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Biomedical subjects

H Tesch

Publications and source records attributed to H Tesch.

At least 91 records · Page 5Linked to original sources

A deletion mutant of Pseudomonas exotoxin-A fused to recombinant human interleukin-9 (rhIL-9-ETA') shows specific cytotoxicity against IL-9-receptor-expressing cell lines.

The receptor for human interleukin-9 (hIL-9) might be a target for selective immunotherapy. It is expressed on a variety of malignant cells, including Hodgkin's lymphoma, non-Hodgkin lymphoma and acute myeloid leukemia (AML). We therefore constructed a new chimeric toxin by fusing hIL-9-cDNA to modified Pseudomonas aeruginosa exotoxin A (ETA'). The binding properties of the new recombinant protein, rhIL-9-ETA', were assessed on different cell lines expressing the hIL-9 receptor. The antitumor potency of rhIL-9-ETA' was evaluated against the Hodgkin-derived cell lines L540Cy, KM-H2 and L1236, the Burkitt lymphoma cell line Daudi, the erythroleukemia cell line K562, and the mastocytoma cell line P815-hIL9R, transfected with hIL-9 receptor cDNA. Recombinant hIL-9-ETA' exhibited potent specific cytotoxic effects against P815-hIL9R, K562 and L1236 cells, inhibiting protein synthesis by 50% (IC50) at concentrations of 0.05, 0.58 and 3 micrograms/ml respectively. The cytotoxic effect was abrogated after addition of polyclonal antibodies against the human IL-9. rhIL-9-ETA' might be of potential use against hIL-9R-expressing malignancies.

ADP Ribose Transferases↗

Idiotype vaccination strategies against a murine B-cell lymphoma: dendritic cells loaded with idiotype and bispecific idiotype x anti-class II antibodies can protect against tumor growth.

Three strategies were used to evaluate 38C13 B-cell lymphoma-specific idiotype immunization to protect against subsequent lymphoma challenge in C3H/He mice. It was observed that tumor-specific immunity could be induced by immunization with (i) KLH-conjugated 38C13 B-cell lymphoma idiotype in complete Freund's adjuvants (survival rate 80%), (ii) dendritic cells pulsed in vitro with native idiotype protein (survival rate 80%), and (iii) bispecific antibodies composed of B-lymphoma-related idiotype and an MHC class II binding moiety (survival rate 40%). Presentation of idiotype determinants by dendritic cells or bispecific antibody resulted in lymphoma-specific immunity and obviated the requirement for carrier protein or adjuvant. Moreover, primed dendritic cells induced predominant development of a tumor-specific T-cell response. Each of these immunization strategies resulted in long-term survival without the emergence of idiotype variants or the induction of tumor dormancy.

Animals↗

Isolation of the human interleukin 10 promoter. Characterization of the promoter activity in Burkitt's lymphoma cell lines.

Interleukin 10 (IL-10) is a pleiotropic growth and differentiation factor with potent suppressor functions on macrophages, T cells and NK cells and contributes to the regulation of proliferation and differentiation of B cells. The expression of IL-10 appears to be tightly regulated, as the levels of constitutive expression in normal cells is extremely low. In contrast to normal haematopoetic cells, Epstein-Barr virus (EBV)-immortalized B cells and EBV-positive Burkitt's lymphoma cells express high levels of IL-10 constitutively. In this report we have cloned and sequenced IL-10 promoter fragments and analysed their activity in EBV-positive Burkitt's lymphoma cells. A nested set of DNA fragments from the IL-10 gene 5'-flanking region was placed upstream of the luciferase gene and assayed for their ability to direct luciferase expression in Burkitt's lymphoma cells. We have identified elements within the 5'-flanking region of the human IL-10 gene which can activate or suppress the constitutive expression of IL-10. The essential promoter of the IL-10 gene, which induces low levels of luciferase expression, was found to require the major start site of transcription (+1), a TATA-box (-77) and up to 150 additional 5' nucleotides. Positive regulatory sequences are located between -1100/-900. Negative regulatory elements which abolish luciferase activity were identified between -800/-300.

Base Sequence↗

Isolation and characterization of allergen-binding cells from normal and allergic donors.

