53984-87-5Relevant academic research and scientific papers
Microwave-assisted synthesis of triazole derivatives conjugated with piperidine as new anti-enzymatic agents
Abbasi, Muhammad A.,Ali Shah, Syed A.,Htar, Thet T.,Iqbal, Javed,Khalid, Hira,Khan, Shafi U.,Laulloo, Sabina J.,Rasool, Shahid,Rehman, Aziz-ur-,Siddiqui, Sabahat Z.,Virk, Naeem A.
, (2019)
The current study was aimed for the study of piperidine-based triazole compounds for their biological potential against various enzymes. A novel library of compounds, 9a-r, having piperidine, 1,2,4-triazole, and propanamides was synthesized through consecutive steps including the formation of sulfonamide, hydrazide, 1,2,4-triazole, and thio-ether. Initially, 4-methoxybenzenesulfonyl chloride (1) and ethyl isonipecotate (2) were utilized to develop ethyl 1-(4-methoxyphenylsulfonyl)-4-piperidinecarboxylate (3). The product 3 was converted into respective hydrazide (4) which was further cyclized into 1,2,4-triazole (5) nucleus. A series of propanamides, 8a-r, were synthesized from different amines, 6a-r. These electrophiles, 8a-r, were reacted with compound 5 under conventional and microwave-assisted protocols to acquire the library of hybrids, 9a-r. The structural confirmations were availed by 1H-NMR, 13C-NMR, and IR techniques. The whole series was evaluated for biological potential against acetylcholinesterase (AChE) and α-glucosidase enzymes. The biological evaluation ranges low to high in potential for different compounds based on the structural variations of synthesized compounds. Almost all the compounds remained active against both the enzymes except a few ones. The bovine serum albumin (BSA) binding study demonstrated the flow of drug in the body, and the docking study explained the interactions responsible for active behavior of synthesized compounds.
Comparative conventional and microwave assisted synthesis of heterocyclic oxadiazole analogues having enzymatic inhibition potential
Javid, Jamila,Aziz-ur-Rehman,Abbasi, Muhammad A.,Siddiqui, Sabahat Z.,Iqbal, Javed,Virk, Naeem A.,Rasool, Shahid,Ali, Hira A.,Ashraf, Muhammad,Shahid, Wardah,Hussain, Safdar,Ali Shah, Syed A.
, p. 93 - 110 (2020/10/06)
A comparative microwave assisted and conventional synthetic strategies were applied to synthesize heterocyclic 1,3,4-oxadiazole analogues as active anti-enzymatic agents. Green synthesis of compound 1 was achieved by stirring 4-methoxybenzenesulfonyl chloride (a) and ethyl piperidine-4-carboxylate (b). Compound 1 was converted into respective hydrazide (2) by hydrazine and then into 1,3,4-oxadiazole (3) by CS2 on reflux. The electrophiles, N-alkyl/aralkyl/aryl-2-bromopropanamides (6a–p) were synthesized and converted to N-alkyl/aralkyl/aryl-2-propanamide derivatives (7a–p) by reaction with 3 under green chemistry. Microwave assisted method was found to be effective relative to conventional method. 13C-NMR, 1H-NMR and IR techniques were availed to corroborate structures of synthesized compounds and then subjected to screening against lipoxygenase (LOX), α-glucosidase, acetylcholinesterase (AChE) and butyrylcholinesterase (BChE) enzymes. A number of compounds presented better potential against these enzymes. The most active compounds against LOX and α-glucosidase enzymes were subjected to molecular docking study to explore their interactions with the active sites of the enzymes.
Primary aminoacylanilides, methods of making the same and use as antiarrhythmic drugs
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, (2008/06/13)
Primary amino acylanilides of the formula, wherein R1 is selected from the group consisting of hydrogen, methyl, ethyl and propyl, R2 is selected from the group consisting of methyl, ethyl, chlorine, methoxy and ethoxy, R3 is selected from the group consisting of hydrogen and methyl, R4 is selected from the group consisting of hydrogen, methyl, and a C1 -C4 alkoxy group, R6 is selected from the group consisting of methyl, ethyl, chlorine, methoxy and ethoxy, R7 is hydrogen, methyl or ethyl, R8 is hydrogen, R9 is hydrogen, methyl or ethyl, R10 is hydrogen, and n is 0 or 1, with the provisions that (a) when n is 0, R8 can also be methyl; (b) when n is 1, and R7 is hydrogen, and R9 is hydrogen or methyl, then R10 can also be methyl; (c) when R1 is hydrogen, R2 is methyl, R3 is hydrogen, R6 is methyl, R7 is hydrogen, R8 is hydrogen, and n is 0, then R4 can be ethoxy or propoxy only; (d) when R1 is hydrogen, R2 is methyl, R3, R4, R7 and R8 are hydrogen, and n is 0, then R6 is methoxy, ethoxy, or ethyl only; and the therapeutically acceptable salts thereof. Compounds of this type have been found to be effective longlasting cardiac antiarrhythmic agents, especially when administered by the oral route
