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Biomedical subjects

P Jantscheff

Publications and source records attributed to P Jantscheff.

At least 19 recordsLinked to original sources

Locally inducible CD66a (CEACAM1) as an amplifier of the human intestinal T cell response.

CD66a is an adhesion molecule member of the carcinoembryonic antigen immunoglobulin-like family present on the surface of epithelial cells, granulocytes and IL-2 activated T cells. We studied whether CD66a is expressed in vivo by T lymphocytes and whether it affects TCR-mediated activation. CD66a was detected by histochemistry, flow cytometry analysis, reverse transcription PCR and Western blot on fresh colon biopsies and T cell clones. A fraction of T cells in the lamina propria express CD66a, which is induced by IL-7 and IL-15 cytokines. T cells express four different CD66a splice variants and at least two forms of the protein are glycosylated in a cell type-specific manner. Triggering of CD66a on T cells with physiological ligands or with specific mAb increases TCR-mediated lymphokine release, in an antigen dose-independent manner. This effect requires the presence of the CD66a intracytoplasmic domain, which contains two immunoglobulin receptor family tyrosine-based inhibitory motif-like domains, as shown by stimulation of Jurkat cells transfected with different CD66a isoforms and is associated with increased induction of AP1 and NFkappaB transcription factors. These data indicate that CD66a amplifies T cell activation and thus could facilitate crosstalk between epithelial cells and T lymphocytes in intestinal immune response.

Antigens, CD↗

Phase I clinical trial with IL-2-transfected xenogeneic cells administered in subcutaneous metastatic tumours: clinical and immunological findings.

Various studies have emphasized an immunodepression state observed at the tumour site. To reverse this defect and based upon animal studies, we initiated a phase I clinical trial of gene therapy in which various doses of xenogeneic monkey fibroblasts (Vero cells) genetically engineered to produce human IL-2 were administered intratumorally in 8 patients with metastatic solid tumours. No severe adverse effect was observed in the 8 patients analysed during this clinical trial even in the highest dose (5 yen 107 cells) group. This absence of toxicity seems to be associated with rapid elimination of Vero-IL-2 cells from the organism. Indeed, exogenous IL-2 mRNA could no longer be detected in the peripheral whole blood 48 hours after Vero-IL-2 cell administration. In addition, we did not find any expression of exogenous IL-2 mRNA in post-therapeutic lesions removed 29 days after the start of therapy. A major finding of this trial concerns the two histological responses of two treated subcutaneous nodules not associated with an apparent clinical response. The relationship between local treatment and tumour regression was supported by replacement of tumour cells by inflammatory cells in regressing lesions and marked induction of T and natural killer cell derived cytokines (IL-2, IL-4, IFNg ...) in post-therapeutic lesions analysed 28 days after the start of Vero-IL-2 administration. Gene therapy using xenogeneic cells as vehicle may therefore present certain advantages over other vectors, such as its complete absence of toxicity. Furthermore, the in vivo biological effect of immunostimulatory genes, i.e IL-2-, may be potentiated by the xenogeneic rejection reaction.

Adenocarcinoma↗

Synovial PMN show a coordinated up-regulation of CD66 molecules.

Changes in the expression of various activation-dependent surface markers have been reported for polymorphonuclear neutrophils (PMN) isolated from synovial fluid of patients with inflammatory joint diseases. We extend these findings to the expression of CD66 molecules and several other surface markers. Three members of the CD66 family, namely CD66a, CD66b, and CD66c, showed an up to fourfold up-regulation on synovial fluid PMN compared with peripheral blood PMN (PBG) of the same patients; CD59 was increased twofold, the expression of CD16 did not change, whereas CD62L was reduced by more than 50% on synovial fluid PMN. It is interesting that CD66a, CD66b, and CD66c showed a coordinated expression on PBG of patients and controls and a coordinated up-regulation on synovial neutrophils. In contrast, after in vitro stimulation of peripheral blood PMN with phorbol myristate acetate, CD66c was much less up-regulated compared with CD66a and CD66b. All samples of synovial fluid PMN exhibited an additional increase in the expression of CD66a, CD66b, and CD66c when stimulated with phorbol myristate acetate in vitro. Prostaglandins are known to inhibit various responses of neutrophils to inflammatory stimuli. We could show that prostaglandins inhibit N-formyl-methionyl-leucyl-phenylalanine-induced up-regulation of CD66 on peripheral blood PMN in a concentration-dependent manner.

