PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
March 29, 2026Pharmaceuticals0 citationsOpen Access

Combined In Vitro and Computational Investigations on Synthesized Sulfonamide-Based Antidiabetic Agents

View Full Paper
AIAncuţa Dinu IacobOCOana CioancăIAIuliana Aprodu

Key Points

  • The aim is to develop and evaluate new sulfonamide compounds with potential antidiabetic activity.
  • Synthesis of sulfonamide derivatives using para-toluenesulfonamide and isocyanates.
  • Physicochemical and spectral characterization using methods like IR, 1H-NMR, and 13C-NMR.
  • In vitro cytotoxicity screening on NCTC fibroblasts.
  • Inhibition assays to measure α-amylase and α-glucosidase activity.
  • Molecular docking studies to explore enzyme-inhibitory mechanisms.
  • Sulfonamide derivatives were successfully synthesized and characterized.
  • Cytotoxicity screening indicated a safe profile for most derivatives at 100–1500 μg/mL.
  • p-TSA-c-d showed cytotoxicity at concentrations above 750 μg/mL.
  • The p-TSA-c-d derivative inhibited α-amylase and α-glucosidase with an IC50 of 46.54 μM, outperforming acarbose.
  • Molecular docking tests revealed distinct inhibitory mechanisms for the sulfonamide derivatives.

Abstract

Background/Objectives: Worldwide, diabetes is a 21st century disease with continuously increasing prevalence. Current medications often have long-term adverse effects, which is why new substances are needed to help combat these disadvantages. Methods: In this respect, the present study develops a series of compounds with potential antidiabetic activity, including synthesis, physicochemical–spectral characterization and in vitro–in silico evaluation. Results: The sulfonamide derivatives were obtained by condensation reactions of para-toluenesulfonamide (p-TSA) with two different isocyanates, directly or after the condensation reaction with urea. The spectroscopic methods, IR, 1H-NMR, 13C-NMR, were used for the structural elucidation of the compounds to confirm the presence of the functional groups responsible for the antihyperglycemic action, namely amide, azomethine and sulfonyl groups. Cytotoxicity screening on NCTC fibroblasts confirmed the excellent safety profile of the most synthesized derivatives across the tested range (100–1500 μg/mL). In contrast, the p-TSA-c-d derivative showed a clear transition from a biocompatible profile at 100 μg/mL to a more cytotoxic phenotype at concentrations exceeding 750–1500 μg/mL. The synthesized derivatives, particularly p-TSA-c-d, exhibited remarkable antidiabetic potential by effectively inhibiting α-amylase and α-glucosidase, with IC50 values as low as 46.54 μM, outperforming the standard reference acarbose. The molecular docking tests revealed different mechanisms for the inhibitory activity exerted by the p-TSA derivatives on the two targeted enzymes. Conclusions: Although these developed compounds can be considered promising antidiabetic agents, studies can be further deepened in the future by performing in vivo tests.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Iacob et al. (2026) studied this question.

synapsesocial.com/papers/69c8c336de0f0f753b39deb7https://doi.org/10.3390/ph19040538
Ask AI
Helpful
Bookmark
Share
View Full Paper