Contact dermatitis from clotrimazole with positive patch-test reactions also to croconazole and itraconazole.
Explore the source record for details and available documents.
Biomedical subjects
Publications and source records attributed to M Hertl.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Pemphigus vulgaris (PV) is a life-threatening autoimmune bullous disease of the skin and mucous membranes which requires immunosuppressive therapy, most commonly a combination of glucocorticoids and additional immunosuppressive agents. Since the side effects of long-term immunosuppressive therapy contribute to the poor prognosis of this disorder, there is considerable interest in a more specific treatment of this severe skin disease. PV may serve as a model disease for the development of a specific immunotherapy, because its pathogenesis as well as involved immunogenetic factors are well-characterized. This review focuses on the characterization of autoreactive T cell responses to desmoglein 3 (Dsg3), the autoantigen of PV, that presumably regulate the production of autoantibodies by providing help to the autoreactive B cells. Current knowledge on T cell epitopes of Dsg3 and the HLA class II alleles that restrict Dsg3-specific autoreactive T cell responses, as well as potential applications for a specific immunotherapy of PV, are described.
Explore the source record for details and available documents.
Antibodies against the extracellular domain of bullous pemphigoid antigen 2 (BPAG2) are thought to play a key role in the pathogenesis of bullous pemphigoid (BP), the most frequent autoimmune bullous disease of the skin. Autoreactive T cell responses to BPAG2 were investigated in 16 BP patients and 24 healthy controls by coculture of PBMC with two recombinant BPAG2 proteins (extracellular domain of BPAG2). Primary in vitro T cell responses to BPAG2 were observed in 10/12 BP patients expressing the BP-associated HLA-DQB1*0301 allele and 8/10 DQB1*0301 positive healthy individuals. DQB1*0301 also restricted three autoreactive T cell lines from two BP patients and a healthy donor. In contrast, PBMC from 14 normal patients carrying HLA class II alleles other than DQB1*0301 were not stimulated by BPAG2. Autoreactive BPAG2-specific CD4(+) T cell lines and clones from five BP patients produced both Th1 and Th2 cytokines, whereas three autoreactive T cell lines from three DQB1*0301 positive normal patients produced exclusively IFN-gamma. The absence of BPAG2-specific Th2 cells in healthy individuals strongly suggests that autoreactive Th2 responses to BPAG2 are restricted to BP patients and may thus be critical in the pathogenesis of BP.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Autoantibodies against the extracellular domain of bullous pemphigoid antigen 2 (BPAG2) are thought to play a key role in the pathogenesis of bullous pemphigoid and their detection may thus be of diagnostic and prognostic value. The aim of this study was to develop a standardized enzyme-linked immunosorbent assay utilizing the baculovirus-derived protein BV13 (extracellular domain of BPAG2 devoid of 68 amino acids at the C terminus linked to glutathione-S-transferase and 6x His tag) to detect BPAG2-specific autoantibodies. For the enzyme-linked immunosorbent assay, nickel agarose affinity-purified BV13 protein was incubated with sera from patients with bullous pemphigoid (n = 39), gestational pemphigoid (n = 10), and pemphigus vulgaris/pemphigus foliaceus (PV/PF; n = 15), or normal human sera (NHS; n = 18). Nickel affinity-purified proteins from wild-type baculovirus-infected insect cells served as a control. A positive enzyme-linked immunosorbent assay value was defined as reactivity (OD(BV13) - OD(WT)) > mean reactivity + 1 SD of the negative control sera (PV/PF; NHS). Thirty-five of 39 bullous pemphigoid sera and 10 of 10 gestational pemphigoid sera were reactive to BPAG2 compared with none of 15 PV/PF sera and one of 18 NHS (sensitivity, 91.8%; specificity, 97%). Of 16 BPAG2-reactive sera in the enzyme-linked immunosorbent assay, only six were BPAG2-reactive in the western blot, whereas 14 sera immunoprecipitated BPAG2 from extracts of epidermal keratinocytes. The enzyme-linked immunosorbent assay utilizing an eukaryotic BPAG2 protein thus seems to be highly sensitive and specific in the detection of BPAG2-specific antibodies and, hence, may be useful in the diagnosis of bullous autoimmune diseases, such as bullous pemphigoid and gestational pemphigoid.
