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The protective effects of exenatide against AGEs-induced articular matrix degradation in human primary chondrocytes.

Am J Transl Res · 2019

Last updated 2026-09-08

In lab tests on human cartilage cells, the GLP-1 drug exenatide reduced damage to two key proteins—type II collagen and aggrecan—that help keep joints healthy. Exenatide worked by lowering levels of enzymes that break down these proteins and by reducing cell stress and inflammation signals.

AI summary of the abstract below.

JournalAm J Transl Res, 2019
Citations15
Relative citation ratio0.79
NIH percentile42
Molecules exenatide

Abstract

Osteoarthritis (OA) presents a major global health burden and is projected to become even more prevalent in coming decades. Therefore, it is of utmost importance to uncover novel therapies for the treatment and prevention of this disease. In the present study, we investigated the effects of exenatide, a specific glucagon-like peptide (GLP) agonist, on degradation of type II collagen and aggrecan, the two main components of the articular extracellular matrix, in human primary chondrocytes. Our results reveal that exenatide could ameliorate degradation of type II collagen and aggrecan by inhibiting expression of metalloproteinases (MMPs) and a disintegrin and metalloproteinase with thrombospondin motifs (ADAMTS) induced by advanced glycation end-products. We also found that exenatide reduces oxidative stress and inhibits activation of nuclear factor-κB through the p38 cellular signaling pathway. Taken together, the findings of this study indicate that exenatide may have potential as a novel treatment for osteoarthritis.

Verbatim abstract via PubMed 31105819 ↗

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