PubMed HealthSearch

Biomedical subjects

C de Groot

Publications and source records attributed to C de Groot.

8 recordsLinked to original sources

Efficient electric field-induced generation of hybridomas from human B lymphocytes without prior activation in vitro.

In this study we investigated whether electrofusion would enable efficient hybridization of human B cells to occur without the need of prior activation in vitro. Two cell lines, the murine myeloma SP 2/0 and murine-human heteromyeloma F3B6, were used as fusion partners, and hybridization of human B cells purified either from peripheral blood or from solid lymphoid tissue (tonsil) was studied. Optimal hybridization frequencies were obtained at a poration field strength of 3 to 4 kV/cm. Electrofusion appeared to be a very efficient method to hybridize tonsillar B lymphocytes, resulting on the average in a hydridoma outgrowth of 1 per 1400 lymphocytes in fusions with SP 2/0 and 1 per 3300 in fusions with F3B6. Hybridization frequency in polyethylene glycol-induced fusions was only 1 per 13,000 tonsillar lymphocytes. Seventy-five percent of the resulting hybridomas secreted human immunoglobulin, either IgM or IgG. Electric field-induced hybridization of peripheral blood B lymphocytes resulted in immortalization of 1 per 17,500 lymphocytes when using Sp 2/0 as a fusion partner, and 1 per 15,000 with F3B6 as a fusion partner. Polyethylene glycol fusions yielded only 1 hybridoma per 160,000 blood lymphocytes. On average, 60% of the hybridomas obtained by fusing peripheral blood B cells secreted human immunoglobulin. Both IgM and IgG secretors were found. Furthermore, by the use of a fusion chamber with a small volume (35 microliters), hybridomas could be generated from small numbers (300,000 to 55,000) of human B cells. In conclusion, human B cells can be hybridized by electrofusion with myeloma cells with efficiencies comparable to those found for murine splenocytes, without the need for prior activation in vitro.

B-Lymphocytes

Identification of structural differences between different forms of interleukin-2 (IL-2) using anti-(human recombinant) IL-2 monoclonal antibodies.

We have generated a panel of murine monoclonal antibodies (mAbs) directed against recombinant human interleukin-2 (rh IL-2). All mAbs have similar affinities (Kaff approximately equal to 10(-8) M) and are of the IgG1 isotype. Specificity of the mAbs has been established using an ELISA method and immunoprecipitation of native human interleukin-2 (nh IL-2) present in supernatants from PHA-stimulated human mononuclear cells (PBMNC). Four of the nine mAbs inhibit the rh IL-2-dependent proliferation of a murine cytotoxic T-lymphocyte line (CTLL-2). The estimated ID50, in the presence of 0.75 IU rh IL-2/ml, ranges from 2.0 micrograms/ml to 30 micrograms/ml final concentrations of the antibodies. Using different forms of IL-2 we found that the mAbs give different patterns of inhibition of the IL-2-dependent proliferation. One mAb (AMCIB 27) is able to discriminate between rh and nh IL-2. Findings with another mAb (AMCIB 24) indicate that possible functional differences between human IL-2 and recombinant murine (rm) IL-2 are caused by differences in the active sites. The results of this investigation show that it is possible to obtain mAbs, after immunization with rh IL-2, that differ in their ability to inhibit the biological action of different forms of IL-2.

Animals

Evidence for compartmentalization of functional subsets of CD2+ T lymphocytes in atopic patients.

Lymphokine secretion profiles were studied of human allergen-specific CD4+ T lymphocyte clones (TLC). To this aim, panels of house dust mite Dermatophagoides pteronyssinus (Dp)-specific TLC were generated from two atopic Dp-allergic patients, suffering from severe atopic dermatitis (AD1) and allergic asthma (AD2), respectively, and from a non-atopic individual (NAD). From AD1 additional TLC were cloned specific for tetanus toxoid or Candida albicans, both Ag that were not relevant for the atopic state of this patient. Secretion of IL-2, IL-4, and IFN-gamma was determined after specific stimulation of these TLC, using autologous monocytes as APC. With respect to the production of IL-4 and IFN-gamma, clearly distinct profiles were observed. All Dp-specific TLC from both atopic donors produced IL-4 but not IFN-gamma, whereas the Dp-specific TLC from NAD, as well as the tetanus toxoid- and C. albicans-specific TLC from AD1, all produced IFN-gamma but not or small quantities of IL-4. Most TLC from all panels produced IL-2. These lymphokine profiles were consistent for at least 3 days and were neither dependent on the dose of allergen nor on the atopic or nonatopic state of the donor of APC. The functional consequence of these restricted lymphokine profiles was stressed by the observation that, whereas Dp-specific TLC from AD1 and AD2 supported in vitro IgE production, this support could be abrogated by a Dp-specific TLC from NAD. The present results suggest that CD4+ T lymphocytes that produce IL-4, but not IFN-gamma, occur in high frequencies in the allergen-specific T cell repertoires of atopic donors, which may have important implications for the pathomechanism of atopic disease.

Allergens

Umbilical cord separation in twins.

In this study of twins it was found that the separation of the umbilical cord generally occurred earlier in the first born than in the second born infant. The times of cord separation of twin members are correlated and this correlation is stronger than could be expected by random pairing. However, the correlation was not stronger between monozygotic twin members than between dizygotic twin members.

Birth Order

Lymphocyte differentiation in the rabbit thymus.

Density separation of rabbit thymus lymphoid cells on a continuous and linear Ficoll-Metrizoate gradient resulted in the appearance of three subpopulations of lymphoid cells with peak fractions at densities of approx. 1.067, 1.077 and 1.084 g/ml. The subpopulation of the lowest density appeared to consist of cortisone-resistant cells of various size classes, all characterized by a relative low nucleo-cytoplasmic ratio. Glycerol-induced redistribution of particles within the plasma membrane (IMP) of the lymphoid cells, as revealed with the freeze-fracture technique, was present in the subpopulation of lowest density as well as in thymus lymphoid cells of cortisone-treated rabbits in a high percentage of the cells, and present in a very small percentage of the cells of highest density. It is concluded that an increase in the mobility of plasma membrane components may be a significant feature of T-cell education in the rabbit thymus.

Animals