Adult↗

Cancer gene and immunotherapy: recent developments.

Gene and immunotherapeutic approaches to treat human malignant tumors are reviewed. Special attention is given to the different strategies of cancer gene therapy and to recent aspects of cytokine-supported tumor immunotherapy or tumor-specific vaccination. The limitations of these therapy approaches are critically discussed especially with respect to immune escape mechanisms.

Animals↗

Gene therapy with cytokine-transfected xenogenic cells (Vero-IL-2) in patients with metastatic solid tumors: mechanism(s) of elimination of the transgene-carrying cells.

Eleven patients with advanced cancer were treated in a clinical gene therapy trial by repeated intra- tumoral injections with different doses of xenogenic fibroblasts secreting high amounts of human interleukin-2 (Vero-IL2). Treatments in a total of 14 courses were well tolerated and resulted in clinical responses and measurable biological effects. Together with increases in serum interleukin-2 (IL-2), modifications of the V-beta T cell receptor repertoire and induction of intratumoral T-cell infiltration were observed. When the intratumoral expression of endogenous cytokine genes and the persistence of the IL-2 transgene at the application site and in peripheral blood were investigated, rapid disappearance of the transgene at the application site appeared to be the most prominent biological effect. Tests detecting a single Vero-IL2 cell against a background of 10(5) non-transfected cells were not able to demonstrate significant expression of exogenous IL-2 (i.e. the transgene or transgene-carrying cells) in tumor biopsies or blood at different times. Therefore, further studies were performed to evaluate the mechanism(s) involved in the rapid disappearance of xenogenic carrier cells in more detail. We show here that significant in vitro cytotoxicity against transgene-carrying Vero cells can be observed in peripheral blood of all the patients before treatment as well as in healthy controls. "Cold" target inhibition shows that significant killing of Vero-IL2 cells is mediated by natural killer (NK) cells. This was confirmed by showing that established CD3(-)/CD16(+)/CD56(+) peripheral blood NK cell clones kill both K562 and Vero-IL2 target cells. The failure of other mechanisms (complement, antibody-dependent cell cytotoxicity or cytotoxic T lymphocytes) to destroy xenogenic, histoincompatible Vero cells in vitro suggests that NK cells also might be responsible for the killing of Vero-IL2 in vivo and for the failure to detect the transgene at the application site. These results might also be of importance for some aspects of the current discussion of xenotransplantation.

Adult↗

Gene therapy with cytokine-transfected xenogeneic cells in metastatic tumors.

On the basis of compelling preclinical data in cats and dogs we initiated a clinical gene therapy study in nine patients with advanced solid tumors using xenogeneic fibroblasts secreting human IL-2 (Vero-IL-2 cells). Cohorts of three successive patients with tumors accessible to CT- or ultrasound-guided injection were treated repeatedly with 5 x 10(5), 5 x 10(6), or 5 x 10(7) Vero-IL-2 cells. Endpoints of the study were feasibility, toxicity, and clinical and biological effects of this novel approach to immunotherapy of cancer. Histopathological, immunological and molecular analyses were performed on biopsy specimens of tumors and blood samples from before, during and after treatment. Low levels of serum antibodies to Vero cells developed in 2/9 patients. Analysis of tumor biopsies showed increased expression of CD3 mRNA and enhanced tumor infiltration with varying lymphocyte subpopulations after treatment. In addition, monoclonal alterations of the TCR repertoire of blood and tumor lymphocytes were observed. Treatment was well tolerated and toxicity consisted of transient fever in one patient and short-lived, mild itching and erythema in two others. One patient with soft tissue sarcoma showed a more than 90% and more than 50% reduction of the volume of two distant, non-injected metastases, respectively, lasting for 22+ months. Four other patients showed stabilization of their disease for three to nine months, among whom was a patient with melanoma who developed marked vitiligo. We conclude that repeated injection of up to 5 x 10(7) Vero-IL-2 cells was safe and showed biological and clinical activity in heavily pretreated patients with advanced solid tumors. Further evaluation of intratumoral application of Vero-IL-2 seems warranted.

Adult↗

A CD66a-specific, activation-dependent epitope detected by recombinant human single chain fragments (scFvs) on CHO transfectants and activated granulocytes.

