aldehydes using diisobutylaluminum hydride (DIBAL-H) in toluene. A wide range of aryl and alkyl N-Boc, N,N-diBoc and N-tosyl amides were converted into the corresponding aldehydes in good to excellent yields. Reduction susceptible functional groups such as nitro, cyano, alkene and alkyne groups were found to be stable. Broad substrate scope, functional group compatibility and quick conversions are the salient features of this methodology.

5.
Chem Commun (Camb) ; 58(8): 1187-1190, 2022 Jan 25.
Article in English | MEDLINE | ID: mdl-34981799

ABSTRACT

An unusual cascade annulation of arynes with N-alkyl-N-nitrosamides is developed by leveraging aryne σ-insertion and C(sp3)-H bond functionalization strategies under transition-metal-free conditions at ambient temperature, offering functionalized indazoles in high yields and regioselectivity. The protocol is scalable and exhibits a broad substrate scope. The reaction mechanism is also studied with DFT calculations.

6.
J Org Chem ; 84(18): 11823-11838, 2019 Sep 20.
Article in English | MEDLINE | ID: mdl-31436985

ABSTRACT

Conversion of a wide range of N-Boc amides to aryl ketones was achieved with Grignard reagents via chemoselective C(O)-N bond cleavage. The reactions proceeded under catalyst-free conditions with different aryl, alkyl, and alkynyl Grignard reagents. α-Ketoamide was successfully converted to aryl diketones, while α,ß-unsaturated amide underwent 1,4-addition followed by C(O)-N bond cleavage to provide diaryl propiophenones. N-Boc amides displayed higher reactivity than Weinreb amides with Grignard reagents. A broad substrate scope, excellent yields, and quick conversion are important features of this methodology.

7.
Org Biomol Chem ; 17(4): 845-850, 2019 01 23.
Article in English | MEDLINE | ID: mdl-30627716

ABSTRACT

A mild and efficient method is demonstrated for the transamidation of secondary amides with various amines including primary, secondary, cyclic and acyclic amines in the presence of tert-butyl nitrite. The reaction proceeds through the N-nitrosamide intermediate and provides the transamidation products in good to excellent yields at room temperature. Moreover, the developed methodology does not require any catalyst or additives.

8.
Org Biomol Chem ; 16(37): 8280-8285, 2018 09 26.
Article in English | MEDLINE | ID: mdl-30209482

ABSTRACT

A conversion of o-phenylenediamines into benzotriazoles was achieved at room temperature using tert-butyl nitrite. The optimized conditions are also well suited for the transformation of sulfonyl and acyl hydrazines into corresponding azides. This protocol does not require any catalyst or acidic medium. The desired products were obtained in excellent yields in a short span of time.

9.
Bioorg Chem ; 79: 64-71, 2018 09.
Article in English | MEDLINE | ID: mdl-29723743

ABSTRACT

A regio and stereo- selective synthesis of hitherto unexplored hybrid heterocyclic system comprising spiropyrrolidine, indolizino[6,7-b]indole units in good to excellent yields, has been developed via three component 1,3-dipolar cycloaddition and concomitant trifluoroacetic acid catalyzed Pictet-Spengler cyclization with paraformaldehyde. The newly synthesized compounds were evaluated for their in vitro acetylcholinesterase (AChE) and butylcholinesterase (BChE) enzyme inhibitory activities. Most of the synthesized compounds showed good inhibitory activity, among them, compounds 4d and 4g displayed highest potency against AChE (IC50 1.88 and 1.98 µM), and BChE (IC50 18.32 and 10.21 µM) enzyme, respectively than the standard drug, galanthamine. Molecular modeling simulation was investigated for the most active compounds 4d and 4g on AChE and BChE enzymes to disclose the binding and orientation of these molecules into active site of respective receptors.


Subject(s)
Cholinesterase Inhibitors/chemistry , Indoles/chemistry , Indolizines/chemistry , Pyrrolidines/chemistry , Spiro Compounds/chemistry , Acetylcholinesterase/chemistry , Animals , Butyrylcholinesterase/chemistry , Catalytic Domain , Cholinesterase Inhibitors/chemical synthesis , Electrophorus , Horses , Hydrogen Bonding , Hydrophobic and Hydrophilic Interactions , Indoles/chemical synthesis , Indolizines/chemical synthesis , Molecular Docking Simulation , Pyrrolidines/chemical synthesis , Spiro Compounds/chemical synthesis
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