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Chondroprotective effects of glucosamine involving the p38 MAPK and Akt signaling pathways

Yi-Cheng Lin1, Yu-Chih Liang, Ming-Thau Sheu

  • 1Department of Orthopedics, Mackay Memorial Hospital, Taipei, Taiwan, ROC.

Insights

Glucosamine (GLN) inhibits interleukin-1 beta (IL-1beta)-induced matrix metalloproteinases (MMPs) in chondrocytes by modulating NF-kappaB and AP-1 pathways. This suggests GLN

Area of Science:

  • Molecular Biology
  • Cell Biology
  • Biochemistry

Background:

  • Interleukin-1 beta (IL-1beta) stimulates matrix metalloproteinases (MMPs) in chondrocytes, contributing to cartilage degradation.
  • Glucosamine (GLN) is investigated for its potential chondroprotective effects.
  • Understanding the signal transduction pathways involved is crucial for elucidating GLN's mechanism of action.

Purpose of the Study:

  • To elucidate the signal transduction pathway of glucosamine (GLN) in regulating matrix metalloproteinases (MMPs) gene expression in chondrocytes stimulated by IL-1beta.
  • To investigate GLN's effects on key signaling molecules including NF-kappaB, AP-1, MAPKs, and Akt.
  • To determine the role of these pathways in the chondroprotective effects of GLN.

Main Methods:

  • Chondrosarcoma cells were stimulated with IL-1beta.
  • Effects of GLN on MMP-3 mRNA and protein levels were assessed.
  • Activation of JNK, ERK, p38, NF-kappaB, AP-1, and PI3-kinase/Akt pathways were analyzed, including nuclear translocation of NF-kappaB.

Main Results:

  • GLN inhibited IL-1beta-induced MMP-3 expression and synthesis at the transcriptional level via NF-kappaB and AP-1.
  • GLN reduced NF-kappaB translocation by inhibiting IkappaB degradation and modulated MAPK pathways (JNK, ERK, p38).
  • GLN activated the Akt pathway, alone and synergistically with IL-1beta, and inhibition of p38 pathway explained GLN's chondroprotective effects.

Conclusions:

  • GLN exerts chondroprotective effects by inhibiting MMP-3 production through modulation of NF-kappaB, AP-1, and p38 signaling pathways.
  • The Akt pathway may represent another signaling mechanism for GLN's chondroprotective actions, including proteoglycan synthesis.
  • Understanding these pathways provides insight into the therapeutic potential of GLN in cartilage diseases.

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