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Biomedical subjects

S Lidén

Publications and source records attributed to S Lidén.

At least 19 recordsLinked to original sources

Serotonin in human allergic contact dermatitis. An immunohistochemical and high-performance liquid chromatographic study.

Allergic contact dermatitis (ACD) is a common clinical condition leading to considerable morbidity. We have recently demonstrated that ketanserin, a serotonin antagonist, significantly inhibits nickel sulphate-induced ACD. Furthermore, serotonin-immunoreactive (IR) cells have previously been demonstrated in normal human cutaneous melanocytes. To further elucidate the role of serotonin in cutaneous contact hypersensitivity, we compared ACD involved skin and uninvolved skin from nickel-allergic patients, and normal skin from healthy volunteers, for the presence of serotonin-like immunoreactive cells using immunohistochemistry. In addition, serotonin concentrations in ACD involved and uninvolved skin were compared by high-performance liquid chromatography (HPLC). In the skin of normal healthy volunteers, the serotonin-IR cells were situated in the basal layer of the epidermis. In uninvolved skin the cells were also situated in the basal layer, but they were more numerous and the immunofluorescence intensity was greater. In involved skin, the IR cells were fewer and they were found higher up in the epidermis. Also, the configuration of these cells was different: they showed enlarged and elongated dendrites as well as dendritic spines. The serotonin antiserum-labelled cells in ACD involved skin were also NKI-beteb positive (the latter is known as a reliable marker of melanocytes). The concentration of serotonin in involved skin was significantly higher than that in uninvolved skin in ACD patients (P < 0.05). Taken together, our previous and present results indicate that serotonin plays an important role in ACD. The basal epidermal serotonin-IR cells are more dendritic in ACD, and are found more superficial in the epidermis, where they might release their content of serotonin, thereby influencing the inflammatory process.

Adult

In vitro Leishmania major promastigote-induced macrophage migration is modulated by sensory and autonomic neuropeptides.

Recruitment, migration and adherence of macrophages and their interaction with inoculated promastigotes are key steps in the initiation of the inflammatory process in cutaneous leishmaniasis. Parasite- and nervous system-derived factors might be involved in this process. In the present study the chemotactic activities of live, killed and sonicated Leishmania major promastigotes and of the promastigote culture supernatant as well as the L. major surface protease gp63 towards a murine macrophage cell line, Raw 264.7, were investigated, using the Boyden technique. The sensory neuropeptides SOM, CGRP and SP, and the autonomic neuropeptides VIP and NPY, were also investigated for possible modulatory effects on this chemotaxis, using the living promastigotes. Living promastigotes were the most efficient attractants for macrophages compared with other forms of the parasites. Prior incubation of the macrophages with the parasites completely abolished the chemotactic activity. This might indicate that the living promastigote chemotaxis is a receptor-mediated process. On the other hand, paraformaldehyde-killed promastigotes not only failed to induce macrophage chemotaxis but also inhibited it in comparison with the control. The surface protease gp63 tended to inhibit the macrophage chemotactic activity and the sonicate tended to stimulate it compared with controls. The culture supernatant had no effect, indicating that the chemoattractive factors putatively synthesized by the living promastigotes are not released to the surrounding medium. Somatostatin inhibited L. major promastigote-induced macrophage migration at a high concentration, 10(-6) M, while substance P inhibited it at both low concentrations, 10(-10) and 10(-9) M, and a high one, 10(-6) M, the last-mentioned having the greatest inhibitory effect. A stimulatory effect of calcitonin gene-related peptide was found at high concentrations, 10(-5) and 10(-6) M. Vasoactive intestinal peptide stimulated macrophage chemotactic activity at both a high, 10(-5) M, and at a low, 10(-9) M, concentration, the same concentration at which neuropeptide Y exerted its maximum inhibitory effect.

Animals

The expression of the gene coding for the antibacterial peptide LL-37 is induced in human keratinocytes during inflammatory disorders.

The epithelia constitute a major barrier to the environment and provide the first line of defense against invading microbes. Antimicrobial peptides are emerging as participants in the defense system of epithelial barriers in general. Originally we isolated the human antimicrobial peptide LL-37 from granulocytes. The gene (CAMP or cathelicidin antimicrobial peptide) coding for this peptide belongs to the cathelicidin family, whose members contain a conserved pro-part of the cathelin type. The human genome seems to have only one gene of this family, whereas some mammalian species have several cathelicidin genes. In the present work we demonstrate up-regulation of this human cathelicidin gene in inflammatory skin disorders, whereas in normal skin no induction was found. By in situ hybridization and immunohistochemistry the transcript and the peptide were located in keratinocytes throughout the epidermis of the inflammatory regions. In addition, the peptide was detected in partially pure fractions derived from psoriatic scales by immunoblotting. These fractions also exhibited antibacterial activity. We propose a protective role for LL-37, when the integrity of the skin barrier is damaged, participating in the first line of defense, and preventing local infection and systemic invasion of microbes.

