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Biomedical subjects

K Thielemans

Publications and source records attributed to K Thielemans.

14 recordsLinked to original sources

Evidence that multiple myeloma Ig heavy chain VDJ genes contain somatic mutations but show no intraclonal variation.

To investigate whether somatic hypermutation occurs in multiple myeloma (MM) Ig VH region genes, we have cloned and sequenced the expressed VH genes from five cases of MM. The sequences were obtained after polymerase chain reaction (PCR) on total RNA isolated from the bone marrow, using 5' VH family-specific leader and 3' C gamma- or C alpha-specific primers. MM-specific CDR3 oligonucleotides were produced to isolate VH genes expressed by the malignant plasma cells. In all five cases, the productive Ig gene used the VH3 family. Extensive sequence analysis of multiple independent M13 clones showed no intraclonal variation with no evidence for ongoing somatic hypermutation in MM VH region genes. We were able to identify possible germline counterparts of the expressed VH genes in two cases. Comparison of these genes shows that the MM VH region genes have somatic mutations characteristic for an antigen-driven process. In the other three cases, no close homology could be found with published VH3 sequences. These findings implicate that, in MM, clonal proliferation takes place in a cell type that has already passed through the phase of somatic hypermutation.

Adult

Immune changes induced by electroconvulsive therapy (ECT).

There is a significant increase in the percentage and absolute number of activated lymphocytes (OKT10+, IL2R1+) after ECT treatment of major depressive disorder. There is an acute decrease in the absolute number of total lymphocytes, T8+ and Leu11+ cells one hour after a single ECT.

Adult

Ly-1 (CD5), a membrane glycoprotein of mouse T lymphocytes and a subset of B cells, is a natural ligand of the B cell surface protein Lyb-2 (CD72).

CD5 is a 67-kDa glycoprotein expressed on the cell surface membrane of all T lymphocytes and on a small proportion of B lymphocytes. The physiologic role of this Ag is still unknown. Structural and functional studies of CD5 suggest that it might act as a receptor for a positive signal. CD5-specific mAb augment CD3- or mitogen-induced T cell proliferation, IL-2 secretion, and IL-2R expression and induce a rise in intracellular [Ca2+]. In this report, we describe the purification of mouse CD5 protein (mCD5) and its use as a probe to search for the ligand of CD5. We demonstrate that mCD5 specifically interacts with the mouse B cell differentiation Ag CD72/Lyb-2. Three serologically defined allelic forms of mouse CD72/Lyb-2 can all interact with mCD5. We further show that mCD5 can interact with human CD72/Lyb-2, and similarly, that human CD5 can interact with mouse CD72/Lyb-2. These studies may have major implications for the mechanisms of T-B cell communication.

Animals

Antigen-pulsed dendritic cells can efficiently induce an antibody response in vivo.

The aim of this study was to develop an immunization procedure avoiding external adjuvant. Data are presented showing that syngeneic dendritic cells (DC), which have been pulsed in vitro with antigen, induce a strong antibody response in mice. By contrast, antigen (Ag)-pulsed low-density B cells, although equally able to induce interleukin 2 secretion by an Ag-specific T cell hybridoma in vitro, only weakly prime the mice in vivo. Moreover, we show that the injection of Ag-pulsed DC induces the synthesis of isotypes similar to the immunoglobulin classes detected after immunization with the same Ag in complete Freund's adjuvant. Importantly, high amounts of IgG2a antibodies are produced, suggesting that T helper type 1 cells are activated. Collectively, these data indicate that DC can initiate a primary humoral response and that they may be used as physiological adjuvant in vivo.

Animals

Bispecific antibody therapy of two murine B-cell lymphomas.

Numerous in vitro studies have shown that T lymphocytes can be targeted towards any target cell by using bispecific antibodies (bsAbs) with specificity of the CD3/TCR complex and a target cell antigen. We have produced bsAbs directed against the membrane expressed idiotype of the murine B cell lymphomas BCLI and 38C13, and murine CD3 complex. The dual specificity of the hybrid-hybridoma produced monoclonal antibodies (MAbs) could be demonstrated by flow cytometry, the induction of T cell proliferation, the induction of IL2 secretion by polyclonal T cells, and redirected lysis of the relevant target cells. Immunotherapy of tumor bearing animals demonstrated that bsAbs could efficiently target T cells towards the tumor cells, that tumor cell--T cell bridging is established in vivo, and that both T cell subsets contribute to tumor regression resulting in long-term survival and cure of the lymphomas.

Animals

Treatment of mice bearing BCL1 lymphoma with bispecific antibodies.

Bispecific antibodies with specificity for the CD3/TCR complex of CTL and a target cell Ag can bridge both cell types and trigger cellular cytoxicity. We have produced bispecific antibodies, directed against the surface-expressed Id of the mouse BCL1 lymphoma and the mouse CD3 complex, by hybrid-hybridoma fusion. Two recombination Ig were purified to homogeneity: B1 X 7D6F, which is univalent for Id and CD3 binding and B1 X 7D6M, which is univalent for Id binding but has lost the CD3 binding because of association of the anti-CD3 H chain with the inappropriate L chain. In vitro studies indicate that bridging the TCR/CD3 complex of resting T cells with tumor IgM Id and the appropriate bispecific antibody induced proliferation and secretion of IL-2. Furthermore, in cytotoxicity assays using 51Cr-labeled tumor cells, preactivated T cells could be targeted with the bispecific antibody to give complete lysis of the Ag+ tumor. Finally, the activity of the bispecific antibody was confirmed in vivo. Animals treated i.v. with 5 micrograms of bispecific antibody 9 days after receiving BCL1 cells were cured. Furthermore, when these animals were checked at 150 days for dormant or variant tumors, as have been reported after other forms of immunotherapy in this model, none could be found. Immunotherapy experiments comparing a mixture of control antibodies with the bispecific antibody demonstrate that tumor cell-T cell bridging is established in vivo and is required for therapeutic success. These results indicate the importance of bispecific antibodies as a novel form of treatment for cancer.