BACKGROUND: Flow cytometry of the immune system so far has been limited to the analysis of subpopulations according to lineage markers. The cells involved in a particular immune response could not be assayed due to their low frequency. Here we show the potential of antigen-specific high gradient magnetic cell sorting to enrich cells for visualisation in multiparameter cytometry, functional studies and immortalization. OBJECTIVES: The aim of this study was the development of an efficient technology for staining and isolation of antigen-binding cells from human peripheral blood. In particular, allergen-specific cells from normal and allergic donors should be analysed and compared to develop a cellular diagnosis of allergy. STUDY DESIGN: The rare antigen-specific cells were sorted by high-gradient magnetic cell sorting with MACS. Haptenized phospholipase A2 (PLA2), the major allergen of bee venom, or haptenized ParoI, the major allergenic component of Parietaria officinalis, were used as antigens. The cells from normal and allergic donors, binding to the allergen were characterized phenotypically by immuno-fluorescence. Allergen-specific B-cells were immortalized by EBV transformation. RESULTS AND CONCLUSION: Allergen-specific cells can be enriched from blood of both allergic and normal donors to purities of up to 75%, by high gradient magnetic cell sorting. The specificity of labelling with allergen was confirmed by establishing allergen-specific EBV-transformed B-cell lines from the sorted cells. Clear differences exist in the cellular composition of allergen-binding cells from normal compared to allergic donors. In normal donors the allergen-binding cells are B-cells expressing CD19 and CD21. In allergic donors, in addition to allergen-binding B-cells, occurring in about equal absolute numbers as in normal donors, basophilic granulocytes are labeled by allergen. These cells express CD38, CD9 and CD25 on their surface, and stain for IgE.

Allergens↗

Serum cytokine levels correlate with clinical parameters in Hodgkin's disease.

BACKGROUND: It has been suggested that cytokines are involved in the pathogenesis of Hodgkin's disease. Enhanced expression of various cytokines has been demonstrated in cell lines and biopsy specimens from patients with Hodgkin's disease (HD). PATIENTS AND METHODS: In this investigation 14 cytokines were analysed by ELISA in sera of a large panel of patients with HD and compared with clinical and serological parameters. RESULTS: Increased levels of soluble IL-2 receptors (sIL-2R), IL-6, IL-7, IL-8 and G-CSF, were found in many patients with HD as opposed to healthy individuals. In contrast, IL-1 alpha, IL-1 beta, IL-2, IL-3, IL-4, TNF alpha, TNF beta and GM-CSF were rarely detectable. Serum concentrations of sIL-2R, IL-6 and IL-7 were significantly correlated with advanced stage of HD and, together with G-CSF levels, with the presence of B-symptoms. In addition, elevated cytokines correlated with several laboratory parameters. In the majority of patients the serum levels of cytokines decreased after therapy. However, elevated cytokine levels persisted in some patients in complete remission. Patients with normal IL-6 levels had better event-free survivals than patients with elevated IL-6 levels but this difference has not reached significance. CONCLUSION: Our results indicate that enhanced levels of sIL-2R, IL-6, IL-7, IL-8 and G-CSF, are correlated with disease activity and clinical symptoms in HD.

Adolescent↗

Further chemotherapy versus low-dose involved-field radiotherapy as consolidation of complete remission after six cycles of alternating chemotherapy in patients with advance Hodgkin's disease. German Hodgkins' Study Group (GHSG).

OBJECTIVE: It was the aim of this prospective randomized multicenter study to compare chemotherapy and radiotherapy as consolidation treatments in patients achieving complete remission (CR) after 6 cycles of doxorubicin-containing chemotherapy in advanced-stage Hodgkin's disease (HD). METHODS: A total of 288 previously untreated patients aged 18-60 years with stage IIIB or IV HD received induction chemotherapy with 3 X (COPP + ABVD). Patients achieving CR were eligible for randomisation to either 20 Gy radiotherapy to initially involved fields (RT-arm) or to an additional 1 X (Copp + ABVD) (CT-arm ). Patients with nodal PR were allocated to more intense radiotherapy (IRT-arm: 20 Gy IF, 40 Gy to persisting tumor). Four patients with persisting organ involvement after induction received salvage chemotherapy. RESULTS: Of 288 patients, 171 (59%) achieved CR after induction chemotherapy. Of these, 100 patients were successfully randomized to RT or CT. In the CT arm relapses were observed on 10 of 49 patients compared with 13 of 51 patients in the RT arm (p = n.s.). Fifty patients refused randomisation and for them a treatment was chosen, and 21 patients refused any further treatment. Of these 21 patients with no consolidation therapy, 9 relapsed, indicating an approximately 3-fold increased relapse risk compared with those receiving either of the consolidation therapies. No relapse was observed in initially involved lung or liver sites. Adverse prognostic factors for freedom from treatment failure and survival were low hemoglobin and large mediastinal mass at initial presentation. CONCLUSIONS: No statistically significant differences in treatment efficacy were detected between 20 Gy IF radiotherapy and 1X (COPP + ABVD) chemotherapy following CR after six cycles of alternating chemotherapy in patients with advanced-stage HD. However, limited observations in a non-randomized cohort indicate that patients without consolidation treatment of CR after 6 cycles of chemotherapy may have an elevated risk of relapse.

