Search PubMed⌕ Search

Biomedical subjects

C Sorg

Publications and source records attributed to C Sorg.

At least 73 records · Page 4Linked to original sources

Electroporation efficiency in mammalian cells is increased by dimethyl sulfoxide (DMSO).

Electroporation is one of the most common methods used transform mammalian cells with plasmids. This method is versatile and can be adapted to meet the requirements of many cell lines. However, sometimes the efficiency of this method is low. We demonstrate that dimethyl sulfoxide (DMSO) facilitated a better DNA uptake in four different cell lines (HL60, TR146, Cos-7 and L132). The cells were electroporated with a beta-Gal expression plasmid in a medium containing DMSO (1.25%) during, and for 24 h after the pulse. In all these cells a dramatic (up to 8-fold) increase in transfection efficiency occurred after this treatment. This method opens up the possibility of using electroporation even in cells which are difficult to transfect.

Animals↗

Low zone tolerance to contact allergens in mice: a functional role for CD8+ T helper type 2 cells.

Normal skin is permeable to low molecular hydrophobic substances, including allergenic chemicals. Whereas such foreign matter appears to enter the skin naturally, it rarely induces contact hypersensitivity. This suggests that immunological tolerance would be the normal state of affairs. In search of a suitable model, we painted picryl chloride or oxazolone once or repeatedly on normal skin of BALB/c or C57B1/6 mice and found subsensitizing doses to be tolerogenic. The most effective doses in inducing tolerance were doses between those at the point of inflection from no responses to threshold sensitivity. But even doses three orders of magnitude lower than these suppressed subsequent sensitization if applied repeatedly. C57B1/6 mice (low responders) were consistently easier to make tolerant than BALB/c mice (high responders). The tolerant state established by a single painting was found to be fully developed at 48 h after initiation and long-lasting (>14 d). It could be adoptively transferred by intravenous injection of total spleen cells (SC), lymph node cells (LNC), or purified T cells and shown to be hapten specific. Pretreatment with cyclophosphamide (Cy) prevented tolerization. The T cells capable of transferring suppressive activity were found to be generated irrespective of the dose applied. On day 2 after painting, tolerance could be transferred with LNC from both tolerant and sensitized animals. On day 5, however, only cells from tolerant donors transferred tolerance. But by action of Cy, suppression was shown to be part of every sensitization, although masked. Production of hapten-specific antibodies was suppressed as well. Through depletion by monoclonal antibody in vitro the T suppressor cells were shown to belong to the murine CD8+ subset (Lyt2+). Upon restimulation in vitro by haptenized and irradiated normal SC, LNC from tolerant donors produced predominantly interleukin (IL)-4, IL-5, and IL-10. In contrast, LNC from sensitized donors produced preferentially IL-2 and interferon-gamma. Thus we demonstrate that painting subsensitizing doses of contact sensitizers on normal murine skin generates CD8+ Th2-like cells that give rise to hapten-specific tolerance. The model may have broader significance and apply to other species, including humans.

Allergens↗

Phosphorylation of MRP14, an S100 protein expressed during monocytic differentiation, modulates Ca(2+)-dependent translocation from cytoplasm to membranes and cytoskeleton.

MRP8 and MRP14 are two Ca(2+)-binding proteins expressed in myelomonocytic cells. Complexes of MRP8 and MRP14 colocalize with membranes and intermediate filaments in a Ca(2+)-dependent manner. MRP14, unlike MRP8, exists in two isoforms, the smaller of which (MRP14') has been shown to lack the first four amino acids; both MRP14 and MRP14' are also present as phosphorylated forms. As shown in the present work by metabolic labeling of monocytes with [35S]methionine, MRP14 and MRP14' are translated simultaneously. By PCR analysis we found no evidence for the presence of different mRNA species. Since MRP14 is encoded by a single copy gene, our data indicate that MRP14' formation is due to alternative translation of a single mRNA species. Two-dimensional electrophoresis of [32P]orthophosphate-labeled monocyte proteins followed by Western blotting and autoradiography revealed that the two phosphorylated MRP14 isoforms incorporated the bulk of the radioactivity found in monocytic proteins. Using differential centrifugation we demonstrated the presence of distinct isoform patterns in different subcellular locations. Further, in response to elevated Ca2+ concentrations we observed a preferential translocation of phosphorylated MRP14 isoforms from the cytosol toward membranes and the cytoskeleton. This might be caused by altered calcium binding, and indeed, using isoelectric focusing and 45Ca2+ overlay the MRP14 band containing phosphorylated MRP14 revealed increased Ca2+ binding compared with bands containing other MRP14 isoforms. This represents the first evidence for functional differences in phosphorylated MRP14 isoforms compared with nonphosphorylated MRP14 isoforms. These functional differences suggest that MRP14 represents the regulatory subunit of MRP8/MRP14 complexes.

