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T Kabashima

Publications and source records attributed to T Kabashima.

48 records · Page 3Linked to original sources

Fibronectin binds to C1q: possible mechanisms for their co-precipitation in cryoglobulins from patients with systemic lupus erythematosus.

Fibronectin and C1q frequently co-precipitated in cryoglobulins from patients with SLE. As a portion of the C1q molecule is similar to collagen to which fibronectin has a high affinity, we studied whether fibronectin specifically bound to C1q. Fibronectin was found to bind to both native and heat-inactivated C1q. The binding was enhanced by Ca++ and low ionic strength. We have also demonstrated that fibronectin is capable of binding to C1q fixed to immune complexes. The interaction between fibronectin and C1q may play a role in cryoglobulin formation and in clearance of immune complexes by reticuloendothelial system.

Antigen-Antibody Complex↗

Complement-mediated solubilization of immune complexes in systemic lupus erythematosus.

The capacity of complement-mediated solubilization of immune complexes (complex releasing activity: CRA) was studied in 63 sera from eight systemic lupus erythematosus (SLE) patients. CRA in sera of active SLE (35 +/- 17.%) was significantly lower than that of inactive SLE (64.1 +/- 24.1%, P less than 0.001). In addition, 20 of 23 sera collected during active diseases demonstrated CRA values less than 50% of the control pooled serum. On the other hand, CRA of 29 of 40 sera from inactive disease exceeded the 50% level. CRA in SLE sera correlated with complement component levels and in particular with the CH50. Serial determination of CRA and of levels of circulating immune complexes (CIC), C4 and C3 in two active patients indicated that the correlation between CRA and the complement components was positive, while that between CRA and CIC was negative. These studies provide evidence that CRA may be useful for following the activity of SLE and that CRA reflects the levels of the complement components of both classical and alternative pathways. The possibility that CIC may be solubilized and opsonized by complement and cleared by the reticuloendothelial system was discussed.

Adrenal Cortex Hormones↗