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K L Patton

Publications and source records attributed to K L Patton.

3 recordsLinked to original sources

Measurement of an adhesion molecule as an indicator of inflammatory disease activity. Up-regulation of the receptor for hyaluronate (CD44) in rheumatoid arthritis.

The hyaluronate receptor (CD44) molecule is a multifunctional cell surface protein involved in T cell activation, monocyte cytokine release, fibroblast locomotion, and lymphocyte binding to high endothelial venules. To study the roles CD44 molecules play in inflammatory synovitis, we measured expression of CD44 in inflamed and noninflamed synovial fluid and tissue, using indirect immunofluorescence assays on tissue sections and quantitative Western blot analysis. The ability of purified CD44 protein to modulate T cell responses was tested in T cell activation assays in which CD44-containing liposomes were added in vitro. CD44 was widely expressed on many synovial cell types, and synovial tissue from rheumatoid arthritis (RA) patients contained 3.5 times more CD44 than tissue from osteoarthritis patients and 10.7 times more than tissue from patients with joint trauma. The level of soluble CD44 in RA synovial fluid was elevated only in fluids with low cell counts (less than or equal to 7,000/mm3), and not in RA synovial fluid with higher cell counts. Soluble purified CD44 protein in liposomes partially suppressed T cell activation in vitro. These data demonstrate that CD44 is up-regulated on many synovial cell types in patients with RA, and that the level of CD44 present in synovial tissue is related to the degree of synovial inflammation. Determination of ways to inhibit the proinflammatory functions of immune cell membrane CD44 molecules may provide new therapeutic modalities for RA.

Adult

Sphingosine inhibits monocyte tissue factor-initiated coagulation by altering factor VII binding.

Tissue factor is a lipoprotein, expressed on the surface of cells, which binds coagulation Factor VII or VIIa, leading to activation of Factors X and IX with subsequent fibrin generation. Cellular tissue factor activity is important in pathophysiologic processes such as inflammation and disseminated intravascular coagulation. In this study, the long-chain base sphingosine inhibited coagulation initiated by lipopolysaccharide-stimulated intact human monocytes. Sphingosine (5-100 microM) also profoundly inhibited thromboplastin-initiated coagulation (greater than 90% decrease in thromboplastin activity). This inhibition was dose- and time-dependent. Sphingosine inhibited neither the intrinsic pathway of coagulation nor thrombin generation of fibrin. The sphingosine analogues sphingomyelin, ceramide, or N-acetylsphingosine did not affect thromboplastin activity, suggesting that the polar head of sphingosine was necessary for interaction of the molecule with the coagulation system. Investigation of the biochemical mechanism revealed that sphingosine (5-50 microM), but neither sphingomyelin nor ceramide, inhibited specific binding of radiolabeled Factor VII to lipopolysaccharide-stimulated intact monocytes. The results suggest that sphingosine may regulate monocyte tissue factor-initiated coagulation by modulating Factor VII binding to tissue factor. Sphingosine may represent a new class of inhibitors of hemostasis.

Blood Coagulation