AI Article Synopsis

  • - A new Schiff-base, Cur-Ala, was created from curcumin and L-Alanine using microwave synthesis, and its structure was confirmed through various analytical techniques like FTIR and NMR.
  • - Antimicrobial tests showed that Cur-Ala outperformed curcumin against several clinically significant pathogens, likely due to its higher dipole moment.
  • - Additionally, both Cur-Ala and curcumin exhibited stronger antioxidant activities in multiple assays than conventional antioxidants, and their quantum chemical properties were analyzed using DFT methods for further study.

Article Abstract

In this work, a novel Schiff-base derived from curcumin and LAlanine was synthesized under microwave conditions in excellent yield. The structural characterization has been carried out from their elemental analyses, FTIR, UV-Vis and C-NMR and H-NMR spectral techniques. The Schiff base (Cur-Ala) and curcumin (Cur) have been screened for their antimicrobial activity toward some pathogens clinically important microorganisms: . Result found that the Schiff base was more active than the curcumin. The antibacterial and antifungal activities of Cur-Ala can be attributed to its greatest dipole moment, as shown by theoretical calculations. Also, the antioxidant activity of Schiff base and curcumin were studied by DPPH, cupric ion reducing antioxidant capacity and o-phenanthroline techniques. Results indicate that Cur-Ala and Cur show more antioxidant activities than the standard antioxidants (BHT and BHA). Quantum chemical parameter calculations of Cur-Ala and Cur have been investigated by DFT using B3LYP/6-31G (d,p) basis set method to calculate the optimized structure, atomic charges, MESP, global reactivity descriptors and thermomolecular proprieties of both molecules.Communicated by Ramaswamy H. Sarma.

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Source
http://dx.doi.org/10.1080/07391102.2022.2123043DOI Listing

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