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Biomedical subjects

H Renz

Publications and source records attributed to H Renz.

At least 91 records · Page 5Linked to original sources

BCG infection suppresses allergic sensitization and development of increased airway reactivity in an animal model.

BACKGROUND: Epidemiologic studies suggest an inverse correlation between infections and development of atopy. The purpose of this study was to test the hypothesis whether a preexisting Th1-type immune response elicited by BCG immunization could suppress allergic sensitization and airway hyperreactivity in an animal model. METHODS: BALB/c mice were immunized with BCG and/or sensitized to ovalbumin. RESULTS: BCG immunization alone resulted in cutaneous type-IV hypersensitivity reactions to tuberculin and granulomatous lesions in the liver. Splenic mononuclear cells (MNCs) produced increased levels of IFN-gamma after activation by Concanavalin A (ConA). Ovalbumin sensitization alone resulted in increased production of IL-4 after activation by ConA. Ovalbumin-sensitized animals also demonstrated markedly elevated anti-ovalbumin IgE/IgG1 serum antibody titers and increased airway reactivity after allergen challenges by means of the airways. BCG immunization 14 days before the start of ovalbumin sensitization markedly hindered the development of allergic responses as indicated by (1) increased IFN-gamma and normalized IL-4 and IL-10 production by splenic MNCs after activation with ConA, (2) a reduced proliferation rate of splenic MNCs after ovalbumin restimulation, (3) partial prevention of ovalbumin-specific IgE/IgG1 serum antibody titers but elevated (nonallergic) anti-ovalbumin IgG2a serum antibody titers, (4) prevention of airway responsiveness, (5) reduced eosinophilic influx into the airway lumen, and (6) reduced levels of IL-4 and IL-5 in broncho alveolar lavage fluids. CONCLUSION: In this model BCG immunization established a Th1-type immune response that hinders allergic sensitization and the development of increased airway reactivity.

Animals↗

Impaired NK1.1+ T cells do not prevent the development of an IgE-dependent allergic phenotype.

BACKGROUND: The induction of TH2 immune responses is critically dependent on initial IL-4. Although crucial, the source of this early IL-4 has not been identified. One candidate is a CD1 restricted NK1.1+ T cell subpopulation which is known to produce such early IL-4. OBJECTIVES AND METHODS: The necessity of NK1.1+ T cells for the expression of an IgE-dependent phenotype was investigated in a NK1.1+ T cell deficient mouse model. The allergic phenotype was defined as immediate cutaneous hypersensitivity. It was induced by immunization of mice with ovalbumin. Mouse strains used were C57BL/6 mice and C57BL/6 mice homozygous for a targeted mutation of the beta2 microglobulin gene with consecutive loss of CD1 expression, which leads to a drastic reduction of NK1.1+ T cells. Manifestation of an allergic sensitization was assessed by intradermal allergen challenge after i.v. injection of Evans blue solution. The blue stained weal formations were quantified with the Bonitur method. In addition, the Th2 response was confirmed by the measurement of cytokines and serum immunoglobulins. The capability to produce early IL-4 was tested through the assessment of IL-4 mRNA shortly after a single challenge. RESULTS: Wild type and mutated mice did not differ in any of the immunological parameters measured. CONCLUSION: A single exposure to antigen with or without adjuvant induces early IL-4 production in C57BL/6 beta2m-/- mice. This early IL-4 is therefore independent of the presence of NK1.1+ T cells and functional MHC class I molecules and leads to IgE production and immediate cutaneous hypersensitivity.

Animals↗

Various immunological phenotypes are associated with increased airway responsiveness.