Antibodies to CD66 recognize at least five members (CD66a-e) of the carcinoembryonic antigen (CEA) family. Recombinant human single-chain Fv fragments (scFvs) that bind specifically to CD66a (biliary glycoprotein) were obtained from a naive human scFv library. The scFvs bound to the N-domain of CD66a on Chinese hamster ovary (CHO) transfectants but did not bind to freshly isolated peripheral granulocytes or to dimethylsulfoxide-treated HL-60 cells. In contrast, scFvs bound well to granulocytes that were short-term activated with N-formyl-Met-Leu-Phe or phorbol 12-myristate 13-acetate and to human HL-60 cells that were treated with all-trans-retinoic acid to induce granulocytic differentiation. Quantification of antigenic sites showed that the activation-dependent CD66a epitopes were expressed on nearly all of the CD66a molecules on CHO-biliary glycoprotein transfectants, but they were detected only on a portion of the molecules on activated polymorphonuclear neutrophils and differentiated HL-60 cells. Binding of CD66a scFvs to their neoepitopes on prestimulated PMNs induced respiratory burst, suggesting that CD66a is capable of delivering transmembrane signals in these cells.

Animals↗

Glycoproteins of the carcinoembryonic antigen (CEA) family are expressed in sweat and sebaceous glands of human fetal and adult skin.

The carcinoembryonic antigen (CEA) family comprises a group of glycoproteins including the classical CEA, nonspecific cross-reacting antigens (NCA), and biliary glycoprotein (BGP). CEA glycoproteins have been identified in many glandular and mucosal tissues. In view of their putative role in cell adhesion, protein sorting, and signal transduction, CEA glycoproteins are thought to be involved in embryogenesis, architectual integrity, and secretory mechanisms of glandular epithelia. Since there are few data available on the expression of CEA-like proteins in human skin, the aim of this study was to immunohistochemically specify and localize the CEA glycoproteins in cutaneous adult and fetal glands using a panel of well-characterized antibodies. The secretory parts of eccrine sweat glands expressed CEA, NCA-90, and BGP, whereas apocrine glands remained unreactive for CEA glycoproteins. The ductal epithelia of both eccrine and apocrine glands contained CEA and NCA-90. Sebaceous glands were stained for BGP only. Electron microscopy of sweat glands showed CEA glycoprotein expression in cytoplasmic organelles and on microvilli lining the ductal surface. In sebaceous glands, BGP were demonstrated in small vesicles and along the cell membranes of differentiating sebocytes. Fetal development of cutaneous glands was associated with early expression of CEA glycoproteins. Additionally, mice transgenic for human CEA were shown to express CEA in sweat glands. The overall distribution of CEA glycoproteins in cutaneous glands was consistent with that in epithelia of other glandular tissues.

Adult↗

CD66b, CD66c and carcinoembryonic antigen (CEA) are independently regulated markers in sera of tumor patients.

Non-specific cross-reacting antigens (NCA-95 = CD66b and NCA-50/90 = CD66c) are members of the CEA (carcinoembryonic antigen = CD66e) family. Analysis of mRNA levels of CD66c in colon tumors suggests that this antigen is strongly up-regulated compared to its normal counterpart and could, therefore, be of clinical interest. CD66c is also expressed in normal lung and spleen tissues and, above all, on granulocytes. The appearance of CD66b in serum, the only strictly granulocyte-specific antigen, could point to the involvement of granulocytes in disease. Specific sandwich ELISAs have been established to determine CEA, CD66b and CD66c levels in serum. Controls have been carried out by testing sera from patients with benign tumors or inflammatory diseases and from healthy individuals. In sera of most patients suffering from solid tumors, sensitivities for CD66c are comparable to or lower than those for CEA. CD66c showed a much higher sensitivity in early colon tumor stages. Sensitivities over 40% have been determined for CD66b in sera of patients with uterine and kidney carcinomas. CML patients revealed sensitivities of 84% for CD66c and 47% for CD66b. Investigations of sera from patients with inflammatory colon diseases which are negative for CEA showed high sensitivity for CD66c but not for the granulocyte-specific CD66b. Patients with mastopathy revealed sensitivities of over 40% for both CD66c and CD66b. CD66b, CD66c and CEA are independently regulated proteins in a high percentage of patients. The simultaneous determination of CEA and CD66b/c can increase the sensitivities for malignant tumors but high sensitivities of CD66b/c for benign diseases limit their usefulness as tumor markers. CD66b may be interesting as a marker for kidney and corpus carcinomas, for which good markers are not yet available.