Adult

Vasoactive intestinal polypeptide inhibits the established allergic contact dermatitis in humans.

There is increasing evidence indicating that the nervous system influences the immune response. In the present study the potential immunomodulatory role of vasoactive intestinal polypeptide (VIP) in established allergic contact dermatitis in humans was investigated. Positive patch-test reactions were elicited by application of nickel sulphate for 48 h. VIP was applied under patch-test conditions after another 24-h period. The test areas were measured before and 24 h after application of VIP and biopsy specimens were taken for immunohistochemistry. After application of VIP at 10(-5) mol/L, there was a significant reduction in the diameter of the test reaction. In addition, there was a reduction in the number of Leu 3a+ cells. The influence of VIP on the proliferative response of peripheral blood mononuclear cells from nickel-allergic subjects to nickel sulphate was also tested. The cells were cultured for 6 days and VIP was added after 3 days. There was no effect on the proliferative response. However, when VIP was added at 10(-6) and 10(-5) mol/L, a higher level of interferon gamma was found in the nickel-treated cell cultures compared to the controls. In conclusion, VIP may have an inhibitory effect on established allergic contact dermatitis. This inhibitory effect is possibly mediated through an increased production of interferon gamma by peripheral blood mononuclear cells.

Biopsy

Biochemical and antibacterial analysis of human wound and blister fluid.

Fluid from a post-operative wound, six leg ulcers and a large blister were collected and analysed by biochemical, microbiological and immunological techniques. The results were compared with those from sera. All samples were lyophilized and extracted twice with 60% aqueous acetonitrile containing 1% trifluoroacetic acid. The pooled supernatants were lyophilized, redissolved, and the fluid extracts were characterized by six techniques (the blister exudate only with three): reverse-phase HPLC, Edman degradation, mass spectrometry, Western blot analysis, inhibition zone assay on plates with Bacillus megaterium (anti-Bm activity) and zone clearing on plates with cell walls from Micrococcus luteus (a lysozyme assay). The material corresponding to HPLC peaks of the wound fluid extract was identified as: histone H2B fragments 1-11,1-15 and 1-16, intact thymosin beta-4, defensins HNP1, 2 and 3, lysozyme and the peptide antibiotic FALL-39 and its precursor(s). The HPLC-separated blister fluid was extremely rich in anti-Bm activity (mainly defensins) and lysozyme. It may also contain factors not identified before. The plate assays scored 50-fold differences in anti-Bm activities and more than 10-fold differences in lysozyme, factors which together with thymosin could be active in wound healing. It is concluded that analysis of wound fluid yields peptide and activity patterns with novel fragments of important peptides, and quantitative differences, that can be useful to understand molecular mechanisms of wound healing further.

Adult

Immunohistochemical localization of interleukin-6-like immunoreactivity to peripheral nerve-like structures in normal and inflamed human skin.

Interleukin-6-like (IL-6-like) immunoreactivity was sought in inflamed and normal human skin using the same immunohistochemical technique as for detection of neuropeptides. Such immunoreactivity was found in dermal and in a few intraepidermal nerve-like fibres in biopsy specimens from inflamed skin from patients with positive epicutaneous patch-test reactions to nickel sulphate, and in skin specimens from patients with atopic dermatitis and prurigo nodularis. However, IL-6-like immunoreactivity was also found in nerve-like fibres in specimens from nonlesional skin. In skin from patients with positive epicutaneous patch-test reactions there was a statistically significantly (P < 0.01) higher number of IL-6-positive nerve fibres in the epidermis than in normal skin, in contrast to the papillary dermis, in which no difference was found. Moreover, there were clusters of nerve-like fibres with IL-6-like immunoreactivity in the dermis of prurigo nodularis lesions. In these nerve-like fibres, the colocalization of the immunoreactivities for IL-6 and calcitonin gene-related peptide was indicated. Localization of immunoreactivity to nerve-like structures surrounding the eccrine sweat glands indicates that IL-6 is present in autonomic as well as in sensory nerve fibres.

Biopsy

A cognitive-behavioral treatment of patients suffering from "electric hypersensitivity". Subjective effects and reactions in a double-blind provocation study.