BACKGROUND: Bronchial asthma is characterized by a TH2 type immune response, chronic inflammation of the airways and increased airway responsiveness. The relationship between IgE- and inflammatory-dependent mechanisms that contribute to bronchial asthma are not well defined. OBJECTIVE: The purpose of this study was to compare and analyse the immune pathways that resulted in development of allergen-induced and/or inflammatory dependent increased airways responsiveness. RESULTS: BALB/c and C57BL/6 mice responded to OVA-sensitization with elevated allergen-specific IgE/IgG1 serum antibody-titres and the development of cutaneous immediate-type hypersensitivity reactions. Increased airway responsiveness was observed following airway allergen challenges. However, the inflammatory component of the lung differed between the strains. In OVA-sensitized BALB/c mice a marked increase in lymphocytes, eosinophils and neutrophils in BAL fluids was parallelled with elevated production of IL-4, IL-5 and TNFalpha in the lung. In contrast in OVA-sensitized C57BL/6 mice, the inflammatory immune response in the lung was much weaker. We postulate that two pathways can regulate the induction of increased airway responsiveness. One depends on the presence of allergen-specific IgE/IgG1 and allergen, and a second is mediated by allergen-independent inflammation of the lung. To test this hypothesis, BALB/c mice were treated nasally with low doses of bacterial superantigen (SEB) as a prototypical inducer of airway inflammation, following which influx of lymphocytes, eosinophils and neutrophils into the airways was parallelled by development of increased airway-responsiveness in the absence of allergen-specific IgE/IgG1 antibodies and allergen. CONCLUSIONS: These results indicate that increased airway responsiveness is associated with different immunological phenotypes in BALB/c and C57BL/6 mice.

Airway Resistance↗

Effects of adjuvants on the immune response to allergens in a murine model of allergen inhalation: cholera toxin induces a Th1-like response to Bet v 1, the major birch pollen allergen.

Based on the fact that type I allergies are frequently elicited by inhalant allergens, we have established a model of aerosol inhalation leading to allergic sensitization in BALB/c mice. Using this model we studied the effects of aluminium hydroxide (Al(OH)3), known to enhance IgE antibody responses, compared with cholera toxin (CT), a potent mucosal adjuvant, on the immune response to birch pollen (BP) and its major allergen Bet v 1. Two groups of BALB/c mice were either systemically immunized with recombinant Bet v 1 in Al(OH)3 and subsequently aerosol exposed to BP allergen, or aerosolized with BP and CT. IgE-mediated skin reactions were only elicited in the mice which had received Bet v 1/Al(OH)3. Allergen-specific serum IgE and IgG1 antibodies dominated in the Al(OH)3 group, IgG2a antibody levels to BP and rBet v 1 were markedly higher in the sera of mice exposed to CT with the allergen. IgA antibodies were only detected in the bronchial lavage of the CT-treated group. Moreover, the latter group displayed consistently higher T cell proliferative responses to BP and interferon-gamma production in vitro. Thus, the systemic immunization with rBet v 1 in Al(OH)3 before inhalation of the BP extract promoted a Th2-like immune response, while CT mixed with the aerosolized BP extract rather induced a Th1-like immune response. In an attempt to reverse these ongoing immune responses we could achieve a shift towards a Th0 response. Immunization with BP extract without adjuvant treatment led to undetectable antibody or cellular immune responses. We conclude from the present study that the induction of an immune response to BP allergen after aerosol inhalation can be directed towards a Th1- or a Th2-like response. Once established, the immune response can be modulated.

Adjuvants, Immunologic↗

BDNF overexpression induces differential increases among subsets of sympathetic innervation in murine back skin.

Besides their recognized dependence on nerve growth factor (NGF) during development, the dependence of mature sympathetic ganglion neurons on other neurotrophins is still unclear. Here, we have investigated the sympathetic innervation of back skin in mice overexpressing brain-derived neurotrophic factor (BDNF) under the alpha-myosin heavy-chain promoter, as well as in BDNF knockout (-/-) mice. Compared with wild-type controls, the dorsal skin of BDNF overexpressing mice displayed a significantly enhanced number of adrenergic, tyrosine hydroxylase-immunoreactive (IR) nerve fibres, while cholinergic or peptidergic sensory nerve fibres appeared unaltered. The adrenergic hyperinnervation in dorsal skin of BDNF overexpressing mice was most pronounced in the arrector pili muscle of hair follicles, while no increase of tyrosine hydroxylase-or neuropeptide Y-IR fibres associated with subcutaneous blood vessels was found. Instead, back skin of BDNF knockout (-/-) mice contained significantly fewer tyrosine hydroxylase-IR dermal nerve fibres than wild-type animals. This suggests that BDNF plays an important role in the control of different subsets of adrenergic innervation in murine back skin, and indicates that paravertebral sympathetic ganglia display a previously unrecognized differential BDNF-dependence in vivo.