Adult↗

Determination of the specificities of monoclonal antibodies recognizing members of the CEA family using a panel of transfectants.

Carcinoembryonic antigen (CEA), one of the most clinically important tumor markers, is mainly used in the post-surgical surveillance of patients with colorectal carcinomas. CEA belongs to a large protein family, which includes cross-reacting antigens, e.g., non-specific cross-reacting antigens (NCAs) and biliary glycoprotein (BGP) as well as pregnancy-specific glycoproteins (PSGs). The genes encoding these proteins can be subdivided into the CEA and PSG subgroups. The members of the subgroups share antigenic determinants and show high similarity in amino-acid sequences. Their derived secondary structures show them to belong to the immunoglobulin superfamily. Due to the close relationship of the members of the CEA subgroup, it is very difficult to distinguish between the individual members with MAbs. Here we have used flow cytometric analysis of transfectants expressing individual members of the CEA subgroup as an alternative approach to determine the specificities of 13 MAbs. This allows us to examine the specificities of these antibodies for members of the CEA family, even of those which have not yet been characterized at the protein level. In addition, binding of the MAbs to NCAs expressed by polymorphonuclear cells (PMN) was tested by Western-blot analysis, immunoprecipitation and flow cytometry. Four antibodies bound exclusively to NCA-50/90 and one MAb (80H3) only to NCA-95. MAb 4/3/17 recognizes CEA and BGP on the surface of transfectants and NCA-160 from granulocytes. We assume that NCA-160 is a product of the BGP gene. On granulocytes, which do not express CEA, MAb 4/3/17 is specific for NCA-160 (BGP). Mutual inhibition of the MAbs binding to NCA-50/90 revealed 3 different epitope groups.

Antibodies, Monoclonal↗

Hybrid hybridomas producing bispecific antibodies to CEA and peroxidase isolated by a combination of HAT medium selection and fluorescence activated cell sorting.

A combination of fluorescence-activated cell sorting and HAT medium selection has been used to establish bispecific antibody (biAbs)-producing hybrid hybridomas. For this purpose hypoxanthine-guanine phosphoribosyl transferase (HGPRT)-deficient mutants were isolated from a hybridoma line (D11-DG2) producing anti-CEA antibodies by 8-azaguanine treatment. The resulting HAT-sensitive hybrid cells were stained with the fluorescence marker tetramethyl rhodamine isothiocyanate (TRITC) and fused by polyethylene glycol (PEG) with HAT-non-sensitive unstained hybrid cells producing antibodies to horseradish peroxidase (POD). Fluorescent fused hybrid hybridomas as well as non-fused stained anti-CEA cells were separated from the unstained anti-POD cells using a fluorescent activated cell sorter (FACS). Finally, non-fused enzyme-deficient anti-CEA cells were eliminated by cultivation in HAT selection medium which permits only an outgrowth of HAT-resistant hybrid hybridoma cells containing the genes for producing both antibodies.

Animals↗

Production and characterization of monoclonal antibodies against carcinoembryonic antigen (CEA).

In the experiments presented here 22 monoclonal antibodies (MoAbs) were produced which reacted with the tumor marker carcinoembryonic antigen (CEA). Eleven of the MoAbs reacted neither with peripheral blood granulocytes nor with purified spleen NCA-60 kDa and were therefore regarded as "CEA-specific". Only three antibodies of this group reacted exclusively with CEA-180 kDa. Eight MoAbs reacted with CEA-180 kDa and with CEA-like substances of lower molecular mass (of 160 kDa and/or 120 kDa) present in colon carcinoma cells as determined by immunoblotting. These molecules seem to be different from the classical non-specific cross-reacting antigens (NCAs) present in peripheral blood granulocytes. In contrast to that, the other 11 anti-CEA MoAbs recognized in addition to CEA-180 kDa also NCAs on granulocytes. Six of them were reactive with a purified spleen NCA-60 kDa preparation. These MoAbs bound also to reduced and alkylated CEA-180 kDa (CEA r/a), i.e. they recognize sequential epitopes. All 22 MoAbs reacted with CEA expressed in different human tumor cell lines as determined by immunocytological analysis. But six of them did not bind to the surface of these cells when tested in a radioimmuno-binding assay. It was concluded that the epitope(s) recognized by these antibodies are involved in cell membrane anchoring of the CEA-molecules.