Antigens, Differentiation↗

Molecular characterisation of the genomic locus of the mouse MRP8 gene.

MRP8 is an inflammatory marker protein specifically expressed throughout the myeloid cell lineage in mouse and humans. Here the nucleotide sequence and the genomic structure of the mouse MRP8 gene (MM-MRP8) is presented. A strong homology between the mouse and human MRP8 promoters reflects the highly specific expression pattern of both genes and suggests that a conserved transcriptional machinery regulates these genes.

Amino Acid Sequence↗

E-selectin expression in experimental models of inflammation in mice.

E-selectin (CD62E, formerly termed ELAM-1) is a cytokine-inducible adhesion molecule which mediates the binding of neutrophils, monocytes, and skin homing T-cells. The murine homologue of E-selectin has been cloned. A monoclonal antibody (21KC10) was used here to study immunohistochemically the expression and regulation of murine E-selectin in vitro and in vivo. As described for the human system, there was no staining of normal endothelium in skin and other tissues. LPS and tumour necrosis factor-alpha (TNF-alpha), but not interleukin-4 (IL-4) or interferon-gamma (IFN-gamma), induced a transient expression of E-selectin, both when injected in vivo and when added to endothelial cell lines in vitro. To analyse temporal expression of E-selectin under pathophysiological conditions in vivo, we chose two murine models of inflammation: allergic (ACD) and irritant contact dermatitis (ICD). Expression of E-selectin was found to be induced on vascular endothelium of post-capillary venules in both ACD and ICD. In ICD, maximal staining of endothelial cells occurred earlier than in ACD. Expression of E-selectin during ICD and ACD was then compared between strains of mice which differ with regard to the intensity of their inflammatory reaction. BALB/c mice, which in contrast to C57BI/6 mice show a denser infiltrate and prolonged influx of granulocyte and monocytes, revealed a more pronounced and more prolonged expression of E-selectin than C57BI/6 mice. This held true for both ACD and ICD, and in each case, peak expression of E-selectin was associated with the highest density of the leukocytic infiltrate. This study thus reveals regulatory mechanisms involved in the expression of murine E-selectin in vivo and in vitro. It also demonstrates a correlation between endothelial expression of E-selectin and the genetically determined intensity of the inflammatory response.

Animals↗

Activated T cells induce expression of E-selectin in vitro and in an antigen-dependent manner in vivo.