Adrenergic Fibers↗

A human-SCID mouse model for allergic immune response bacterial superantigen enhances skin inflammation and suppresses IgE production.

Chronic skin colonization with Staphylococcus aureus is a well-known feature in atopic dermatitis. The aim of this study was to develop a human-SCID mouse model to analyze the possible role of bacterial superantigens in human allergic immune responses under in vivo conditions. SCID mice were reconstituted with peripheral blood mononuclear cells (between 2 and 9 x 10(7) cells per mouse) from atopic dermatitis patients sensitized to house dust mite allergen (Der p). Total and Der p specific antibody production required the following conditions: (i) injection of Der p; (ii) presence of CD14+ antigen-presenting cells; and (iii) IL-4 as shown by the inhibitory effect of human soluble IL-4 receptor on immunoglobulin E production. This model was used to study the immunomodulatory effects of the superantigen staphylococcal enterotoxin B in comparison with Der p. In intraperitoneally reconstituted human-SCID mice, topical treatment was ineffective in inducing skin inflammation. Therefore, additionally to intraperitoneal transfer, peripheral blood mononuclear cells from atopic donors were also injected intradermally. Such reconstituted SCID mice were then exposed via the skin to either Der p, staphylococcal enterotoxin B, or a combination of both. Maximal effects on epidermal inflammation and dermal T cell infiltration were obtained with staphylococcal enterotoxin B and Der p. Staphylococcal enterotoxin B alone was less effective and Der p only stimulated dermal T cell infiltration. These findings support the hypothesis that bacterial superantigens can act as trigger factors in allergic skin inflammation.

Administration, Topical↗

A case of Crohn's disease with increased CD8 T-cell activation and remission during therapy with intravenous immunoglobulins.

BACKGROUND: Crohn's disease (CD) represents a chronic inflammatory bowel disease with abnormal CD8 T-cell function in a subgroup of patients. METHODS: A 55-year-old woman presented with CD on the basis of clinical, endoscopic, radiologic, histologic, and sonographic examination. Since the disease could not be controlled with conventional anti-inflammatory therapy, a detailed analysis of cellular and humoral immune functions was performed and showed a dysbalanced T-cell activation pattern with an inverse CD4/CD8 ratio due to an increased number of CD8 T cells. Additionally, high IgM and low IgG2 antibody levels were detected. Treatment with intravenous immunoglobulin (IVIG) was started as immunomodulatory therapy. During this therapy the condition improved markedly. CD8 T-cell levels returned to normal, and IgM decreased as well. CONCLUSION: This case shows that selected cases of CD may be associated with abnormal functions and that such patients may benefit from IVIG treatment.

CD4-CD8 Ratio↗

Zinc deficiency in rapidly growing preterm infants.

Symptomatic zinc deficiency was observed in a 24-week gestation, 640 g birthweight infant fed exclusively with maternal breast milk. Our hypothesis was that subclinical Zn deficiency is not uncommon in very low birthweight infants because fortified human milk and preterm formula may contain little Zn. Zinc serum concentrations determined in 26 consecutive very low birthweight infants (gestational age 23-32, median 27 weeks), prior to discharge, at a chronological age of 37-121 (median 72) d, were found between 1.0 and 14.0 (median 6.4) micromol/l, in 14 infants they were below the normal range of 7.6-15.0 micromol/l. Serum alkaline phosphatase and iron intake did not correlate with Zn concentrations. Nutritional supply of Zn and other trace elements by breast milk fortifiers and infant formulas currently used in Germany does not appear to meet the demands of rapidly growing extremely low birthweight infants during the first months of life.