Antibodies, Monoclonal↗

An experimental immunoscintigraphic study with anti-CEA monoclonal antibody (DG2).

Monoclonal antibody D11-DG2 (DG2) against carcinoembryonic antigen (CEA) was examined for suitability for radioimmunodetection of human tumors grown in nude mice. Antibodies DG2 and a control antibody of the same IgG1 subclass were labeled with 131I and injected into mice bearing one of three types of CEA-containing tumors (cell lines LS 174T, HT-29 and Rec S) and/or a CEA-negative tumor (Rec R). Gamma-camera imaging and distribution studies revealed that CEA-containing tumors selectively accumulate DG2 but Rec R does not. As the tumors differ in CEA-content, the highest accumulation of 131I-DG2 (corresponding to the best scintigraphic imaging) was found in LS 174T tumors, intermediate in Rec S and lowest in HT-29 tumors. The mean tumor-to-blood ratios on the sixth day after antibody administration were 4.6, 3.2, and 2.1, respectively, in the control experiments the value of this parameter was always lower than 1. The results showed the applicability of DG2 for immunoscintigraphic studies in patients. Furthermore, a positive correlation was found between the uptake of anti-CEA antibody and CEA-content in the tumors.

Animals↗

[Immunoscintigraphy in experiments and clinical practice: its possibilities, advantages and limitations].

The authors present their experience gained in preparing, isolating and labeling antibodies with radionuclides for the purpose of using them in immunoscintigraphy. The experimental part includes results obtained with different labeled antibodies and their F/ab/2 fragments in distribution studies, involving also immunoscintigraphic imaging of tumors. The clinical part presents results of immunoscintigraphy obtained with the commercial antibody kits Iodomab and Imacis in patients with tumors of the digestive tract.

Animals↗

Differences of K562 leukemia cell clones in the pattern of monoclonal antibody binding and NK cell susceptibility.

Fifty-three K562-clones were tested against three monoclonal anti-K562-antibodies (MoAbs). The individual NK-cell sensitivity of thirty-one K562-clones was evaluated simultaneously. It was found that considerable differences exist in the antibody binding between single clones and the parental cell line indicating antigenic heterogeneity in the K562 line. Some K562-clones showed increased NK-cell sensitivity in comparison with the uncloned cell line. However, no correlation was observed between both investigated parameters.

Antibodies, Monoclonal↗

Search for CEA-like molecules in polymorphonuclear leukocytes of non-human primates using monoclonal antibodies.

The monoclonal anti-CEA antibody ZIK-A42-A/C1 which reacts with NCA of human polymorphonuclear leukocytes was found to bind also to polymorphonuclear blood leukocytes of the following non-human primates tested: hamadryas baboon (Papio hamadryas), stump-tailed monkey (Macaca arctoides), pig-tailed monkey (Macaca nemestrina), and rhesus monkey (Macaca mulata). No binding was observed to mononuclear blood leukocytes. It was concluded that non-human primates contain CEA-like substances in their polymorphonuclear leukocytes as humans do and that these substances carry some identical epitopes.

Animals↗

Different E-rosetting properties of human peripheral blood NK- and K-cells.

Mononuclear, non-adherent blood leukocytes were separated into the spontaneously E-rosetting (E+) and non-E-rosetting (E-) fraction. NK- and K-cell activity was determined simultaneously in a 4 h assay against 51Cr-labeled K 562 cell line cells and rabbit antiserum coated mouse leukemia cells (Gr/E) respectively. In each case E- exhibited a significantly higher K-cell activity than E+ [M16 donors E-:E+ = 46 +/- 11:10 +/- 6 (% specific cytotoxicity)]. With regard to NK-cell activity E- of only 7 donors was significantly more active than E+ [M7 donors E-:E+ = 49 +/- 15:20 +/- 10]. Six times the activities of the two fractions were not significantly different [M6 donors E-:E+ = 46 +/- 15:39 +/- 14]. On the other hand E+ of 3 donors displayed a significantly stronger activity than E-[M3 donors E-:E+ = 13 +/- 10:36 +/- 9]. These results confirm the heterogeneity of NK-cells with respect to E-rosetting properties and indicate that NK- and K-cells of at least 3 donors may belong to different cellular subsets [NK:E- less than E+; K:E- greater than E+].

Animals↗