E-selectin is an endothelial adhesion molecule for polymorphonuclear cells, monocytes and skin-homing T cells. We have analyzed whether murine T cells are able to induce expression of E-selectin in vitro and in vivo. Using models of inflammation in which T cells play either a significant or only a minor role, we compared induction of E-selectin between normal mice and mice lacking functional T cells (athymic nude mice). In irritant contact dermatitis, a model without a major role for T cells, E-selectin was transiently expressed within the first 24 h in both normal and nude mice. In experimental leishmaniasis (where specific T cells play an important role), a high expression of E-selectin was maintained for 48 h in normal mice, whereas in nude mice expression was only transient. However, reconstitution of nude mice with 10(8) T cells from draining lymph nodes (LN) of Leishmania-infected normal mice could restore sustained expression of E-selectin. Transfer of T lymphocytes from normal LN or from LN of mice sensitized to the contact allergen trinitrochlorobenzene (TNCB) did not have this effect. T cells from TNCB-sensitized mice, however, did induce sustained expression of E-selectin in nude mice when TNCB was applied locally; here, reconstitution with Leishmania-specific T cells had no effect. In vitro, T cells from infected or TNCB-sensitized normal mice increased expression of E-selectin on microvascular endothelial cells after 4 h of co-culture. T cells from untreated mice were less effective. Induction was dependent on direct cell-cell contact, but not on the action of interleukin-1 alpha, interleukin-1 beta, tumor necrosis factor-alpha or interferon-gamma. We conclude that sensitized T cells induce sustained expression of E-selectin in vivo in an antigen-dependent manner. This novel way of regulation could be relevant for cell-mediated immunity and chronic disease. The mechanisms are unknown, but, as in vitro, might require direct cell-cell contact.

Animals↗

Identification of a novel surface molecule, RM3/1, that contributes to the adhesion of glucocorticoid-induced human monocytes to endothelial cells.

The functions of different populations of peripheral blood monocytes in the course of an inflammatory reaction are presently not fully understood. In particular, the mechanisms for their specific recruitment to an inflammatory site are not yet known. We investigated a dexamethasone (Dex)-inducible monocyte subtype and its adhesion to either unstimulated or lipopolysaccharide (LPS)- or interferon (IFN)-gamma-stimulated human umbilical vein endothelial cells (HUVEC). The Dex-induced monocytes were characterized by the expression of the surface glycoprotein RM3/1. It was found that pretreatment of monocytes with Dex increased their adhesion to unstimulated and stimulated HUVEC. This increase in adhesion was paralleled by the expression of the RM3/1 surface molecule. Treatment with cyclosporin A (CsA) caused a down-regulation of the RM3/1 density per cell by 67% and also decreased adhesion to HUVEC. In contrast, the expression of other adhesion molecules remained unaffected by Dex or CsA treatment. Treatment of Dex-induced monocytes with antibodies against RM3/1, CD11a, CD11b, CD11c, CD14 and CD18 resulted in suppression of adhesion to stimulated HUVEC by 46%, 18%, 17%, 12%, 25% and 15%, respectively. Antibodies to the known adhesion molecules on endothelial cells (vascular cell adhesion molecule-1, E-selectin) did not block adhesion of Dex-induced monocytes. However, the combination of antibodies to RM3/1 and CD14 inhibited adhesion to LPS-stimulated HUVEC by 74%. These effects were also seen on IFN-gamma-stimulated HUVEC, where adhesion of Dex-induced monocytes was blocked with antibodies to RM3/1 + CD14 by 63%. From this, it is concluded that the RM3/1-molecule is a novel surface molecule that contributes to the adhesion of cortisone-induced monocytes to LPS or cytokine-stimulated endothelial cells.

Antigens, CD↗

Silicotic lymph node reactions in mice: genetic differences, correlation with macrophage markers, and independence from T lymphocytes.

Quartz was injected into a hind food of BALB/c and DBA/2 mice and on days 40, 90, and 180 the progressive response ensuing in the draining popliteal lymph node (PLN) was investigated by histopathology and immunohistopathology. The area of silicotic nodules (ASN) was measured by morphometry, and, by this parameter, strain BALB/c proved to be a high responder to quartz, and strain DBA/2 a low responder, albeit both strains showed a similar degree of reactive lymphoid hyperplasia in the draining PLN. Both strains also showed a similar quartz content in the draining PLN but in BALB/c mice quartz particles were concentrated in the ASN, whereas in DBA/2 mice they were evenly dispersed over the PLN. Because the silicotic response of athymic BALB/c nu/nu mice was even stronger than that of euthymic BALB/c mice, T cells are not required for the development of silicotic nodules. This fits the notion that quartz is not an antigen and that high and low responder strains are MHC-identical. Because quartz-treated BALB/c, but not DBA/2 mice, showed a persistent expression of the macrophage differentiation markers MRP8 and MRP14, phenotypically the observed strain difference in silicotic responsiveness seems to be expressed at the level of macrophages.

