Structural and computational supported development of 2,5-disubstituted-1,3,4-oxadiazole analogues as active LOX, urease, and α-glucosidase inhibitors

J Jamila Javid A Aziz-ur-Rehman J Javed Iqbal I Ijaz Ahmed N Nadia Bhatti A Aleksey Kuznetsov F Fatiqa Zafar M Muhammad Adnan Ayub O Osama A. Mohammed S Samiah H. Al-Mijalli M Munawar Iqbal S Syed A. Ali Shah

Abstract

Abstract A series of N -substituted analogues of 1,3,4-oxadiazole were synthesized and screened for their enzyme inhibitory activity against lipoxygenase, α-glucosidase, and urease enzymes. Spectroscopy studies including IR, 13 C-NMR, and 1 H-NMR techniques were used to confirm structures of the novel compounds obtained. Compounds 7a , 7f , 7i , 7l , and 7n were found to be the best inhibitor candidates with the highest % of inhibition (89.42 ± 1.33, 78.79 ± 1.29, 84.87 ± 1.53, 75.67 ± 1.62, and 89.54 ± 1.48, respectively) and the least IC 50 values (7.15 ± 1.34, 14.26 ± 1.07, 9.12 ± 1.17, 14.31 ± 1.19, and 7.03 ± 1.08 µM, respectively) against α-glucosidase compared to acarbose used as a standard. Compounds 7b , 7h , and 7n were found to be the most potent with % of inhibition 92.2 ± 0.5, 94.5 ± 0.6, and 92.8 ± 0.8, respectively, and with the IC 50 values 4 ± 1.05, 1.0 ± 0.3, and 1.5 ± 0.5 µM, respectively, against the lipoxygenase. With the IC 50 value of 21.85 ± 1.43 µM and the percentage inhibition of 98.45 ± 1.69%, compound 7l was found to be more active in comparison with the standard drug thiourea. Docking analysis further supported these biological outcomes by demonstrating strong, well-oriented binding poses and favorable interaction profiles for the most active inhibitors.

Article Details

Volume / Issue Vol. 16, Issue 1
Published January 21, 2026
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (12)

J

Jamila Javid

A

Aziz-ur-Rehman

J

Javed Iqbal

I

Ijaz Ahmed

N

Nadia Bhatti

A

Aleksey Kuznetsov

F

Fatiqa Zafar

M

Muhammad Adnan Ayub

O

Osama A. Mohammed

S

Samiah H. Al-Mijalli

M

Munawar Iqbal

S

Syed A. Ali Shah