This study tested psychological treatment of patients with "electric hypersensitivity." Seventeen patients were randomly assigned to a treatment group or a waiting-list control group in a pretest-posttest control group design. The patients were also taking part in double-blind provocation tests before and after the treatment. Subjective ratings of symptoms were registered and blood samples were taken and analyzed for "stress-related" variables, such as prolactin, cortisol, dehydroepiandrosterone, and cholesterol levels. The patients in the experimental group reduced their evaluations of the disability more than the control group did. This indicates that psychological treatment may be of value in this disease. However, none of the psychophysiological measures or the subjective reactions to the provocation test showed any significant between-group difference. The conclusion from the provocation test is that this group of alleged hypersensitive patients did not react to the electromagnetic fields.

Adult

Proinflammatory cytokines and their corresponding receptor proteins in eccrine sweat glands in normal and cutaneous leishmaniasis human skin. An immunohistochemical study.

Paraformaldehyde-fixed biopsy specimens of normal and chronic cutaneous leishmaniasis human skin were investigated for the presence and cellular distribution of interleukin-1 alpha, interleukin-1 beta, interleukin-6 and tumour necrosis factor-alpha and the corresponding receptors in eccrine sweat glands, using an indirect immunoperoxidase technique. There was cytoplasmic staining for all 4 cytokines as well as their receptor proteins in the clear cells of the eccrine sweat glands of both normal and inflamed skin specimens. No staining could be seen in the dark cells or the myoepithelial cells, neither in normal nor in inflamed skin. However, a difference between normal and inflamed skin was observed in the ductal system. Thus, cell layers of the dermal ducts in leishmaniasis skin were stained for all 4 cytokines, with more intense labelling in the basal cell layer of the coiled ducts, while in the normal skin, an intense staining was more evident in the inner luminal layer, with variable and less intense labelling of the basal layer. The immunolabelling for the cytokine receptors within the dermal ducts exhibited similar staining intensity in both luminal and basal cell layers, except in the case of the IL-6 receptor, which showed a moderate to intense signal in the basal cell layer but a weak staining of the luminal cell layer. Infiltrating inflammatory cells around the sweat gland apparatus in leishmaniasis skin exhibited immunoreactivities for all cytokines and their corresponding receptors.

Adult

Inhibitory effect of vasoactive intestinal polypeptide and ketanserin on established allergic contact dermatitis in man.

Neuromediators may influence the immune response. To investigate their potential immunomodulating role in established allergic contact dermatitis in man, the following neuromediators were tested: vasoactive intestinal polypeptide (VIP), serotonin, and the serotonin antagonists ketanserin, methiotepine and ICS-205-930. Positive patch test reactions were elicited by application of nickel sulphate for 48 h. The neuromediators were applied under patch test conditions after another 24 h. The test areas were measured before and 24 h after application of the neuromediators and biopsy specimens were taken for immunohistochemistry. After application of VIP at a concentration of 10(-5) mol/l, and of ketanserin at a concentration of 10(-4) mol/l, there was a significant reduction in the diameter of the test reaction. In addition, with VIP there was a reduction in the number of Leu 3a+ cells. Also tested was the influence of the neuromediators on the proliferative response of peripheral blood mononuclear cells from nickel-allergic subjects to nickel sulphate. The cells were cultured for 6 days and the neuromediators were added after 3 days. There was no effect on the proliferative response, except for slight inhibition by serotonin and by ketanserin at 10(-4) mol/l. More interferon gamma was found in the supernatants when VIP was added at 10(-5) and 10(-6) mol/l than in the control cultures. Thus, VIP and ketanserin may have an inhibitory effect on established allergic contact dermatitis. The effect of VIP is possibly mediated by an increased production of interferon gamma.

Adjuvants, Immunologic

Immunohistochemical studies of proinflammatory cytokines and their receptors in hair follicles of normal human skin.

Immunoreactivity to interleukin-1 alpha, interleukin-1 beta, interleukin-6 and tumour necrosis factor-alpha and their receptors, as well as the endogenous interleukin-1 receptor antagonist, was investigated in hair follicles in paraffin-embedded normal human skin. Interleukin-1 beta- and tumour necrosis factor-alpha-like immunoreactivities were found in the inner root sheath layer of hair follicles, at the suprapapillary level. Interleukin-1 receptor-like immunoreactivity was also found in this layer, while there was a variable immunoreactivity to the interleukin-1 receptor antagonist. In the outer root sheath there was a weak to moderate staining for the four cytokines, in addition to intense staining for their receptors and a weak staining for the antagonist. The fibrous root sheath had a moderate immunoreactivity for interleukin-1 alpha and interleukin-6. The distribution patterns suggest that these cytokines, particularly interleukin-1 beta and tumour necrosis factor-alpha, may have a protective role in hair formation, while all the investigated proinflammatory cytokines may have a role in the differentiation process.

