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J Saloga

Publications and source records attributed to J Saloga.

At least 19 recordsLinked to original sources

[Allergen immunotherapy - a position paper of the German society for allergology and clinical immunology].

Mechanisms of allergen immunotherapy (AIT) are complex inducing numerous immunological effects. Successful AIT is most likely based on a functional switch of and tolerance induction in specific T cells downregulating allergic hypersensitivity and inflammation. Subcutaneous AIT for allergic rhinoconjunctivitis and allergic asthma has been successfully assessed in controlled studies with several clinically important allergens (i. e. birch-, grass- and mugwortpollen, dust mites, animal dander) and has shown convincing clinical efficacy. Considered as the only causal treatment besides allergen avoidance at present, AIT can alter the natural course of allergic diseases. Hymenopteravenom hypersensitivity (to bee- and wasp venom) treated with AIT gives the best results compared to AIT with other allergens. AIT is indicated in patients with IgE-mediated sensitizations and corresponding clinical symptoms to allergens, which do not or hardly permit allergen avoidance and which are available as suitable extracts. Decisions about indication and allergen selection should only be made by a physician with certified training or qualified knowledge and skills in allergology. AIT is administered by physicians experienced in this therapy. After addressing tolerability and present status of health the recommended or individually adjusted does is injected and precisely documented, followed by a mandatory waiting period of 30 minutes. Indication for and application of AIT in children are quite similar compared to the treatment of adults. Children tolerate AIT very well and benefit especially from its immunomodulatory effects. Risk factors for and results of unwanted systemic effects can effectively be minimized by training of the staff members involved, adhering to safety standards and immediate emergency treatment. Modified allergens, recombinant proteins and immunomodulatory adjuvants created by basic research are promises for an improved efficacy of AIT with reduced unwanted effects in the future.

Allergens↗

Inhibition of human allergic T-cell responses by IL-10-treated dendritic cells: differences from hydrocortisone-treated dendritic cells.

BACKGROUND: Dendritic cells (DCs) are able to induce human allergic T(H)1 responses as well as T(H)2 responses. OBJECTIVE: In this study, we examined the effect of antiinflammatory agents such as IL-10 and hydrocortisone (HC) on the accessory function of DCs and the resulting T-cell response, especially that of T(H)2 cells. METHODS: Naive and memory CD4(+) T cells from atopic donors were stimulated with autologous allergen-pulsed DCs generated from CD14(+) monocytes by culture with GM-CSF/IL-4 and fully matured with IL-1 beta, TNF-alpha, and PGE(2) in the presence or absence of IL-10 or HC. RESULTS: IL-10-treated DCs and, to a lesser extent, HC-treated DCs showed a decreased expression of MHC II molecules, the costimulatory molecule CD86, and the DC-specific marker CD83, as well as a strongly reduced IL-12 secretion. Consequently, T-cell proliferation was reduced after stimulation with IL-10- or HC-treated DCs alike. However, pretreatment of DCs with IL-10 inhibited the production of T(H)1 and T(H)2 cytokines by T cells, whereas HC-treated DCs inhibited production of IFN-gamma but induced an increased release of IL-4 and no change in IL-5. Both effects were long-lasting; cytokine production remained low (which was due not to enhanced apoptosis but to functional hyporesponsiveness) or even increased after restimulation with fully matured DCs. CONCLUSION: These data indicate that IL-10- or HC-treated DCs differ in their ability to influence human allergic T-cell responses. This has major implications for therapeutic strategies aiming at the downregulation of proallergic T(H)2 responses.

Allergens↗

The role of interleukin 10 in the regulation of allergic immune responses.

Several clinical studies and animal models have shown that Th2 lymphocytes play a key role in the pathophysiology of IgE-mediated allergic immune responses like allergic rhinitis and asthma or venom anaphylaxis. Classical specific immunotherapy (SIT) that has been proven to be clinically effective can serve as a role model for immunological changes that are associated with amelioration of allergic diseases. During SIT, the Th2-dominated immune response is modified towards a Th1 response leading to a decline in allergen-specific IgE and an increase in allergen-specific IgG production. Most importantly, however, production of the immunosuppressive/-regulatory cytokine interleukin 10 (IL-10) is also induced leading to T cell tolerance and prevention of tissue inflammation. In this article the role of IL-10-producing T cells in the regulation of allergic immune responses will be discussed.

Clonal Anergy↗

[Calciphylaxis: ischemic tissue necrosis in chronic renal failure. Case report and review of the literature].