Adult↗

Role of T cells in atopic dermatitis. New aspects on the dynamics of cytokine production and the contribution of bacterial superantigens.

Atopic dermatitis (AD) is a chronically relapsing inflammatory skin disease. Influx of activated T cells into the skin lesions represents a hallmark in AD. Recent results indicate a dynamic T-cell-derived cytokine production in AD. In addition to the well-known TH-2 component, chronic lesions and late-phase allergic responses are characterized by an TH-1/TH-0 cytokine pattern. Although there is no doubt that aeroallergens can contribute to the elicitation of acute- and late-phase allergic responses in AD, their role in the immunopathogenesis is controversally discussed. Recent attention has been given to the long-known phenomenon of persistent colonization of AD skin with S. aureus and the potential role of S. aureus-derived superantigens. Evidence from several in vitro and in vivo studies suggests that such bacterial superantigens have the potency to trigger chronic T-cell-mediated skin inflammation. Although these data are certainly suggestive, further clinical studies are required to elucidate the role of bacterial superantigens in initiation, maintenance and, especially, chronicity of skin inflammation.

Cell Wall↗

Changes in blood leukocyte distribution during double-blind, placebo-controlled food challenges in children with atopic dermatitis and suspected food allergy.

BACKGROUND: The development of clinical reactions to food antigens is associated with cellular changes. The aim of this study was to determine whether the clinical outcome of double-blind, placebo-controlled food challenges would correlate with changes in blood leukocyte distribution. METHODS: Double-blind, placebo-controlled food challenges were performed in 17 children with atopic dermatitis sensitized to hen's egg or cow's milk and in 9 children with atopic dermatitis but not sensitized to food. Blood leukocyte distribution and lymphocyte subsets were determined prior to and 24 h after challenges. RESULTS: In food-sensitized children the numbers of leukocytes and lymphocytes decreased significantly after allergen challenge independent of the clinical outcome of the provocation (p < 0.002 in both cases). This decrease was seen in T (CD3+) and B (CD19+) cell subsets (p<0.007 and p<0.0005, respectively). The CD4/CD8 ratio increased (p<0.04). The number of memory cells (CD45R0) dropped (p<0.02 for CD4 and p<0.004 for CD8) and there was a loss of L-selectin (p<0.003 for CD4 and CD8). No changes in thrombocytes, neutrophils, eosinophils and basophils were observed. None of these changes were seen in the sensitized patients during placebo challenges or in the non-sensitized group of children. CONCLUSION: Changes in the leukocyte distribution after allergen challenge seem to be associated with sensitization, but not with the clinical outcome of the oral food challenge. They reflect important changes in the immune system in response to allergens, but are not useful in monitoring double-blind, placebo-controlled food challenges.

Administration, Oral↗

Quantitative assessment of immediate cutaneous hypersensitivity in a model of genetic predisposition to atopy.

Genetic predisposition and environmental factors modulate the expression of allergic phenotypes. The frequent allergic phenotype 'immediate cutaneous hypersensitivity' was established in mice as a model for atopy. Genetic dissection of this trait requires a robust procedure to assess the allergic phenotype. To this end, different mouse strains were immunized with birch pollen extract. Immediate cutaneous hypersensitivity reactions were induced through intradermal allergen exposure. Wheel formation was quantitated and expressed as a hypersensitivity score according to the bonitur method. This procedure identified A/J and C57BL/6 mice as high- and low-responder strains, respectively. Crosses of A/J and C57BL/6 mice should allow the characterization of mendelian factors responsible for the two extreme phenotypes identified here.

Allergens↗

Neurotrophins are increased in bronchoalveolar lavage fluid after segmental allergen provocation.

