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Biomedical subjects

C Mueller

Publications and source records attributed to C Mueller.

At least 73 records · Page 4Linked to original sources

The role of activated cytotoxic T cells in inflammatory bowel disease.

The role of cell-mediated cytotoxicity in the pathogenesis of ulcerative colitis and Crohn's disease has been controversial since reports indicating either a decreased, or an increased, activity of cytotoxic T cells in active stages of inflammatory bowel disease exist. Some of these discrepancies may be attributed to the fact that so far mostly peripheral blood lymphocytes rather than intestinal T cells have been examined. To overcome some of these limitations we performed in situ hybridizations for the detection of perforin and granzyme A mRNA expressing cells, i.e. of cytotoxic cells activated in situ, in the affected intestinal mucosa. These studies revealed increased frequencies of activated, cytotoxic T cells in active stages of ulcerative colitis and Crohn's disease. Interestingly, activated perforin mRNA expressing T cells are present both in the CD4 and in the CD8 T cell subsets. In the latter T cell subset up to 60% of the mucosal T cells isolated from the affected sites express perforin mRNA at detectable levels. The elevated frequency of activated cytotoxic cells and their histological distribution also in close proximity to the epithelial cells may thus indicate an important role for cytotoxic cells in the pathogenesis of inflammatory bowel disease since activated cytotoxic T cells may further exacerbate the inflammatory process through the production of pro-inflammatory cytokines such as interferon-gamma or tumor necrosis factor-alpha, but also through the release of pro-inflammatory cytokines and chemokines upon lysis of epithelial cells and the increased influx of luminal antigens at the site of epithelial erosions.

Animals↗

Morbidity and survival after bronchoplastic surgery for non-small-cell lung cancer.

BACKGROUND: Bronchoplastic procedures are an accepted surgical approach in patients with resectable non-small-cell lung cancer (NSCLC) to avoid pneumonectomy. Post-operative complications associated with the bronchial anastomosis and local recurrence of the tumor have to be considered. Experimental design and setting: Retrospective analysis of the clinical courses and follow-up of 1,610 consecutive patients who received surgical resection for NSCLC at the Department of Surgery, Klinikum Grosshadern, University of Munich, Germany. Among them there were 134 (8.3%) bronchoplastic resections. METHODS: Morbidity, mortality, and survival rate were investigated in these patients to verify the safety of this technique. RESULTS: From all 134 bronchoplastic resections, 105 lobectomies, 22 bilobectomies, and 7 pneumonectumies were performed. Atelectasis was observed in 6.0% (versus conventional procedures: 3.7%; p: n.s.), whereas anastomotic dehiscence occurred in 3.0%. In-hospital mortality amounted to 3.7% (versus 5.3%; p: n.s.). The stage dependent 5-year survival in R0-resected patients was comparable in both groups. CONCLUSIONS: Our results demonstrate that bronchoplastic procedures represent a safe therapeutic option in the operative treatment of non-small-cell lung cancer that should be considered in all patients with central tumor growth.

Adenocarcinoma↗

Properties and inhibition of the first two enzymes of the non-mevalonate pathway of isoprenoid biosynthesis.

Enzymes of the 1-deoxy-D-xylulose 5-phosphate/2-C-methylerythritol 4-phosphate (DOXP/MEP) pathway are targets for new herbicides and antibacterial drugs. Until now, no inhibitors for the DOXP synthase have been known of. We show that one of the breakdown products of the herbicide clomazone affects the DOXP synthase. One inhibitor of the non-mevalonate pathway, fosmidomycin, blocks the DOXP reductoisomerase (DXR) of plants and bacteria. The I(50) values of plants are, however, higher than those found for the DXR of Escherichia coli. The DXR of plants, isolated from barley seedlings, shows a pH optimum of 8.1, which is typical for enzymes active in the chloroplast stroma.

Aldose-Ketose Isomerases↗

Noncleavable transmembrane mouse tumor necrosis factor-alpha (TNFalpha) mediates effects distinct from those of wild-type TNFalpha in vitro and in vivo.