Calciphylaxis is a rare but potentially life-threatening complication in chronic renal failure. It is characterized by ischemic tissue necrosis primarily of the skin. The typical histopathologic finding is microvascular calcification with endovascular fibrosis. Patients typically present with violaceous, mottled and painful lesions which tend to progress to non-healing ulcers and necrosis. Most frequently the lower extremities are involved in a symmetric fashion but the trunk may also be affected. Sepsis from superinfection of the lesions accounts for the high mortality of this disease which is of importance for dermatologists and nephrologists alike. 61-year-old female patient developed lesions of calciphylaxis on both calves two years after beginning hemodialysis to treat renal failure due to diabetic glomerulosclerosis. We discuss aspects of the pathogenesis of calciphylaxis, as well as diagnosis, treatment and means of prevention, and review the current literature.

Biopsy↗

Comparison of allergen-stimulated dendritic cells from atopic and nonatopic donors dissecting their effect on autologous naive and memory T helper cells of such donors.

BACKGROUND: Because of their production of IL-12, mature dendritic cells (DC) are potent inducers of T(H)1 responses. However, recent reports have demonstrated that DCs can also induce T(H)2 differentiation. OBJECTIVE: In the current study we investigated which immune response is induced by DCs in naive CD45RA(+) or memory CD45R0(+) CD4(+) T cells from atopic individuals (patients with grass pollen, birch pollen, or house dust mite allergy) compared with nonatopic control subjects. METHODS: Immature DCs, generated from peripheral blood monocytes from atopic and nonatopic donors, were pulsed with the respective allergen and fully matured. Then the mature DCs were cocultured in vitro with autologous naive (CD45RA(+)) and memory (CD45R0(+)) CD4(+) T cells and cytokine and IgE production were measured by ELISA. RESULTS: After the second restimulation with allergen-pulsed DCs, naive as well as memory autologous CD4(+) T cells from atopic but not from nonatopic donors showed an enhanced production of the T(H)2-type cytokines IL-4, IL-5, and IL-10, resulting in an increased IgE production, whereas IFN-gamma production and proliferation were not different. IL-12 production and surface marker expression of DCs derived from atopic and nonatopic donors did not differ and addition of neutralizing anti-IL-12 mAbs did not increase IL-4 but diminished IFN-gamma production. CONCLUSION: These data indicate that mature DCs are able to induce naive and activate allergen-specific T helper cells to produce T(H)2 cytokines if the T cells are derived from atopic donors. This phenomenon is not due to diminished IL-12 production by DCs of atopic donors.

Allergens↗

Detection of increased tyrosine phosphorylation in murine Langerhans cells after stimulation with contact sensitizers.

The signalling pathways in epidermal Langerhans cells (LC) during activation by contact sensitizers are poorly understood. Recently, we have described an increased phosphorylation of tyrosine residues in human MHC class II-positive cells in vitro following stimulation with contact sensitizers. In the study reported here the formation of phosphotyrosine (p-tyr) in murine epidermal LC upon stimulation with contact sensitizers was examined. By the use of a flow cytometric technique a significant increase in p-tyr was demonstrated in LC stimulated in vitro with the strong contact sensitizers TNCB (2,4,6-trinitro-chlorobenzene) and MCI/MI (5-chloro-2-methylisothiazolinone plus 2-methylisothiazolinone) but not after treatment with the irritants sodium lauryl sulphate or benzoic acid. The protein tyrosine kinase inhibitors genistein and tyrphostin A9, but not tyrphostin AG 1288, were able to block this process significantly. Similar results were obtained using the LC-like dendritic cell line XS52. In addition, Western blot analysis on XS52 cells revealed a selective phosphorylation of two protein bands with a molecular weight between 50 and 60 kDa following stimulation with TNCB. These results demonstrate that contact sensitizers induce an increased phosphorylation of tyrosine residues in murine LC and can be used as the basis for in vivo studies using inhibitors for signal transduction pathways for prevention of primary sensitization to contact sensitizers.

Animals↗

Allergen-specific immune deviation from a TH2 to a TH1 response induced by dendritic cells and collagen type I.