The mechanisms linking inflammation and airway hyperresponsiveness in allergic bronchial asthma are still not completely defined. Since neurotrophic factors increase nerve excitability and neurotransmitter synthesis and are produced by immunocompetent cells, they are likely candidates as mediators of inflammation and hyperresponsiveness. We tested the hypothesis that neurotrophin concentrations will increase in the bronchoalveolar lavage (BAL) fluid from patients with asthma after segmental allergen provocation. For this purpose an individually standardized dose of allergen or saline was instilled into different segments during bronchoscopy in eight subjects with mild allergic bronchial asthma. Segments were then lavaged 10 min and 18 h after allergen challenge or saline instillation. There was a significant increase in the neurotrophins nerve growth factor, brain-derived neurotrophic factor, and neurotrophin-3 in BAL fluids 18 h after allergen but not saline challenge. We conclude that neurotrophins are produced endobronchially following allergen provocation, suggesting a contribution to the pathogenesis of asthma.

Adult↗

Dichotomy of blood- and skin-derived IL-4-producing allergen-specific T cells and restricted V beta repertoire in nickel-mediated contact dermatitis.

In this study we compared the phenotype and cytokine patterns of nickel-specific T cell clones (TCC) derived from blood samples and positive patch test reactions. A total of 252 nickel-specific TCC were established from three nonatopic patients with allergic contact dermatitis caused by nickel. All TCC expressed the TCR-alpha beta, and 77% were CD4+ compared with 21% CD8+ TCC. In contrast to blood-derived TCC, the majority of skin-derived CD4+ or CD8+ T lymphocytes produced IL-4 either in combination with IFN-gamma (type 0 cytokine pattern) or IL-4 exclusively (type 2 pattern). Skin-derived nickel-specific TCC of each patient secreted significantly more IL-4 than blood-derived TCC of the same individual. Analysis of TCR-V beta repertoire from two patients indicated that >40% of the tested TCC expressed one of the following V beta elements: V beta 13.1/13.2, V beta 20, V beta 2, V beta 6.7, or V beta 14. Only 20% of unstimulated T cells but >40% of nickel-stimulated T cells derived from peripheral blood of the same individuals expressed these V beta elements, suggesting a selection of certain TCR-V beta elements by nickel sulfate in these patients. In contrast to the compartmentalization of IL-4 production, there were no major differences in the expression of TCR-V beta elements between blood- and skin-derived nickel-specific TCC. These results point to a modulation of the cytokine production pattern of T lymphocytes after their migration from peripheral blood into the skin and a production of the type 2 cytokine IL-4 in acute eczematous lesions in nonatopic individuals.

Allergens↗

P- and E-selectin mediate recruitment of T-helper-1 but not T-helper-2 cells into inflammed tissues.

When activated, T helper cells differentiate into one of two subsets, Th1 and Th2, characterized by distinct profiles of cytokine production. Th1 cells activate pro-inflammatory effector mechanisms involved in protection and autoimmunity, whereas Th2 cells induce humoral and allergic responses and downregulate local inflammation. Apart from differences in the repertoire of cytokines, no phenotypic attributes are established that distinguish the two subsets. Here we show that Th1 cells, but not Th2 cells, are able to bind to P-selectin and E-selectin. Moreover, only Th1 cells can efficiently enter inflamed sites in Th1-dominated models, such as sensitized skin or arthritic joints, but not in a Th2-dominated allergic response. Immigration of Th1 cells into inflamed skin can be blocked by antibodies against P- and E-selectin. These results provide evidence for adhesion mechanisms to distinguish between the two T helper subsets and mediate their differential trafficking. They indicate that selective recruitment is an additional level of regulation for both effector function profile and character of a local immune response.

Animals↗

Severe allergic reactions to foods are predicted by increases of CD4+CD45RO+ T cells and loss of L-selectin expression.

