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Microwave-assisted synthesis of triazole derivatives conjugated with piperidine as new anti-enzymatic agents
Authors:Naeem A. Virk  Aziz-ur- Rehman  Muhammad A. Abbasi  Sabahat Z. Siddiqui  Javed Iqbal  Shahid Rasool  Shafi U. Khan  Thet T. Htar  Hira Khalid  Sabina J. Laulloo  Syed A. Ali Shah
Affiliation:1. Department of Chemistry, Government College University, Lahore, Lahore, Pakistan;2. Department of Chemistry, The University of Lahore, Lahore, Pakistan;3. School of Pharmacy, MONASH University Malaysia, Subang Jaya, Selangor, Malaysia;4. Department of Chemistry, Forman Christian College University, Lahore, Pakistan;5. Department of Chemistry, University of Mauritius, Reduit, Mauritius;6. Faculty of Pharmacy, Universiti Teknologi MARA, Bandar Puncak Alam, Selangor Darul Ehsan, Malaysia

Atta-ur-Rahman Institute for Natural Products Discovery (AuRIns), Universiti Teknologi MARA, Bandar Puncak Alam, Selangor Darul Ehsan, Malaysia

Abstract: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.
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