Title of article
Hexosaminidase inhibitors as new drug candidates for the therapy of osteoarthritis Original Research Article
Author/Authors
Junjie Liu، نويسنده , , Alexander R Shikhman، نويسنده , , Martin K Lotz، نويسنده , , Chi-Huey Wong، نويسنده ,
Issue Information
ماهنامه با شماره پیاپی سال 2001
Pages
11
From page
701
To page
711
Abstract
Abstract
Background: Articular cartilage from patients with osteoarthritis is characterized by a decreased concentration and reduced size of glycosaminoglycans. Degeneration of the cartilage matrix is a multifactorial process, which is due in part to accelerated glycosaminoglycan catabolism. Recently, we have demonstrated that hexosaminidase represents the dominant glycosaminoglycan-degrading glycosidase released by chondrocytes into the extracellular compartment and is the dominant glycosidase in synovial fluid from patients with osteoarthritis. Inhibition of hexosaminidase activity may represent a novel approach to the prevention of cartilage matrix glycosaminoglycan degradation and a potentially new strategy to treat osteoarthritis.
Results: We have synthesized and investigated a series of iminocyclitols designed as transition-state analog inhibitors of human hexosaminidase, and demonstrated that the five-membered iminocyclitol 4 expresses the strongest inhibitory activity with Ki=24 nM. Inhibition of hexosaminidase activity in human cultured articular chondrocytes and human chondrosarcoma cells with iminocyclitol 4 resulted in accumulation of hyaluronic acid and sulfated glycosaminoglycans in the cell-associated fraction. Similarly, incubation of human cartilage tissue with iminocyclitol 4 resulted in an accumulation of glycosaminoglycans in the pericellular compartment.
Conclusions: Inhibition of hexosaminidase activity represents a new strategy for preventing or even reversing cartilage degradation in patients with osteoarthritis.
Article Outline
Keywords
biotransformation
Journal title
Chemistry and Biology
Serial Year
2001
Journal title
Chemistry and Biology
Record number
1158389
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