OBJECTIVE: The aim of the study was to determine whether the clinical outcome of double-blind, placebo-controlled food challenges of patients with atopic dermatitis would be associated with changes in lymphocyte functions. METHODS: Peripheral blood mononuclear cells were prepared from 19 children with atopic dermatitis and stimulated in vitro with the suspected allergen (cow's milk, hen's egg), tetanus toxoid, and pokeweed mitogen. After 14 days in culture, quantitative and qualitative distribution of cell surface marker expression was assessed by flow cytometry, and results were compared with the clinical outcome of a subsequent oral food challenge. RESULTS: After stimulation with the allergen, a significant increase of CD4+CD45RO+ T cells (p < 0.05) was detected selectively for patients showing severe clinical reactions. This increase was not detected for patients with mild or no reactions or in six nonatopic control subjects. Increased expression of CD45RO was paralleled by a significant decrease in L-selection expression (p < 0.05) for the same patient group. CONCLUSION: The combined assessment of CD4+CD45RO+ and CD4+L-selectin+ expression on T cells was more sensitive for the prediction of the clinical outcome of the food challenge (p < 0.01) than measurement of cytokines or immunoglobulins in cell culture supernatants. These data indicate that a shift in lymphocyte functions may predict the development of severe allergic reactions in food-sensitized children with atopic dermatitis.

Acute Disease↗

Verrucosis of hands and feet in a patient with combined immune deficiency.

In immunocompromised patients, warts occur frequently and can be extensive. We describe a 24-year-old patient with severe therapy-resistant warts. In addition to human papillomavirus infection, he had chronic sinusitis, candidiasis, and atopic dermatitis. Anergy to delayed-type hypersensitivity skin test reaction, significant CD4 lymphopenia, and diminished in vitro T-cell proliferative response and interferon-gamma production indicated a deficiency of cellular immunity. Extremely low concentrations of serum IgM and IgG2 and a severe deficiency of in vitro IgM production pointed also to a humoral immunodeficiency syndrome. This case represents a combination of cellular and humoral immunodeficiencies that has not been previously described in association with warts.

Adult↗

Bronchiolitis obliterans organizing pneumonia and chronic graft-versus-host disease in a child after allogeneic bone marrow transplantation.

We report an 8-year-old boy who developed cough and respiratory failure 7 months after bone marrow transplantation (BMT) coinciding with the onset of chronic graft-versus-host disease (GVHD). Lung function data, imaging studies, lung biopsy and bronchoalveolar lavage were consistent with the diagnosis of bronchiolitis obliterans organizing pneumonia. While this has been reported in association with chronic graft-versus-host disease in one adult case previously, we report the simultaneous occurrence of BOOP and chronic GVHD in a child after bone marrow transplantation for the first time.

Adult↗

A subset of CD8+ T cells from allergic patients produce IL-4 and stimulate IgE production in vitro.

BACKGROUND AND OBJECTIVE: A subset of IL-4 producing CD8+ T cells was recently identified in HIV patients. Based on these findings we examined whether IL-4 producing CD8+ T cells would also be present in allergic patients and what would be the functional relevance of this T-cell population. METHODS: We investigated the role of CD8+ T cells in IgE production of allergic diseases by analysing the cytokine profile of individual CD4+ and CD8+ T cells. RESULTS: In allergic patients about twice as many CD4+ T cells and six times as many CD8+ T cells produced IL-4 as in non-allergic controls. In contrast the frequency of IFNgamma+ T-cell subsets did not significantly differ between the allergic and non-allergic individuals. The frequency of IL4+ CD8+ T cells correlated with the level of serum IgE. Coculture experiments with T cells or purified CD8+ T cells together with autologous B cells indicated that CD8+ T cells enhanced IgE in vitro, but not IgM production, even when they were physically separated from B cells. This effect could be partially blocked by addition of an IL-4 binding protein, a soluble IL-4 receptor indicating that IL-4 is involved in CD8+ T-cell mediated IgE production. CONCLUSIONS: These data indicate a positive role of IL-4 secreting CD8+ T cells in IgE regulation in allergic patients.

Adult↗