Animals↗

The mononuclear phagocyte-dendritic cell dichotomy: myths, facts, and a revised concept.

Since Aschoff's reticuloendothelial system was abandoned a few decades ago, classification and characterization of the mononuclear phagocyte and dendritic cell systems have evolved separately or even in competition with one another. New information has now become available indicating that monocytes/macrophages and dendritic cells have a common origin in the bone marrow, and may even transdifferentiate. Morphological and functional distinctions-although valid under certain conditions-have been blurred by revelation of the versatility of monocytes/macrophages and dendritic cells in response to different contextual needs in inflammation and immunity. Monocytes/macrophages and dendritic cells share a sentinel, receptor/effector, and presentation mode, and may either activate or silence specific immune reactions. In keeping with the view of monocytes/macrophages and dendritic cells as interactive sentinels, we suggest that the mono-nuclear phagocyte and dendritic cell systems be replaced by the custocyte system (custos, Lat = sentinel, guard) as a unifying concept. Within the custocyte system, we recognize type I, type II, and type III custocytes. Type I and II custocytes exhibit predominance of presentation or effector/presenter interdependency, respectively, while type III custocytes are bipolar, passing through type I- and type II-like phases during their development and in inflammatory responses. The custocyte system brings into view monocytes/macrophages and dendritic cells as dynamic players in immunity and inflammation with a high degree of derivational, phenotypic, functional, and molecular plasticity.

Animals↗

Induction of low zone tolerance to contact allergens in mice does not require functional Langerhans cells.

Epidermal Langerhans cells are known to be the major controlling element in the development of contact hypersensitivity. Haptenic molecules permeating the skin are taken up locally by Langerhans cells and then presented to T lymphocytes in the regional lymph nodes. Despite the presence of functional Langerhans cells, however, subsensitizing doses of hapten applied epicutaneously induce tolerance. We examined epidermal Langerhans cells at the site of contact with picryl chloride or oxazolone in BALB/c and C57B1/6 mice with regard to their responding to either subsensitizing or sensitizing doses of allergen. Subsensitizing doses did not interfere with the membranous adenosine triphosphatase system on Langerhans cells, known to relate to functional readiness of the cell. Accordingly, on electron microscopy the ultrastructure of Langerhans cells was found to be like that in untreated skin. In contrast, sensitizing doses caused a significant depletion of adenosine triphosphatase-positive Langerhans cells, and electron microscopy revealed marked cellular activation of Langerhans cells, with enlarged nuclei and increased numbers of mitochondria and Birbeck granules. Furthermore, subsensitizing doses induced tolerance regardless of whether Langerhans cells were functionally intact or had their function blocked arbitrarily. Blocking was achieved either by preceding ultraviolet B irradiation at the site of application or by painting of a sensitizer before painting another sensitizer on the same site. Moreover, not even surgical removal of the site within minutes after painting could prevent the induction of tolerance. The data suggest that subsensitizing doses of contact allergens painted on normal murine skin bypass involvement of epidermal Langerhans cells.

Adenosine Triphosphatases↗

Successful treatment of cutaneous leishmaniasis using systemic interferon-gamma.

BACKGROUND: Interferon-gamma (IFN-gamma) is one decisive cytokine of T-helper type 1 (Th1) cells in experimental leishmaniasis. It activates macrophages to kill intracellular parasites and leads to a decline of less mature macrophages in the infiltrate. Application of IFN-gamma heals the disease in susceptible mice and has recently been shown to be of benefit in human disease when given locally or in combination with antileishmanial drugs. OBJECTIVE: We investigated the clinical and histological effects of systemic application of IFN-gamma in a case of human cutaneous leishmaniasis in which an ulcerating lesion endangered the left upper eyelid of a 4-year-old boy. RESULTS: IFN-gamma (100 mu g/m2 of body surface per day) was given subcutaneously for a period of 28 days. The well-tolerated treatment resulted in rapid and complete healing of the lesion without functional impairment. Histological examination disclosed the formation of dermal granulomas. Immunohistochemical characterization of the myelomonocytic cells in the lesion before and after treatment revealed a marked decrease of less-mature macrophages in the infiltrate. This phenomenon equals observations in healing lesions during naturally occurring resistance in murine leishmaniasis. CONCLUSION: Systemic monotherapy with IFN-gamma can be an effective treatment for complicated cases of human cutaneous leishmaniasis without the side effects sometimes observed with systemic pentavalent antimony. Its effects on the myelomonocytic infiltrate are similar to the ones observed during the physiological immune response in natural resistance.

