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Design, synthesis, and biological evaluation of new compounds effective against Helicobacter pylori

2026
1 pages
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Advisor: Prof. Dr. Öztekin ALGÜL

Abstract (EN)

Aim: This study aimed to design, synthesize, and evaluate the activities of novel quinoline-sulfonate derivatives targeting critical biological targets of H. pylori using an artificial intelligence-assisted approach. Material and Method: Six quinoline-sulfonate derivatives designed using REINVENT 4 from literature-reported anti-H. pylori compounds were synthesized via O-sulfonylation and characterized by spectroscopic methods. Their urease inhibitory activities were determined using the Berthelot method against Jack bean urease. Results: Among the six synthesized compounds, only derivatives V and VI exhibited significant urease inhibitory activity. Compound V showed the highest activity with an IC₅₀ value of 6.49 mM, while compound VI displayed an IC₅₀ value of 16.88 mM. The IC₅₀ value of the positive control, thiourea, was determined to be 1.99 mM. Conclusion: The results demonstrated that trifluoromethyl-containing quinoline-sulfonate derivatives possess promising antiurease activity and that artificial intelligence-assisted design approaches may be utilized in the development of novel anti-H. pylori candidates.

How to Cite

Rabia Şeyma Mengi (Master Thesis). Design, synthesis, and biological evaluation of new compounds effective against Helicobacter pylori, 2026, pp. 1-1, Erzincan Binali Yıldırım University, DOI: https://doi.org/10.71008/ebyu.thesis.2026.180.

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