Animals

Treatment of murine B cell lymphoma with bispecific monoclonal antibodies (anti-idiotype x anti-CD3).

It has previously been reported that T lymphocytes can be targeted by using bispecific antibodies consisting of anti-target antibody and anti-CD3. In the present study, a bispecific mAb was developed by somatic hybridization of mouse hybridomas, one producing a mAb against the Id determinant of the mouse B cell lymphoma 38C13 and the other a mAb against a polymorphic determinant on murine CD3. The bispecific antibody, anti-38C13 x anti-CD3, is bi-isotypic (IgG1 x IgG2a) and was purified by ion exchange and affinity chromatography. The dual specificity of the hybrid hybridoma-produced mAb could be demonstrated by flow cytometry, the induction of T cell proliferation, the induction of IL-2 secretion by polyclonal T cells, and redirected lysis of the relevant target cells. The hybrid (bi-isotypic) Fc part of the bispecific antibodies was nonfunctional in FcR-dependent redirected lysis. In vivo studies demonstrate that this bispecific mAb could efficiently target T cells towards the tumor cells, resulting in long term survival and cure of the lymphoma.

Animals

The B-cell surface protein CD72/Lyb-2 is the ligand for CD5.

The glycoprotein CD5 is expressed on the surface membrane of all mature T cells and a small proportion of B lymphocytes. Its exact role in immune interactions is still unknown. Studies indicate that CD5 functions both in mice and humans as a receptor, delivering co-stimulatory signals to T cells in a manner similar to CD2 (ref. 11) and CD28 (ref. 12). Anti-CD5 antibodies stimulate both T-cell proliferation mediated by CD3 in association with the T-cell receptor and secretion of interleukin-2 and expression of its receptor, as well as inducing an increase in intracellular Ca2+ concentration (refs 5-10). To identify the ligand for CD5 we purified the human CD5 protein, labelled it with biotin and used it as a probe. Here we report that CD5 specifically interacts with the cell-surface protein CD72 exclusive to B cells. This interaction is blocked by anti-CD72 antibodies, but not by any other anti-B-cell antibodies. Moreover, non-B cells (mouse L-cell fibroblasts and human Jurkat T cells) expressing a transfected human CD72 complementary DNA could bind to the CD5-biotin conjugate. The results demonstrate that the B-cell surface protein CD72 (Lyb-2 in mice) is the ligand for CD5.

Antigens, CD

Southern blot analysis in a case of Richter's syndrome. Evidence for a postrearrangement heavy chain gene deletion associated with the altered phenotype.

Richter's syndrome (RS) can be defined as the emergence of an aggressive lymphoma in patients suffering from chronic lymphocytic leukemia (CLL). The authors performed immunophenotypic and Southern blot analysis of the peripheral blood and tissue specimen of a patient with RS. Using immunoperoxidase and immunogold-silver staining techniques and a panel of monoclonal antibodies, the authors found that the large cells characteristic of RS showed an altered immunophenotype as compared with the CLL cells and did not express mu heavy chain. Southern blot analysis revealed identical kappa light chain rearrangements in both tumoral cell populations consistent with a common clonal origin. Using the JH probe and several restriction enzymes, the authors also found evidence for a postrearrangement deletion of the heavy chain mu gene. These findings suggest that in this case of RS, a deletion of the heavy chain mu gene resulted in loss of mu expression by the larger cells that were characteristic of RS and was associated with their altered phenotype.

Blotting, Southern

Measured attenuation correction using the Maximum Likelihood algorithm.

Quantitative determination of local radioactivity concentration in positron emission tomography (PET) requires a good attenuation correction procedure to reconstruct the emission image. Using a similar Maximum Likelihood (ML) algorithm as for the reconstruction of the emission image, a method is proposed to reconstruct a transmission image, i.e. a map of absorption coefficients. This reconstructed transmission image is then used to calculate the attenuation correction factors needed for the ML reconstruction of the emission image. This approach takes automatically into account the convolution step in the acquisition process (caused by various smoothing factors, e.g. the detector width). This results in appreciable noise suppression without loss of resolution due to filtering, thus making the reconstructed images easier to interpret. A comparison is made with other estimates for the measured attenuation correction using phantom studies.

Algorithms

Isotype switch and idiotype variation in hairy cell leukemia.

Hairy cell leukemia (HCL) cells are B lymphocytes expressing monoclonal surface bound immunoglobulins, B cell specific antigens, and activation markers. Based on immunophenotyping analysis, HCL cells have been reported to express simultaneously multiple Ig heavy chain isotypes. This is in contrast with the majority of other B cell malignancies. To analyse the tumor cell Ig in more detail, we have prepared somatic cell hybridomas from two patients with HCL. In both cases we found that the tumor cell derived hybridomas secreted IgM, IgG, or IgA indicating that a class-switch event does occur within the monoclonal tumor cell population. However these hybridomas expressed only single isotypes. The clonal relatedness of the tumor-derived Ig was shown by Ig gene analysis and by reactivity with a panel of idiotype specific antibodies. The tumor Ig of one patient analysed showed a striking variability in idiotope expression, indicative of somatic mutations of the expressed Ig genes. To our knowledge this is the first example of HCL and of a B cell malignancy other than follicular lymphoma for which somatic mutations have been demonstrated. This finding might be important for the therapeutic approach based on monoclonal anti-idiotype antibodies.

Antibodies, Anti-Idiotypic