Child, Preschool↗

Activation of nuclear factor-kappa B and gene expression in human endothelial cells by the common haptens nickel and cobalt.

Nickel chloride (NiCl2) and cobalt chloride (CoCl2), two haptens frequently leading to contact hypersensitivity in industrialized countries, induce gene transcription of adhesion molecules ICAM-1, VCAM-1, and E-selectin in endothelial cells. In search of transcriptional mechanisms underlying their gene-inductive effects, we studied the capacity of both haptens to activate nuclear factor (NF)-kappa B, a transcription factor involved in inducible expression of adhesion molecules. Using electrophoretic mobility shift assays, a strong increase of NF-kappa B DNA binding was detected after stimulation of HUVEC with NiCl2 or CoCl2. Supershift analysis using antisera against p50 and p65 confirmed the authenticity of the induced NF-kappa B complex. Neutralizing Abs against TNF-alpha and IL-1 did not inhibit metal hapten-induced activation of NF-kappa B, thus ruling out action via an indirect autocrine pathway. In addition, NiCl2-induced activation of NF-kappa B and adhesion molecule expression was inhibited by the antioxidant pyrrolidine dithiocarbamate, indicating the involvement of redox-dependent mechanisms. Furthermore, NiCl2 was found to induce dose-dependency mRNA production and protein secretion of the NF-kappa B-controlled proinflammatory cytokine IL-6. Our data suggest that distinct allergens represent a new class of so far unknown agents that induce NH-kappa B binding activity that subsequently modulates transcription of cytokine and adhesion molecule genes. Thus, pathomechanisms leading to contact hypersensitivity to NiCl2 and CoCl2 appear to involve not only Ag-specific Langerhans- and T cell-dependent events but also include direct effects on other immunocompetent cells such as the endothelium.

Antioxidants↗

Increase of calcium levels in epithelial cells induces translocation of calcium-binding proteins migration inhibitory factor-related protein 8 (MRP8) and MRP14 to keratin intermediate filaments.

Migration inhibitory factor-related protein 8 (MRP8) and MRP14, two S-100-like Ca(2+)-binding proteins, have been described in cells of the epithelial lineage where they are either expressed constitutively (e.g. by mucosal squamous epithelium) or induced during disease (e.g. in keratinocytes during the course of psoriasis). Their biological function, however, is not yet clear. Recent studies have provided evidence that S-100-like proteins may interact with cytoskeletal components; we have therefore studied the biochemical properties and subcellular distribution of MRP8 and MRP14 in epithelial cells. TR146 human squamous carcinoma cells, which were found to express MRP8 and MRP14 in Northern and Western blot studies, were chosen for analysis. Cross-linking experiments using bis(sulphosuccinimidyl)suberate followed by SDS/PAGE and Western blot analysis revealed formation of heteromeric MRP8-MRP14 complexes. On subjecting TR146 cell lysates to two-dimensional gel electrophoresis and Western blotting, four distinct MRP14 isoforms could be identified resembling those described earlier in macrophages. A differential centrifugation technique revealed a Ca(2+)-dependent translocation of MRP8-MRP14 from the cytoplasm to the membrane and the Nonidet P40-insoluble cytoskeletal fraction. Double-label immunofluorescence microscopy of Ca2+ ionophore A23187-stimulated TR146 cells and cytochalasin B and demecolcine cytoskeleton disruption studies identified these structures as keratin intermediate filaments. Ca(2+)-dependent binding of MRP8-MRP14 to keratin filaments was additionally confirmed by an in vitro binding assay. In conclusion, our data suggest that MRP8 and MRP14 may be involved in Ca(2+)-dependent reorganization of cytoskeletal filaments in epithelial cells, which could be of importance for events associated with differentiation and inflammatory activation.