Tumor necrosis factor-alpha (TNFalpha) exists in two biologically active forms, a 26-kDa transmembrane form and a proteolytically cleaved and secreted form. We sequentially inactivated all three known cleavage sites of mouse TNFalpha by mutating the corresponding DNA sequences. A murine T cell hybridoma transfected with the nonsecretable mutant TNFalpha efficiently lysed L929 target cells in a cell contact-dependent manner and induced expression of vascular cell adhesion molecule-1 on mouse endothelioma cells. A genomic mouse TNFalpha clone encoding this mutant was subsequently introduced as a transgene into TNFalpha(-/-) lymphotoxin-alpha(-/-) mice. The 3' AU-rich regulatory elements of the TNF locus were maintained in the transgene to assure adequate gene regulation. Transmembrane TNFalpha transgenic mice were fully protected from endotoxic shock, and no TNFalpha bioactivity was detectable in the serum after stimulation with lipopolysaccharide. Activated CD4 T cells from these animals, however, lysed L929 cells in a cell contact-dependent way. After administration of lipopolysaccharide, transmembrane TNFalpha transgenic mice produced significantly higher levels of interleukin-12 than wild-type mice or TNF-deficient mice. This indicates that transmembrane TNFalpha may greatly affect the course of a cellular immune responses in vivo and exerts quantitatively and qualitatively distinct functions from secreted TNFalpha in vitro and in vivo.

3T3 Cells↗

Nonlymphocyte-derived tumor necrosis factor is required for induction of colitis in recombination activating gene (RAG)2(-/-) mice upon transfer of CD4(+)CD45RB(hi) T cells.

In this study, we addressed the role of tumor necrosis factor (TNF)-alpha and lymphotoxin (LT)-alpha in the development of colitis and defined the cellular sources (T cells versus non-T cells) of TNF (TNF-alpha and LT-alpha) relevant to disease development. After adoptive transfer of TNF(+/+) CD4(+)CD45RB(hi) splenocytes into TNF(+/+) recombination activating gene (RAG)2(-/-) mice, the recipients develop massive inflammation of the large intestinal mucosa concurrent with massive weight loss. In contrast, clinical signs of disease are completely absent in TNF(-/-)RAG2(-/-) recipients of TNF(-/-) CD4(+)CD45RB(hi) T cells, although elevated numbers of interferon-gamma-producing cells are present in the colonic mucosa. Surprisingly, upon transfer of TNF(-/-)CD4(+)CD45RB(hi) T cells into TNF(+/+)RAG2(-/-) recipients, colitis develops with kinetics similar to those upon transfer of TNF(+/+)CD4(+)CD45RB(hi) donor cells. In contrast, no clinical signs of colitis are observed in TNF(-/-)RAG2(-/-) recipients of TNF(+/+)CD4(+)CD45RB(hi) T cells. This protection from colitis is not a consequence of the absence of LT-alpha, as TNF-alpha(-/-)RAG2(-/-) recipients of TNF-alpha(-/-) CD4(+)CD45RB(hi) T cells are also protected from colitis induction. These results demonstrate the importance of TNF production by non-T cells of the colonic mucosa in the pathogenesis of colitis and provide direct evidence for a nonredundant role of TNF-alpha in this mouse model of colitis.

Adoptive Transfer↗

Abolished tilt suppression of the vestibulo-ocular reflex caused by a selective uvulo-nodular lesion.

Within the cerebellum several structures are considered to modulate the function of the vestibulo-ocular reflex (VOR). The nodulus and uvula have been implicated with the low-frequency components of the VOR, which are mediated by the velocity storage system. We report a patient with a selective lesion of the nodulus and ventral uvula. The findings suggest that nodulus and uvula normally exert an inhibitory effect on the velocity storage mechanism.

Cerebellum↗

Megakaryocyte induced fibroblast proliferation is enhanced by costimulation with IL-6/IL-3 and dependent on secretory and adhesion events.