Adolescent↗

Differentiation of cytotoxicity using target cells labelled with europium and samarium by electroporation.

We report the simultaneous use of europium-DTPA (Eu-DTPA) and samarium-DTPA (Sm-DTPA) in cytotoxicity experiments to analyze simultaneously LAK and NK cell lysis and to differentiate between specific target lysis and bystander killing. The target cells were either labelled with Eu-DTPA or Sm-DTPA chelates by electroporation, which permits the use of target cell lines or primary leukemic B cells (B-CLL) that cannot be labelled by the conventional dextran-sulphate method. The release of europium and samarium reaches a maximum at comparable time intervals (2-3 h). Due to the shorter counting interval within the samarium window the labelling efficiency is about ten times less efficient compared to europium. Using europium as label for the LAK target Daudi and samarium as label for the NK sensitive cell line K562 the differentiation of LAK versus NK activity can be performed in a single culture assay. Also, the killing of B cells and bystander cells by cytotoxic T cells was analyzed in a system where T cells were redirected to B cells through CD3 x CD19 bispecific antibodies. In fact, no bystander killing was noted when bispecific antibodies were used to bridge cytotoxic T cells to the B cells. This approach provides a simple non-radioactive method for evaluating cytotoxicity against two different cells in a single culture well.

Cell Line↗

The Met/hepatocyte growth factor receptor (HGFR) gene is overexpressed in some cases of human leukemia and lymphoma.

The proto-oncogene c-met encodes a heterodimeric (alpha, beta) tyrosine kinase receptor which binds the hepatocyte growth factor (HGF). Recently, overexpression of the Met/HGF receptor gene has been detected in fresh samples of carcinomas and in epithelial tumor cell lines but not in cell lines derived from human leukemia and lymphoma. Our analysis of 50 primary samples of human leukemia and lymphoma and 23 hematopoietic cell lines revealed expression of mRNA and protein of the met/HGF receptor in 6 out of the 73 hematopoietic tumor samples analyzed. Four of the six samples positive for expression of the Met/HGF receptor gene were derived from patients with Hodgkin's disease. In addition, in one Burkitt's lymphoma cell line and in one acute myeloid leukemia (AML), expression of the Met/HGF receptor gene was detected. In normal unstimulated lymphocytes, granulocytes or monocytes we did not find expression of the Met/HGF receptor gene. Upon stimulation with the phorbol ester TPA we detected a weak expression of Met/HGF receptor specific transcripts of 9.0 kb in peripheral blood mononuclear cells of a healthy donor. Cytogenetic analyses of three of the four cell lines which express the Met/HGF receptor gene revealed structural or numerical abnormalities of the long arm of chromosome 7, where the Met/HGFR gene is located, in each of the three cell lines analyzed. In one of these cell lines (L540) the Met/HGFR gene is translocated to a marker chromosome. Southern blot and pulsed field gel electrophoresis experiments did not show any rearrangement in a region of 600 kb around the Met/HGF receptor gene excluding an activation of Met/HGFR by a TPR/Met oncogenic rearrangement as described for MNNG-HOS cells and for some gastric tumors. Our data indicate that the Met/HGFR gene is deregulated in a few cases of human leukemia, Burkitt's lymphoma and Hodgkin's disease possibly by chromosomal rearrangements resulting in an overexpression of the normal Met/HGF receptor mRNA and protein without formation of a hybrid gene.

Chromosome Aberrations↗

Cytolysis of leukemic B-cells by T-cells activated via two bispecific antibodies.

Bispecific monoclonal antibodies can be used in the activation of effector cells to lyse autologous tumor cells. We analyzed the activation of human T-cells in vitro with bispecific monoclonal antibodies, which were generated by hybridoma-hybridoma fusion. Preactivated allogeneic and autologous T-cells could be triggered to lyse tumoral B-cells in the presence of CD3 x CD19 bispecific antibodies. In addition, the combined use of two CD3 x CD19 plus CD28 x CD22 bispecific antibodies induced optimal interleukin 2 secretion by Jurkat T-cell acute lymphocytic leukemia cells in the presence of target B-cells. The same antibody combination was able to generate cytolytic effector cells without prior activation, when resting T-cells were cocultured with freshly isolated autologous leukemic B-cells in the presence of the bispecific antibodies. The results suggest that signals required to activate cytolytic T-cell precursors can be provided by the two bispecific antibodies. Although activation of resting T-cells can be achieved by CD3 x CD19 bispecific antibodies in association with monospecific bivalent CD28 antibodies, the second bispecific antibody, CD28 x CD22, further increases the specificity of the target cell dependent activation of T-cells. When used for immunotherapy of B-cell malignancies, the CD3 x CD19 and CD28 x CD22 bispecific antibody combination may avoid the need for ex vivo activated effector cells, because the antibodies may induce T-cell activation directly at the tumor site.