Antigens, Differentiation↗

The mouse homologue of the HTLV-I tax responsive element binding protein TAXREB107 is a highly conserved gene which may regulate some basal cellular functions.

We report the cDNA sequence of a mouse gene homologous to the HTLV-I tax responsive element binding protein TAXREB107 (M-TAXREB107). This gene is constitutively and ubiquitously expressed indicating a conserved biological function. We present evidence that its transcription is under strict control of a regulatory factor, which is rapidly metabolized.

Amino Acid Sequence↗

A homologue of the human MSS1 gene, a positive modulator of HIV-1 gene expression, is massively expressed in Xenopus oocytes.

Here the nucleotide sequence of a Xenopus homologue of the human MSS1 gene, a positive modulator of the HIV-1 Tat mediated transactivation in mammalian cells, is presented. This gene is highly conserved and almost exclusively expressed in Xenopus oocytes. We speculate about a possible role of this gene in the HIV-1 Tat/TAR mediated transactivation in Xenopus oocytes.

ATPases Associated with Diverse Cellular Activitie↗

Heterodimers of the calcium-binding proteins MRP8 and MRP14 are expressed on the surface of human monocytes upon adherence to fibronectin and collagen. Relation to TNF-alpha, IL-6, and superoxide production.

The 27E10 antigen is a heterodimer of MRP8 and MRP14, two Ca(2+)-binding proteins related to the S-100 protein family. Previous studies have shown that 27E10 epitope-bearing monocyte subsets are prevalent in early acute but absent in chronic inflammatory conditions. These observations further provide an impetus for identifying the cellular mechanisms responsible for the appearance of different monocyte subpopulations during inflammation. Therefore this in vitro study was carried out to investigate the influence of adhesion in inducing 27E10-positive subsets. In adhesion assays the role of 27E10 antigen in spontaneous adherence was obvious, as a monoclonal antibody directed against the 27E10 antigen significantly inhibited the adherence of monocytes to collagen and fibronectin. In contrast, these extracellular matrix (ECM) proteins induce the cell surface expression and association of 27E10 antigen with cytoskeleton (CSK), detected by flow cytometry and confocal laser scan microscopy, respectively. Similar results were obtained on cross-linking with specific antibodies, thus showing involvement of the integrin molecules VLA-2 and VLA-4. In addition, the association with CSK could be confirmed by differential detergent extraction. The observed redistribution of 27E10 antigen guided by collagen compared with fibronectin was also paralleled by an augmented release of inflammatory cytokines interleukin-6, tumor necrosis factor alpha, and superoxide anions. Thus, this study demonstrates that under inflammatory conditions the interactions of extravasating monocytes with the ECM may induce an activated phenotype of monocytes marked by 27E10.

Antigens↗

A lysosomal marker for activated microglial cells involved in Alzheimer classic senile plaques.

One of the major histopathological lesions in brains of patients with dementia of the Alzheimer type (DAT) is the senile plaque. Although previous studies have shown that senile plaques are often accompanied by microglial cells, the role of these cells in DAT pathology is still unclear. In an immunohistochemical and immunoelectron microscopical analysis of DAT and control brain tissues we addressed this issue using two monoclonal antibodies (mAbs KP1 and 25F9) directed against lysosomal antigens in monocytes and macrophages. Whereas KP1 stained lysosomes in both resting and activated microglial cells, 25F9-staining was predominantly found in lysosomes of activated microglial cells in classic senile plaques. The number and size of 25F9-positive lysosomes in activated microglial cells was increased compared to 25F9-staining in unaffected areas in DAT and control sections. We conclude that mAb 25F9 is a unique and useful lysosomal marker, with a higher specificity than other known markers, for activated microglial cells associated with classic, but not with diffuse, senile plaques.

Aged↗