Experimental data are in keeping with the finding that megakaryocytes isolated from normal human bone marrow may promote fibroblast growth. This effect can be significantly enhanced by interleukin (IL)-3. In this context it has been demonstrated that IL-3 induces the release of platelet-derived growth factor (PDGF) and transforming growth factor beta1 (TGFbeta1) from megakaryocytes, factors known to enhance fibroblast proliferation. The present in vitro study was performed to elucidate the action of several other cytokines which are able to influence the different steps of megakaryocyte maturation and function like stem cell factor (SCF), IL-6, and leukemia inhibitory factor (LIF) as well. Following an appropriate experimental design we were able to show that none of the mentioned cytokines enhanced megakaryocyte dependent fibroblast proliferation in the coculture assays. On the other hand, IL-6 in combination with IL-3 surpassed the IL-3 dependent action significantly. However, the combined IL-3/IL-6 effect was not explainable by an increased PDGF/TGF-beta secretion of the megakaryocytes. In transwell experiments the inhibition of cell-to-cell contact via tissue culture inserts generated a conspicuous impairment of fibroblast growth in the IL-3/IL-6 treated cocultures. This reversal surpassed even the effect on the untreated and IL-3 stimulated cocultures. Hence, a direct contact of both cell types probably inducing adhesion phenomenons and warranting a certain threshold of local PDGF/TGF-beta concentration is a prerequisite for the proliferative effect on fibroblasts in the costimulation experiments. These results are of special interest regarding the evolution of myelofibrosis in chronic myeloproliferative disorders (CMPDs) because (1) various progenitor cells including the megakaryocytic lineage are hypersensitive towards IL-3 and (2) an abnormal secretion of IL-6 is described for megakaryocytes in these disorders.

Cell Adhesion↗

Gene therapy expression vectors based on the clotting Factor IX promoter.

The liver is one of the prime targets for gene therapy, and the correction of defects in a variety of clotting factor genes is one of the main goals of liver-directed therapies. The use of transcriptional regulatory elements derived from these genes may provide for the optimal expression of transduced genes. We have applied our knowledge of the promoter structure of the clotting Factor IX gene to design optimized expression vectors for use in gene therapy. The activity of the proximal promoter has been augmented by the introduction of a multimerized upstream site which we have previously shown to be a prime regulator of the pro- moter. Introduction of this element increases promoter activity at least 20-fold over the proximal promoter alone when assayed in the human liver cell line Hep G2. This optimized promoter is significantly more active than the SV40 enhancer/early promoter. The expression of the optimized Factor IX promoter is also more persistent in the short term. The inclusion of a liver-specific locus control region, derived from the apolipoprotein E/C locus, did not further augment expression levels. These Factor IX vectors also exhibit a high degree of tissue specificity, as measured by transfection into breast and muscle cell lines.

Cell Line↗

Mediastinal lymph node infiltration in non-small cell lung cancer and its role in curative surgery.

Despite the importance of lymph node infiltration for the classification and prognosis of non-small cell lung cancer (NSCLC), there are no accepted standards for quality of mediastinal lymphadenectomy. In 270 consecutive patients undergoing potentially curative surgery for NSCLC, including complete ipsilateral lymph node dissection, we investigated the possibility of a correlation between tumour location and lymph node infiltration. The tumours were classified as UICC stage I (n = 115), II (n = 42) or IIIa (n = 113). Patients with N2-disease (n = 68) showed up to 81% skip metastasis. Because of the observed dissemination of lymph node metastasis, tumour location could not predict nodal infiltration. The variability of nodal involvement and the frequent occurrence of skip metastasis thus make complete ipsilateral lymphadenectomy mandatory for curative management of NSCLC.

Adenocarcinoma↗

Enhanced binding of HLF/DBP heterodimers represents one mechanism of PAR protein transactivation of the factor VIII and factor IX genes.