BACKGROUND: Atopy and IgE production are associated with enhanced allergen-specific T(H)2 responses. Therefore a causative treatment may result from the deviation of this T(H)2-dominated immune response toward a T(H)1 response. OBJECTIVE: This study was carried out to analyze whether dendritic cells, the most potent antigen-presenting cells that are also known to induce antigen-specific T(H)1 responses, are suitable for therapy of atopic diseases by shifting the allergen-specific T(H)2 response toward a T(H)1 response. METHODS: Monocyte-derived dendritic cells were used to present allergens in vitro to autologous CD4(+) T cells of allergic persons. Because collagen type I activates dendritic cells and enhances the secretion of IL-12, we performed allergen presentation assays also in the presence of collagen type I. RESULTS: After stimulation with allergen-pulsed dendritic cells the production of IFN-gamma as well as that of IL-4 and IL-5 by CD4(+) T cells was enhanced. In the presence of collagen type I, however, a significant shift toward a T(H)1 response with increased production of IFN-gamma and a decreased production of IL-5 could be observed. When T cells were stimulated directly with anti-CD3 and anti-CD28 in the absence of antigen-presenting cells, it was demonstrated that collagen type I also exerted a direct effect on T cells, increasing their IFN-gamma production. CONCLUSION: These data indicate that collagen type I influences dendritic cells as well as T cells in a way that a shift in cytokine production results in a T(H)1 response even in already-sensitized atopic individuals.

Allergens↗

Signals involved in the early TH1/TH2 polarization of an immune response depending on the type of antigen.

BACKGROUND: The early production of distinct cytokines by epidermal cells (ECs) in response to antigen exposure may govern the development of TH1 -like immune responses, such as contact sensitivity, or TH2 -like immune responses, such as IgE-dependent allergies of the immediate type, depending on the type of antigen. OBJECTIVE: The aim of this study was to compare the signals induced by protein allergens with those induced by haptens in ECs and subsequently in local draining lymph node cells (LNCs) or splenocytes. METHODS: BALB/c mice were primed in vivo with the protein allergens ovalbumin or birch pollen or the haptens 2, 4-dinitrofluorobenzene or trinitrochlorbenzene, respectively, and cytokine and immunoglobulin secretions of responding splenocytes were measured by ELISA after in vitro coculture with ECs. Induction of cytokine mRNA expression in ECs and LNCs was analyzed by reverse transcriptase-PCR. RESULTS: In the presence of protein allergens, ECs enhance the induction of a TH2 immune response (IL-4 and IgE production of splenocytes), whereas a TH1 immune response (IFN-gamma and IgG2a production) was only induced in the context of haptens. Heat inactivation of ovalbumin did not diminish the development of a TH2 immune response. One direct effect of antigen on ECs was the earlier expression of IL-10 mRNA after stimulation with protein allergens (30 minutes) than with haptens (2 hours) in vitro. By using an in vivo approach, sensitization of the skin with trinitrochlorbenzene, but not with ovalbumin, resulted in an early induction of IL-1beta, IL-12p40, and IFN-gamma mRNA in LNCs, whereas IL-18 was induced by both. CONCLUSION: These data indicate that the type of antigen strongly influences the type of immune response by eliciting distinct signals already in the epithelium.

Allergens↗

Decreased release of histamine and sulfidoleukotrienes by human peripheral blood leukocytes after wasp venom immunotherapy is partially due to induction of IL-10 and IFN-gamma production of T cells.

BACKGROUND: Recent studies provide evidence that venom immunotherapy (VIT) alters the pattern of cytokine production by inducing an allergen-specific T-cell shift in cytokine expression from TH2 (IL-4, IL-5) to TH1 (IFN-gamma) cytokines and also inducing the production of IL-10. OBJECTIVE: This study was carried out to analyze whether these changes in cytokine production of T cells already observed 1 week after the initiation of VIT in subjects with wasp venom allergy also influence the reactivity of effector cells, such as mast cells and basophils. METHODS: All subjects included in this study had a history of severe systemic allergic reactions to wasp stings and positive skin test responses with venom and venom-specific IgE in the sera. Peripheral blood leukocytes were isolated before and after the initiation of VIT (rush therapy reaching a maintenance dose of 100 microg venom injected subcutaneously within 1 week) and preincubated with or without addition of IL-10, IFN-gamma, IL-10 + IFN-gamma, anti-IL-10, or anti-IFN-gamma. After stimulation with wasp venom, histamine and sulfidoleukotriene release were assessed by ELISA and compared with spontaneous release and total histamine content. RESULTS: After the induction of VIT, venom-induced absolute and relative histamine and sulfidoleukotriene release were reduced. This was at least partially due to the induction of IFN-gamma and IL-10 production, because (1) neutralization of IL-10 and IFN-gamma by mAbs partially restored the release after the initiation of VIT and (2) the addition of exogenous IFN-gamma and IL-10 caused a statistically significant diminution of the venom-induced histamine and sulfidoleukotriene release before VIT. Depletion of CD2(+) T cells also restored the releasability after VIT. CONCLUSION: These data indicate that T cells (producing IL-10 and IFN-gamma after VIT) play a key role for the inhibition of histamine and sulfidoleukotriene release of effector cells.

