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L Santos-Argumedo

Publications and source records attributed to L Santos-Argumedo.

27 records · Page 2Linked to original sources

A B lymphocyte surface molecule mediating activation and protection from apoptosis via calcium channels.

A rat mAb (NIM-R5) was prepared against a 42-kD B cell activation Ag (p42). The expression of p42 is increased upon activation. NIM-R5 induces an increase of intracellular Ca2+, due to influx from the exterior milieu via calcium channels. This stimulation does not prejudice further stimulation with anti-Ig, and thus p42 constitutes an activation signal independent of membrane Ig. The antibody induces increased expression of class II molecules on resting B lymphocytes and prepares the cells for "spreading" when interacted with immobilized anti-class II antibody. The antibody alone is weakly mitogenic and comitogenic with IL-4 on resting B cells. Of particular interest, NIM-R5 induces proliferation and rescue from apoptosis in B cells activated in vitro. In conclusion, NIM-R5 induces an Ig-independent activation and proliferation of resting and activated B cells. This antibody does not recognize other known B cell activation Ag such as CD23, CD40, or CD72. We therefore propose that the p42 Ag is a glycoprotein with an important role in the regulation of B lymphocyte activation and survival.

ADP-ribosyl Cyclase 1↗

Antibodies to murine CD40 stimulate normal B lymphocytes but inhibit proliferation of B lymphoma cells.

A rat anti-mouse CD40 antiserum has been prepared by hyperimmunisation of Lewis rats with a highly purified preparation of the recombinant extracellular domain of murine CD40. This antiserum specifically binds CD40-expressing L cell transfectants, but not untransfected L cells, and induces vigorous proliferation of highly purified small dense B cells obtained from the spleens of unstimulated mice. Anti-CD40-induced B cell proliferation can be augmented by the addition of IL-4 and is inhibited by purified recombinant soluble mouse CD40. Interestingly the same anti-CD40 antiserum specifically inhibits the in vitro growth of A.20 murine B lymphoma cells. The specificity of this inhibition can be demonstrated by reversing the effect with purified recombinant soluble mouse CD40. These data implicate CD40 as a possible target for therapeutic intervention in the treatment of B lymphomas.

Animals↗

Identification and characterization of the murine homologue of CD22, a B lymphocyte-restricted adhesion molecule.

The human B lymphocyte-specific Ag, CD22, is a cell adhesion molecule expressed on the surface during a narrow window of B cell development, coincident with surface IgD. A ligand for CD22 has recently been identified on human T cells as the low molecular mass isoform of the leukocyte common Ag, CD45RO. CD22 has been reported to function in the regulation of both T and B cell activation in vitro. In this study, we report the isolation and expression of a molecular cDNA clone encoding the murine homologue of CD22, mCD22. Within their predicted protein sequences, murine and human sequences overall have 62% identity, which includes 18 of 20 extracellular cysteines and six of six cytoplasmic tyrosines. BHK cells transfected with mCD22 cDNA specifically adhere to resting and activated T lymphocytes and in addition bound activated, but not resting, B cells. Five Th clones were analyzed for their ability to adhere to mCD22; two Th0 clones and one Th1 clone bound CD22+ BHK transfectants, but not all T cell clones bound CD22+ cells: another Th1 clone and a Th2 clone did not. mCD22+ BHK transfectants were also specifically bound by the B cell-specific mAb, NIM-R6, demonstrating that this mAb is specific for murine CD22. Human cell lines expressing the counter-receptors for human CD22 were also examined for adhesion to the murine CD22 homologue; the epitope responsible for B cell adhesion to CD22 is conserved, whereas the T cell epitope binding to CD22 is not. The cDNA and mAb to murine CD22 will be useful for defining the in vivo function of CD22.

Amino Acid Sequence↗

[Blood concentrations of immunoglobulins in children with vitamin A deficiency].

The object of this study is to measure the influence that vitamin A has upon seric concentrations of different isotypes of immunoglobulins (IgM, IgG, IgA) in children with a normal nutritional state or a slightly subnormal one, as well as that of patients with lower respiratory infections. Fifty two children were studied over a period of 24 months. Twenty eight of these were from an orphanage, while 24 were hospitalized, due to a low respiratory infection. The patients with lower respiratory infection showed normal average concentration of vitamin A, but under that of the orphanage (p less than 0.025). It was also observed that malnutrition influences the seric concentrations of immunoglobulins, which were higher in normal individuals; never the less, when this group show deficiency of vitamin A the serum concentration of IgM became lower in the orphanage, malnutrition children. In a similar way, a lowering of IgG was observed in patients with lower respiratory infections and vitamin A deficiency, while no alterations were found in the serum concentration of IgG in any of the groups studied with vitamin deficiency. It is concluded that the concentrations of vitamin A and the nutritional state modify serum values of IgM and IgG.

Agammaglobulinemia↗