Synthesis and biological evaluation of an indanone-pyrazoline hybrid compound and its synthetic intermediates

Pyrazoline and indanone scaffolds are two important skeletal motifs widely used in medicinal chemistry for their broad biological activities. In the current investigation, a novel indanone-pyrazoline hybrid compound was prepared in a three-step synthetic sequence. Synthesis consisted of the formation of a Schiff base via reaction with indanone, Claisen-Schmidt condensation to obtain the indanone chalcone, and phenylhydrazine cyclization to yield the desired pyrazoline. The synthesized compounds were evaluated using 1H NMR spectroscopy, while 13C NMR data were additionally obtained for compounds 1 and 3. Antimicrobial testing using the agar diffusion test produced inhibition zones of 11–12 mm against E. coli and S. aureus. The hybrid compound showed a 12 mm inhibition zone, whereas the intermediates produced an 11 mm inhibition zone; however, the biological relevance of this small numerical difference should be interpreted cautiously. For antifungal activity, C. albicans showed inhibition zones of 10–11 mm, with the Schiff base intermediate producing a slightly larger inhibition zone than the hybrid compound. At the same time, no inhibition was observed for A. flavus.

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Publication Details

Journal
European Journal of Chemistry
Published
2026-09-30
DOI
https://doi.org/10.5155/eurjchem.17.3.239-243.2798
Primary Topic
Synthesis and biological activity
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article
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Synthesis and biological evaluation of an indanone-pyrazoline hybrid compound and its synthetic intermediates

Ifzan Arshad, Rabia Nazir
European Journal of Chemistry
Synthesis and biological activity
article

Synthesis and biological evaluation of an indanone-pyrazoline hybrid compound and its synthetic intermediates

Ifzan Arshad, Rabia Nazir
article en

Abstract

Pyrazoline and indanone scaffolds are two important skeletal motifs widely used in medicinal chemistry for their broad biological activities. In the current investigation, a novel indanone-pyrazoline hybrid compound was prepared in a three-step synthetic sequence. Synthesis consisted of the formation of a Schiff base via reaction with indanone, Claisen-Schmidt condensation to obtain the indanone chalcone, and phenylhydrazine cyclization to yield the desired pyrazoline. The synthesized compounds were evaluated using 1H NMR spectroscopy, while 13C NMR data were additionally obtained for compounds 1 and 3. Antimicrobial testing using the agar diffusion test produced inhibition zones of 11–12 mm against E. coli and S. aureus. The hybrid compound showed a 12 mm inhibition zone, whereas the intermediates produced an 11 mm inhibition zone; however, the biological relevance of this small numerical difference should be interpreted cautiously. For antifungal activity, C. albicans showed inhibition zones of 10–11 mm, with the Schiff base intermediate producing a slightly larger inhibition zone than the hybrid compound. At the same time, no inhibition was observed for A. flavus.

European Journal of ChemistryVol. 17(3)
Shenzhen University (CN), University of Sialkot
Openalex Percentile: Top 23%
Synthesis and biological activity
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Synthesis and biological evaluation of an indanone-pyrazoline hybrid compound and its synthetic intermediates — Ifzan Arshad, Rabia Nazir · European Journal of Chemistry (2026) | TGRS Research Map | TGRS