Antibodies, Monoclonal↗

[Theories on the mode of action of desensitization].

Specific immunotherapy (SIT) has been practised successfully for about 80 years. In classic immunotherapy, an allergen-extract is repeatedly injected subcutaneously in increasing doses. A large number of clinically controlled studies have proved the efficacy of this kind of immunotherapy, while its mode of action is not precisely known yet. A successful SIT leads to an impairment of allergic symptoms (symptom score), and a concordant decrease in drug use. Furthermore, a reduced reactivity in specific dermal, nasal and bronchial provocation tests is induced as well as a diminished unspecific reagibility in the affected tissues. Several studies showed reduced values for allergen-specific IgE (serum) that followed an initial increase. A reduced immigration of eosinophils was found, both after provocation with allergen and during the pollen season, as well as diminished values of markers for the activity of eosinophils, e.g. eosinophil cationic protein (ECP). Also, a reduced allergen-induced histamine-liberation from mast cells and basophils has been reported. The underlying mechanism for these effects of SIT might be a reorientation of the allergen-induced lymphokine-production to a dominant TH1-cytokine-profile. Because the relation between the quantity of IL-4 and its regulator IFN-gamma controls the extent of IgE-synthesis by B-cells, the reorientation leads to a diminished production of IgE. IFN-gamma inhibits the differentiation of TH2-cells; by this less TH2-cells are present to help B-cells to produce IgE-antibodies, and to induce the differentiation of mast cells and basophils as well as immigration, differentiation and activation of eosinophils. Thus, the positive effects of SIT can be explained by the reorientation T-cell lymphokine profile. The mechanism under discussion for explaining this reorientation include: 1) an increased differentiation of allergen-specific CD4+ precursor-cells or a reorientation of established TH2-cells to the production of IFN-gamma, 2) the differentiation of IFN-gamma-producing CD8+ T-cells and of T-cells with receptors for T-cell-antigenes of the gamma, delta-type; and 3) the induction of an energy in TH2-cells.

Allergens↗

Induction of tyrosine phosphorylation in human MHC class II-positive antigen-presenting cells by stimulation with contact sensitizers.

To investigate the intracellular signaling mechanisms involved in the activation of APC by contact sensitizers, we studied the induction of tyrosine phosphorylation by these agents. Selective analysis of phosphotyrosine (p-tyr) in human Langerhans cells and different mononuclear cell types was achieved using a multicolor flow-cytometric technique. Stimulation with contact sensitizers revealed a distinct increase in p-tyr exclusively for MHC class II-positive cells. For different haptens, irritants, as well as activators of distinct signal transduction pathways, it was demonstrated that only strong sensitizers or the protein tyrosine phosphatase inhibitor sodium orthovanadate or cross-linking of MHC class II molecules were able to induce formation of p-tyr in human blood-derived dendritic cells serving as model for the dendritic cell family. This event required physiologic cell culture conditions and was blocked by specific inhibitors of protein tyrosine kinases. No evidence for the inhibition of protein tyrosine phosphatases by haptens was found. Western blot analysis of monocyte-enriched populations revealed an augmented phosphorylation of distinct proteins after hapten stimulation partly resembling the pattern noticed after cross-linking of HLA-DR molecules. In dendritic cells generated from mononuclear progenitors, the protein tyrosine kinase inhibitor genistein was able to block tyrosine phosphorylation as well as production of IL-1beta mRNA transcripts. Our data underline the unique capacity of haptens to activate APC and the important role of tyrosine phosphorylation for this process.

Antigen-Presenting Cells↗

Influence of extracellular matrix proteins on the development of cultured human dendritic cells.