Pemphigus vulgaris (PV) is an autoimmune blistering disease of the skin and is caused by autoantibodies against desmoglein 3 (Dsg3) on epidermal keratinocytes. Because the production of autoantibodies is presumably T cell dependent, Dsg3-specific T cell reactivity was investigated in 14 PV patients and 12 healthy donors. Peripheral blood mononuclear cells from seven PV patients with active disease showed a primary in vitro response to a recombinant protein containing the extracellular portion (EC1-5) of Dsg3, whereas two of seven PV patients in remission or under immunosuppressive treatment exhibited only secondary (2 degrees) or tertiary (3 degrees) T cell responses to Dsg3. T cell responses to Dsg3 were also observed in four of 12 healthy individuals upon 2 degrees or 3 degrees stimulation with Dsg3. Both PV patients and healthy responders were either positive for DRbeta1*0402 -- which is highly prevalent in PV -- or positive for DR11 alleles homologous to DRbeta1*0402. Two CD4+ Dsg3-specific T cell lines and 12 T cell clones from two PV patients and two CD4+ T cell lines and eight T cell clones from two normals were also stimulated by a Dsg3 protein devoid of the EC2-3 (deltaN1), suggesting that epitopes were located in the EC1, EC4, and/or EC5. Using Dsg3 peptides, one immunodominant peptide (residues 161-177) was also identified in the EC2. These observations demonstrate that T cell responses to Dsg3 can be detected in PV patients and in healthy donors carrying major histocompatibility class II alleles identical or similar to those highly prevalent in PV.
Pemphigus vulgaris is a life threatening bullous autoimmune disease of the skin mediated by autoantibodies against desmoglein 3 (Dsg3) on epidermal keratinocytes. Pemphigus vulgaris patients exhibit T cell responses against Dsg3 that may serve as a target to modulate the production of pathogenic autoantibodies. Healthy carriers of major histocompatibility complex class II alleles identical or similar to those that are highly prevalent in pemphigus vulgaris, namely DRbeta1*0402 and DRbeta1*1401, also mount T cell responses against Dsg3. We thus wanted to determine whether these prevalent major histocompatibility complex class II alleles restricted Dsg3 specific T cell responses. A CD4+ T cell line from the DRbeta1*0402+ patient PV9 was stimulated by Dsg3 with DRbeta1*0402+ L cells as antigen-presenting cells. A CD4+ T cell line and six CD4+ T cell clones from the DR11/14+ patient PV8, and six CD4+ T cell clones from the DR11+ healthy donor C6, required DR11/ DQbeta1*0301+ peripheral blood mononuclear cells but not DR11+ L cells as antigen-presenting cells and were strongly inhibited by anti-DQ antibodies, indicating that they were restricted by HLA-DQbeta1*0301. A CD4+ T cell line and three T cell clones from the DR11+ healthy donor C11 were differentially stimulated by Dsg3 with L cells expressing one of several DR11 alleles. T cell recognition of Dsg3 was thus not only restricted by the pemphigus vulgaris associated DRbeta1*0402 allele, but also by several DR11 alleles, some of which are highly homologous to DRbeta1*0402, and by HLA-DQbeta1*0301.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Liver core temperature during organ procurement, storage, and rewarming has not been reported in human orthotopic liver transplantations (OLT). We have shown in the rat that optimal temperature for liver storage is not 4 degrees C but 0 degree C to 1 degree C. Therefore, a study was undertaken in humans and in pigs to determine the pattern of temperature change during OLT. The porcine studies were performed, because it was not possible to follow human grafts during the period that they were sterilely packaged. Temperature depression in humans was rapid during organ perfusion, remained stable during organ dissection, and decreased again slightly, when after excision, the organ was perfused again. Temperature depression during the period of perfusion with University of Wisconsin (UW) solution was curvilinear with the initial rapid temperature depression followed by a period of slower temperature depression. Volume perfused versus time was linear during these periods and the relationship between temperature depression and volume infused was curvilinear. At the time of packaging, 65 +/- 12 minutes after start of cold perfusion, the liver core temperature was 5.7 degrees C +/- 1.3 degrees C. Studies in the pig showed that it took 75 to 100 minutes for liver core temperature to decrease below 5 degrees C, and core temperature reached a plateau at 1 degree C at 195 +/- 75 minutes after packaging. During the rewarming period in humans, while vascular anastomoses were being constructed, there was a rapid linear increase in temperature from 0.8 degree C, when the graft was removed from the cold, to 17.2 degrees C +/- 3.1 degrees C at 45.5 +/- 4.4 minutes later, just before portal reperfusion commenced. These studies show that it takes only a short time to cool livers down to 10 degrees C, but after flushing is stopped, temperature depression is markedly reduced, and ideal temperatures are not reached before packaging. Rewarming of livers during performance of vascular anastomoses is rapid and reaches temperatures at which substantial hepatic metabolism is occurring.