Adult

Gamma/delta T cells and human skin reactivity to heavy metals.

Gamma/delta T cells may act as a first line of defence and respond to stress signals from the surrounding tissue. In the present investigation the occurrence of gamma/delta T cells was studied in the human skin after application of heavy metal salts by a routine epicutaneous patch-testing procedure. Gamma/delta cells were not found in normal skin. They were observed in all 14 allergic or irritant patch-test reactions to gold chloride and in 6/8 such reactions to mercuric chloride, where they comprised 16 +/- 6% and 15 +/- 6%, respectively, of the CD3+ cells in the dermis. They were also epidermotropic. Very few of these cells were found in reactions to salts of nickel and silver, except that they were increased in hair follicle epithelium in a reaction to silver nitrate. The gamma/delta cells expressed the V delta 2 and the V gamma 2 gene segments and were CD4-8-, indicating that they had the same phenotype as gamma/delta lymphocytes in the peripheral blood. Moreover, they were 'memory' T cells. These results indicate that gamma/delta lymphocytes play a role in the skin defence against highly reactive heavy metals.

Antigens, CD

Interleukin (IL)-1 alpha- and -1 beta-, IL-6-, and tumor necrosis factor-alpha-like immunoreactivities in human common and dysplastic nevocellular nevi and malignant melanoma.

Interleukin-1 alpha and -1 beta, interleukin-6, and tumor necrosis factor-alpha may have a protective effect against malignant transformation of melanocytes. By using monoclonal and polyclonal antisera we investigated, in paraformaldehyde-fixed tissue, the cellular distribution of these cytokines in human common and dysplastic nevocellular nevi and in malignant melanoma. Generally, the immunolabeling for all of these cytokines was both cytoplasmic and perinuclear as well as present in the basement membrane, which surrounds the individual cells or cellular nests of some of the nevi. In compound and intradermal nevi the immunolabeling was abundant, although there was a variation in the staining intensity between individual cells and even inside a single nevus cell, ranging from weak to strong. There was a strong labeling of the basement membrane around the cellular nests and around individual cells inside or outside the nests in the papillary and reticular dermis. With regard to the common junctional and dysplastic nevi and malignant melanoma, occasional immunolabeling could be seen in some cells within the cellular nests in the junctional area or papillary dermis, ranging from faint to moderate in intensity, but in this case the basement membrane around individual cells or cellular nests was not stained. The staining of nevocellular nevi and malignant melanoma indicates the possibility of these cytokines being synthesized by the nevi and melanoma cells. The labeling of the basement membrane in compound and intradermal nevi suggests that cytokines produced by nevocellular cells may be stored in the basement membrane, from which they could be released upon environmental or mechanical challenge. This distribution pattern would support the hypothesis that these cytokines may protect the common nevi from malignant transformation.

Basement Membrane

Interleukin-1 alpha- and beta-, interleukin-6- and tumour necrosis factor-alpha-like immunoreactivities in chronic granulomatous skin conditions.

Paraformaldehyde-fixed tissue of chronic granulomatous skin conditions, such as cutaneous leishmaniasis, granuloma annulare, leprosy and hidroadenitis, was investigated for the presence of interleukin-1 alpha-, interleukin-1 beta-, interleukin-6- and tumour necrosis factor-alpha-like immunoreactivities among the cellular infiltrates. There was a weak to strong cytoplasmic labelling of plasma cells for interleukin-6 and tumour necrosis factor-alpha at the periphery of the granulomatous mass and around the skin appendages. The interleukin-6-like immunoreactivity seemed to be correlated with the coarseness of the chromatin material of the cells, being more intense with coarse chromatin. The cytoplasmic labelling for interleukin-1 alpha and interleukin-1 beta in the plasma cells was less intense. Epitheloid, Langhans' giant cells and small round cells exhibited a weak to moderate cytoplasmic labelling for interleukin-1 alpha and interleukin-1 beta, whereas the staining intensity for interleukin-6 and tumour necrosis factor-alpha was weak to strong. In addition, there was staining of the stroma in the centre of granuloma with antisera against interleukin-1 alpha, interleukin-1 beta, interleukin-6 and tumour necrosis factor-alpha. This area contained few cells, suggesting that the granuloma was in a resolution process. A contribution of interleukin-6 and tumour necrosis factor-alpha to the granulomatous reaction, at least during the maintenance period, is suggested by the occurrence of these cytokines in the skin conditions studied. The findings are also consistent with a suggested role of B cells in the late stages of the granulomatous reaction. In addition, they are in line with the reported declining role of interleukin-1 in the maintenance of granuloma.

Chromatin