In this paper we report the synthesis of some novel 1,2,4-triazolo[1,5-a]pyridine and azolotriazolopyridine ring systems. The products were screened for various types of activity like antibacterial, antifungal, and antioxidative activity. Compound 13 was found to pose an antioxidative activity. In addition, this compound was found to extend the life span of Caenorhabiditis elegans under standard laboratory conditions and reduces both heat and chemical induced oxidative stress in C. elegans in a dose-dependent manner. Furthermore, treatment of worms with compound 13 was found to significantly attenuate the formation of advanced glycation end products and malondialdehyde in a dose-dependent manner.
In the present study, we describe the synthesis of a new set of 1,2,4-triazolo[1,5-a]pyridines and their fused ring systems. The products were assayed for various types of biological activities like anti-inflammatory and antioxidative activity. Compounds 4c, 4f, 12a, 14, 16, and 19 were found to reduce carrageenan- and dextran-induced inflammation in rats. In addition, compounds 4f and 12a were found to have antioxidative radical scavenging activity. Furthermore, these compounds were tested in the model system Caenorhabiditis elegans and there increased heat stress resistance, reduced the formation of advanced glycation end products, and finally extended the life span.
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