The regulatory regions of the genes for coagulation Factors VIII and IX contain binding sites for both liver-enriched and ubiquitous transcriptional regulators. We investigated the role of the liver-enriched protein, hepatic leukemia factor (HLF), in mediating transcriptional regulation of the Factor VIII and IX genes. Using transient transfection assays in HepG2 hepatoma cells, we demonstrated the ability of HLF alone and in synergistic combination with the D-box binding protein (DBP), another proline and acidic-rich (PAR) protein family member, to transactivate these promoters. HLF is capable of binding to multiple sites in both the Factor VIII and Factor IX promoters. At least some of the synergistic activation of the Factor VIII promoter seen with HLF and DBP cotransfection can be attributed to increased binding of HLF-DBP heterodimers to two Factor VIII promoter sites. We have also demonstrated that an E2A-HLF chimera, derived from a t(17;19) translocation in pre-B acute lymphoblastic leukemia (ALL) cells, is capable of mediating expression from the Factor VIII and Factor IX promoters in both hepatoma cells and pre-B ALL cells. These observations indicate that the PAR family of transcription factors plays an important and complex role in regulating expression of the Factor VIII and Factor IX genes, involving the binding of both homodimeric and heterodimeric complexes of HLF and DBP to several sites in the promoters. Finally, these studies reaffirm the potential role of dimeric transcription factor complexes in mediating interactions with specific promoter elements, which, in the case of the Factor VIII promoter, results in dramatically enhanced binding of HLF-DBP heterodimers to two cis-acting sequences. These observations further our understanding of the role played by members of the PAR family of transcription factors in regulating expression of the Factor VIII and Factor IX genes.

Basic-Leucine Zipper Transcription Factors↗

Infertility associated with incomplete spermatogenic arrest and oligozoospermia in Egr4-deficient mice.

Male fertility is complex and depends upon endocrine/paracrine regulatory mechanisms and morphogenetic processes occurring during testicular development, spermatogenesis (mitosis and meiosis) and spermiogenesis (spermatid maturation). Egr4 (NGFI-C, pAT133), a member of the Egr family of zinc-finger transcription factors, is thought to be involved in cellular growth and differentiation, but its specific function has been previously unknown. We derived Egr4 null mice through targeted mutagenesis and found that they were phenotypically normal with the exception that males, but not females, were infertile. Egr4 is expressed at low levels within male germ cells during meiosis and is critical for germ cell maturation during the early-mid pachytene stage. While most Egr4 null male germ cells undergo apoptosis during early-mid pachytene, some are capable of maturing beyond an apparent Egr4-dependent developmental restriction point. Consequently, a limited degree of spermiogenesis occurs but this is accompanied by markedly abnormal spermatozoon morphology and severe oligozoospermia. Egr4 appears to regulate critical genes involved in early stages of meiosis and has a singularly important role in male murine fertility. These data raise the possibility that Egr4 may contribute to some forms of human idiopathic male infertility.

Animals↗

Death receptor-mediated suicide: a novel target of autoimmune disease treatment.

In the thymus, based on the reactivity of their T-cell receptor with self-MHC and antigenic peptides, developing immature T-cells undergo positive and negative selection. Cells recognising self-peptides and MHC with high affinity are considered autoreactive, and thus potentially harmful, and are eliminated by induction of apoptotic cell death. Thymic negative selection is, however, only incomplete and autoreactive T-cells escape into the periphery. It is not the presence of autoreactive mature T- and B-lymphocytes as the underlying cause of tissue destruction and development of autoimmune diseases, but their uncontrolled and excessive clonal expansion upon activation by self-antigen. Thus, potent regulatory mechanisms must keep these autoreactive cells under control to avoid their inappropriate activation. Recent evidence indicates that death receptors of the tumour necrosis factor receptor family play a central role in mediating antigen receptor-induced suicide of autoreactive T-lymphocytes. Defects in these apoptosis-inducing regulatory mechanisms may result in the development of autoimmune diseases. Therefore, enhancing the cell's own suicide program, offers a most attractive therapeutic target for the treatment of autoimmune diseases.

Journal Article↗