The development of dendritic cells (DC) is still only partly understood. Recently established culture systems using CD34+ cells or monocytes as precursor cells for the generation of DC indicate the necessity of pro-inflammatory cytokines for their development. In vivo the contact to other cells or to the proteins of the extracellular matrix might also be essential for their development. In our experiments we used granulocyte-macrophage colony-stimulating factor- and IL-4-treated human monocytes as precursor cells to investigate the interaction of DC at different maturation stages with the matrix proteins fibronectin, collagen type I and collagen type IV. We demonstrate a strong beta1-integrin-mediated adherence of immature DC to fibronectin that is lost completely during maturation. The binding to collagen type I was less strong but induced a maturation of the precursor cells. After 3 days of culture on this protein, the cells showed all features of fully matured DC such as expression of CD83 and an excellent allostimulatory capacity. The reason for this effect was shown to be the induction of TNF-alpha production by the DC themselves. In contrast to the adhesion to fibronectin, the maturation and the cytokine production of DC induced by collagen type I could not be inhibited by blocking of beta1-integrins. These results indicate that proteins of the extracellular matrix play an important role in the development and function of human DC.

Antigens, Surface↗

Direct evidence that FK506 inhibition of FcepsilonRI-mediated exocytosis from RBL mast cells involves calcineurin.

FcepsilonRI-mediated exocytosis of preformed mediators from mast cells and basophils (e.g. histamine, serotonin, beta-hexosaminidase) is sensitive to the immunosuppressants cyclosporin A and FK506 (IC50 200 and 4 nM, respectively) but not rapamycin. The mechanism of inhibition does not appear to involve tyrosine phosphorylation, hydrolysis of inositol phosphates or calcium flux. Here we report experiments using a molecular approach to assess the role of calcineurin, a serine/threonine phosphatase thought to be the primary pharmacological target of these drugs. Calcineurin's activity requires association of its catalytic (A) subunit with an intrinsic regulatory (B) subunit. We hypothesized that calcineurin-sensitive signalling events should be affected by the depletion of calcineurin B subunits, thereby reducing the number of active A:B complexes. We therefore transfected rat basophilic leukemia (RBL) cells with an inhibitory (dominant negative) form of the calcineurin A subunit, which binds the calcineurin B subunit with high affinity but does not possess catalytic activity (B subunit knock-out, BKO). In these transfected cells, the dose-response curve for the inhibition of FcepsilonRI-mediated exocytosis by FK506 was shifted to the left, indicating an increased drug sensitivity of BKO-transfected cells. We conclude that FK506 inhibition of FcepsilonRI-mediated exocytosis in mast cells specifically targets calcineurin activity.

Animals↗

Active suppression induced by cutaneous exposure to bacterial superantigen is prevented by interleukin-12 treatment in vivo.

Exposure to the bacterial superantigen staphylococcal enterotoxin B (SEB) leads to inhibition of several immune responses and the induction of regulatory cells. The aim of this study was to characterize these regulatory cells further and to investigate the effect of interleukin-12 (IL-12) on superantigen-induced suppression. For this purpose BALB/c mice were injected subcutaneously with low doses of SEB that did not deplete the SEB-reactive V beta T cells. Intravenous transfer of unseparated local-draining lymph node cells from these SEB-treated animals suppressed the proliferative response of mononuclear spleen cells of naive syngeneic recipients for at least 3 weeks. The regulatory cells did not produce the type 2 cytokines, interleukin-4 (IL-4) or interleukin-10 (IL-10), or increased amounts of transforming growth factor-beta (TGF-beta). Depletion of CD8+ or SEB-reactive V beta 7+ and V beta 8+ T cells, prior to transfer, abrogated the suppressive effect. Intraperitoneal injections of IL-12 into donors, prior to SEB treatment, prevented the induction of functional regulatory cells, and treatment of recipients with IL-12, prior to receipt of cells from SEB-treated donors, prevented the suppressive effect of regulatory cells that were already induced. The data indicate that exposure to minute amounts of superantigens directly induces superantigen-reactive and CD8+ regulatory T cells and that superantigen-induced suppression can be prevented and reversed by IL-12 treatment in vivo.

Animals↗

Dendritic cells as mediators of tumor-induced tolerance in metastatic melanoma.