Animals↗

Lysis of malignant B cells from patients with B-chronic lymphocytic leukemia by autologous T cells activated with CD3 x CD19 bispecific antibodies in combination with bivalent CD28 antibodies.

Bispecific antibodies (bi-MABs) can be used to target T cells to autologous tumor cells. It has been shown that the activation of resting human T cells requires two independent signals, namely the cross-linking of the T-cell receptor (TCR)-CD3 complex together with the CD28 homodimer. In the present study, we demonstrate the activation of T cells from patients with chronic lymphocytic leukemia (CLL) using bi-MABs against the CD3 and CD19 antigens (CD3 x CD19) in combination with monospecific, bivalent antibodies against the CD28 antigen. Mononuclear cells from patients with CLL were cultured with the bi-MAB CD3 x CD19 and monospecific CD28 antibodies. The CD3 x CD19 bi-MABs were isolated by the hybridoma-hybridoma fusion technique and purified by hydrophobic interaction chromatography. T-Cell activation as demonstrated by increased proliferation, upregulation of T-cell activation markers (CD25, CD38), and cytotoxicity against autologous CLL cells and allogeneic B cells was shown in seven of eight CLL specimens. The stimulation with CD3 x CD19 bi-MABs with CD28 antibodies preferentially induced proliferation of CD4+ T cells. The effective dose of purified antibodies required for optimal T-cell activation was 100 ng/mL in vitro, which suggests that this antibody combination may be useful for immunotherapy of patients with B-CLL.

Adult↗

Evidence for a human IgG1 class switch program.

In activated murine B lymphocytes, immunoglobulin class switch recombination occurs as a highly regulated process which is targeted to distinct switch regions. Here we present first evidence that in human B lymphocytes, switch recombination is targeted to distinct switch regions as well. In a panel of clonally unrelated IgG1-expressing human B cells, immortalized by Epstein-Barr virus (EBV) transformation, seven out of nine cells show switch recombination between S mu and S gamma 1 on both alleles, the active and inactive one. The remaining cells show no switch recombination on the inactive IgH locus. The very strong correlation of switch recombination on both alleles of IgG1-expressing cells proves that class switch recombination to IgG1 is not random but directed in human B lymphocytes.

Alleles↗

Coamplification of the hst and bcl-1 oncogenes in advanced squamous cell carcinomas of the head and neck.

Squamous cell carcinomas of the head and neck from 40 untreated patients were analysed for rearranged or amplified proto-oncogenes by Southern blot hybridisation. The bcl-1 and the hst genes were coamplified 8-32-fold in 5 patients (12.5%). Only males with stage III and IV disease showed coamplification of these oncogenes. Northern blot analysis of the positive samples did not show expression of bcl-1 or hst genes. In contrast, a third oncogene located on chromosome 11 (Ha-ras-1) was not amplified in these tumours. Disease development was observed in all cases over a minimum period of 3 years. Survival of the patients with coamplification of hst/bcl-1 seemed to be shorter than of those with stage III and IV disease without amplification. This difference was not significant probably due to the small number of investigated patients.

Adult↗

Expression of interleukin-2R alpha and interleukin-2R beta in Hodgkin's disease.

Hodgkin and Reed-Sternberg cells, the putative malignant cells of Hodgkin's disease (HD), carry regularly the CD25 antigen that forms one chain of the interleukin-2 (IL-2) receptor (IL-2R alpha). To analyze the putative role of IL-2R expression in Hodgkin's disease, we have investigated the expression of both IL-2R alpha and IL-2R beta chains in HD-derived cell lines and in primary specimens from patients with HD. Expression of IL-2R alpha and IL-2R beta was detected in all HD-derived cell lines. In addition, soluble IL-2R alpha molecules were demonstrated in the supernatants of three of these cultured cell lines. In primary tissues, IL-2R alpha and IL-2R beta were seen in some but not all cases. Staining was detected in Hodgkin and Reed-Sternberg and in lymphoid cells. There was a remarkable difference in the pattern of expression, in that IL-2R alpha- but not IL-2R beta-positive cells from HD patients were clustered in frozen sections. We conclude from these data that IL-2R expression might be involved in the biology of HD.

Adolescent↗