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Synthesis and Biological Activity for 1,3,4-Thiadiazole-2-Iminothiazolidin-4-Ones: Antidiabetic and Anti-Alzheimer
Vu Ngoc Toan1, Nguyen Dinh Thanh2, Nguyen Minh Tri1
1Institute of Materials, Biology and Environment, Military Institute of Science and Technology, 17 Hoang Sam, Nghia Do, 11300, Ha Noi, Viet Nam.
Abstract:
A series of 2-iminothiazolidin-4-one-1,3,4-thiazole hybrids 7a-l are synthesized and screened for their inhibitory activities against responsible enzymes in type 2 diabetes mellitus (T2DM) and Alzheimer's diseases. Among the compounds with potential inhibitory activity, several 2-iminothiazolidin-4-ones exhibit the strongest inhibitory activity against the screened enzymes, including 7c (IC50 = 6.12 ± 0.11 µM, for α-amylase), 7e (IC50 = 6.78 ± 0.15 µM, for α-glucosidase), 7k (IC50 = 1.82 ± 0.04 µM, for DPP-4), 7f (IC50 = 2.21 ± 0.02 µM, for PTP1B), 7h (IC50 = 0.06 ± 0.01 nM, for AChE), 7j (IC50 = 0.03 ± 0.01 nM, for BChE, and IC50 = 0.32 ± 0.01 nM, for MAO-A), and 7l (IC50 = 0.02 ± 0.01 nM, for MAO-B). Compound 7j exhibits the strongest inhibitory activity for both BChE and MAO-A. Compounds with short-chain alkyl groups (2-4 carbon atoms) have the strongest inhibitory activity against the enzymes responsible in T2DM, with the exception of 7k (with 6-carbon atom chain), whereas the long-chain alkyl groups (with 5-7 carbon atom chains) have the strongest inhibitory activity against the enzymes responsible in Alzheimer's disease. These compounds also exhibit the high antiglycation and antioxidant activity in DPPH and ABTS•+ scavenging assays. They are noncytotoxic for WI-38 cell line with IC50 > 76 μM.
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