Idiosyncratic reactions (type B) are a major complication of drug therapy, because they are related to both the drug and to individual factors in the host. In comparison with other organs, the skin is quite frequently a target of allergic reactions, which are mainly elicited by small molecular weight compounds. This is the case in allergic contact dermatitis as well as in drug allergic reactions. In contrast to allergic contact dermatitis however, drug-induced hypersensitivity reactions of the skin have enormous variability with regard to their pathophysiological pathways, clinical signs of symptoms, severity, and the drugs which can elicit these reactions. Allergic reactions are mediated either by specific antibodies or a cellular immunocompetent immune response. About 25% to 30% of type B reactions are estimated to be allergic drug reactions, which are classified by the latency period between the ingestion of the responsible allergen and the onset of clinical symptoms. Studying the mechanisms of these hypersensitivity reactions improves our understanding of these diseases in general, and shows the importance of the skin as a signaling organ in these reactions.
The low-affinity receptor for IgE, FcepsilonRII (CD 23), plays an important role in IgE-mediated disorders such as allergy, atopy, and parasitic infections. In humans, the FcepsilonRII B isoform on epidermal Langerhans cells is thought to be an important accessory molecule in the allergy-specific T cell activation in atopic dermatitis. Since considerable knowledge about the accessory function of Langerhans cells for T-cell activation stems from mouse models, and since an IgE-bearing Langerhans cell mouse model would be useful in studying the pathophysiology of atopic dermatitis, we determined whether FcepsilonRII was also present on murine Langerhans cells. FcepsilonRIIa, which is the major FcepsilonRII isoform in mice, was found to be constitutively expressed on spleen cells from normal mice but was not present on epidermal Langerhans cells. When interleukin-4, a known inducer of FcepsilonRII, was administered in vivo, FcepsilonRII-specific mRNA and protein was significantly unregulated in spleen cells but not in Langerhans cells. De novo synthesis of FcepsilonRII was also induced in vitro by interleukin-4 on spleen cells, but not on epidermal cells. The presence of a recently cloned murine counterpart of the human Fc-epsilon- R. II isoform on murine Langerhans cells could also be excluded on the protein and mRNA level because of the high degree of homology to mouse Fc-epsilon-R IIA. Taken together the data indicate that murine epidermal Langerhans cells do not express the low-affinity receptor for IgE.
It is still generally believed that the defect in congenital diaphragmatic hernia results from failure of the so-called pleuroperitoneal canals (PPCs) to close at the end of the embryonic period (8th gestational week). Furthermore, it is assumed that gut could enter the thoracic cavity through this defect, causing compression and finally hypoplasia of the lung. However, this sequence of embryological events has never been studied, and many details even of normal diaphragmatic development are still unknown. Using scanning electron microscopy and a new animal model of congenital diaphragmatic hernia (CDH), the nitrofen rat model, the normal embryology of the diaphragm was reinvestigated and, for the first time, the crucial developmental steps of congenital diaphragmatic hernia formation were studied. The basic results were: (1) In normal development, the PPCs are never wide enough to allow herniation of gut loops. (2) The formation of the defect happens in an early embryonic period. (3) The early ingrowth of liver through the defect is of major importance for the formation of CDH. In another set of experiments, the nitrofen rat model of congenital diaphragmatic hernias was used to study the cellular mechanisms involved during epithelial and mesenchymal growth and differentiation in normal and in abnormal lungs. These results, combined with selected culture techniques (eg, branching morphogenesis and epithelio-mesenchymal interaction) probably open new ways to a better understanding of the mechanisms that finally lead to an abnormal lung in CDH.