Escape from immune surveillance is critical for tumor progression in metastatic melanoma. We assessed the function of melanoma-derived dendritic cells (DCs) in patients presenting simultaneously with responding (rM) or progressing (pM) melanoma metastases. These rare coincidences allowed us to compare syngeneically the function of tumor DCs. CD83+ DCs were purified freshly from large responding (rDCs) or progressing (pDCs) metastases following chemoimmunotherapy. rDCs were 5 times more potent inducers of allogeneic T-cell proliferation than the pDCs that were used as control. Phenotypic analysis showed a marked depression of CD86 expression on pDCs. Culture supernatants from pM showed production of Th2-type cytokines [interleukin-10 (IL-10)], whereas a Th1 pattern [IL-2, interferon-gamma (IFN-gamma), IL-12) predominated in rM. The IL-10 detected in progressing metastases was directly derived from melanoma cells. Culture supernatants from metastases applied to DC-supported allo-MLR assays suppressed T-cell responses by 50-75% in the case of pM, but not rM. Finally, in a co-stimulation-dependent anti-CD3 tolerance assay, pDCs (but not rDCs) induced anergy in syngeneic CD4+ T cells. Anergy could be overcome by addition of IL-12 or IL-2. Our results show that melanoma-derived factors convert DC-antigen presenting cell function to tolerance induction against tumor tissue, changing tumor DCs to "silencers" of anti-tumoral immune responses.

Antigens, CD↗

Production of IL-18 (IFN-gamma-inducing factor) messenger RNA and functional protein by murine keratinocytes.

Recently, the novel cytokine IL-18 (IFN-gamma-inducing factor) has been described as a growth and differentiation factor for Th1 cells. Epidermal keratinocytes (KC) are known to direct T cell education by production of cytokines. Therefore, expression of IL-18 was sought in KC. Epidermal RNA was analyzed following stimulation with contact sensitizers or controls for IL-18 mRNA expression by semiquantitative reverse transcription-PCR. Constitutive expression of IL-18 mRNA was low in untreated epidermal cells (EC), but early up-regulation of IL-18 mRNA signals was detected following application of a contact allergen in vivo. The peak strength of IL-18 signals was observed within 4 to 6 h following stimulation with an allergen. Application of an irritant (benzalconiumchloride) or solvents did not result in increased signal strength. To determine the cellular origin of IL-18 mRNA in EC, depletion experiments were performed. IL-18 signals were not affected by depletion with anti-CD3 (T cells) or anti-MHC class II mAb-coupled beads identifying KC as a major source of IL-18. These results were confirmed by analysis of mRNA derived from the KC cell line PAM 212. Strong IL-18 signals could be detected by reverse transcription-PCR. To delineate whether IL-18 protein was produced by EC/KC, a sandwich ELISA was used to assay for IL-18 production. Supernatants from allergen-stimulated EC and KC showed production of IL-18 protein. To confirm that IL-18 protein was functional, EC or KC supernatants were tested for their ability to induce IFN-gamma production. Significant amounts of IFN-gamma were detected in supernatants of allergen-treated cells. In aggregate, our data indicate that murine KC are a source of both IL-18 mRNA and functional protein.

Animals↗

Flow-cytometric screening for the modulation of receptor-mediated endocytosis in human dendritic cells: implications for the development of an in vitro technique for predictive testing of contact sensitizers.

The aim of this study was to explore the usefulness of human blood dendritic cells (DC) in the development of an in vitro model for predictive testing of contact sensitizers. A method was established to monitor the influence of chemicals on the intracellular targeting of antibody-crosslinked MHC class II molecules after their uptake by human DC. Using a three-colour flow-cytometric technique, freshly prepared DC were distinguished from other MHC class II-bearing cell types such as B-cells and monocytes in unseparated mononuclear cell suspensions of healthy volunteers. The assay is based on the pH-sensitivity of internalized fluorescein-coupled MHC class II specific antibodies. Quenching of fluorescence intensity due to internalization into acidic intracellular compartments was observed with untreated DC whereas internalization into less acidic structures following stimulation with strong contact sensitizers ensured that the fluorescence intensity was conserved. The usefulness of this approach for predictive testing of the preservatives MI/MCI, imidazolidinyl urea, methyl-4-hydroxy-benzoate and 2-phenoxyethanol in comparison to the strong allergen DNFB and the irritants sodium lauryl sulphate and dithranol was explored. Whereas low concentrations of MI/MCI resembled the strong allergen DNFB, high concentrations of imidazolidinyl urea were required for a moderate response. Methyl-4-hydroxy-benzoate and 2-phenoxyethanol as well as the irritants SLS and dithranol failed to induce a significant effect in this assay. The non-responsiveness to the latter compounds reflected their minor or absent capacity to induce contact hypersensitivity in humans, whereas DNFB, MI/MCI and imidazolidinyl urea are well established contact sensitizers. These data suggest that the capacity of a chemical to modulate endocytotic mechanisms in dendritic cells in vitro seems to reflect the probability of that substance acting as a hapten in vivo.

Antibodies, Monoclonal↗