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Biomedical subjects

H Renz

Publications and source records attributed to H Renz.

At least 55 records · Page 3Linked to original sources

Tidal midexpiratory flow as a measure of airway hyperresponsiveness in allergic mice.

A method for the noninvasive measurement of airway responsiveness was validated in allergic BALB/c mice. With head-out body plethysmography and the decrease in tidal midexpiratory flow (EF(50)) as an indicator of airway obstruction, responses to inhaled methacholine (MCh) and the allergen ovalbumin were measured in conscious mice. Allergen-sensitized and -challenged mice developed airway hyperresponsiveness as measured by EF(50) to aerosolized MCh compared with that in control animals. This response was associated with increased allergen-specific IgE and IgG1 production, increased levels of interleukin-4 and interleukin-5 in bronchoalveolar lavage fluid and eosinophilic lung inflammation. Ovalbumin aerosol challenge elicited no acute bronchoconstriction but resulted in a significant decline in EF(50) baseline values 24 h after challenge in allergic mice. The decline in EF(50) to MCh challenge correlated closely with simultaneous decreases in pulmonary conductance and dynamic compliance. The decrease in EF(50) was partly inhibited by pretreatment with the inhaled beta(2)-agonist salbutamol. We conclude that measurement of EF(50) to inhaled bronchoconstrictors by head-out body plethysmography is a valid measure of airway hyperresponsiveness in mice.

Administration, Inhalation↗

Intranasal treatment with a recombinant hypoallergenic derivative of the major birch pollen allergen Bet v 1 prevents allergic sensitization and airway inflammation in mice.

BACKGROUND: The major birch pollen allergen Bet v 1 represents one of the most prevalent environmental allergens responsible for allergic airway inflammation. OBJECTIVE: In the present study we sought to compare the complete recombinant Bet v 1 allergen molecule with genetically produced hypoallergenic fragments of Bet v 1 regarding mucosal tolerance induction in a mouse model of allergic asthma. METHODS: BALB/c mice were intranasally treated with recombinant Bet v 1 or with two recombinant Bet v 1 fragments (F I: aa 1-74; F II: aa 75-160) prior to aerosol sensitization with birch pollen and Bet v 1. RESULTS: Intranasal application of F II, containing the major T cell epitope, led to significant reduction of IgE/IgG1 antibody responses, in vitro cytokine production (IL-5, IFN-gamma, IL-10) and negative immediate cutaneous hypersensitivity reactions comparable to the pretreatment with the complete rBet v 1 allergen. Moreover, airway inflammation (eosinophilia, IL-5) was inhibited by the pretreatment with either the complete Bet v 1 or F II. However, for prevention of airway hyperresponsiveness the complete molecule was required. The mechanisms leading to immunosuppression seemed to differ in their dependence on the conformation of the molecules, since tolerance induced with the complete Bet v 1, but not with F II, was transferable with spleen cells and associated with increased TGF-beta mRNA levels. CONCLUSION: We conclude that mucosal tolerance induction with recombinant allergens and genetically engineered hypoallergenic derivatives thereof could provide a convenient and safe intervention strategy against type I allergy.

Administration, Intranasal↗

Sensitizing capacity and residual allergenicity of hydrolyzed cow's milk formulae: results from a murine model.

BACKGROUND: Cow's milk allergy is the most common cause of clinically relevant adverse reactions to food in infants and children. Partially and extensively hydrolyzed formulae are used for the therapy and prevention of cow's milk allergy. However, the immunogenic potency of hydrolyzed cow's milk formulae to induce and/or enhance the allergic phenotype in vivo is still under debate. The aim of this study was to assess the sensitizing capacity and residual allergenicity of various partially and extensively hydrolyzed cow's milk formulae in a murine model of cow's milk allergy. METHODS: BALB/c mice were immunized with either a cow's milk formula or various partially and extensively hydrolyzed formulae. Immediate cutaneous hypersensitivity reactions and allergen-specific antibody production were assessed. RESULTS: Although immunization with cow's milk resulted in 12/13 cases in a positive skin test response to intradermal injection of cow's milk formulae, only 1 mouse showed a positive skin test to one of the partially hydrolyzed formulae, and none showed positive reactions to other partially hydrolyzed formulae, any of the extensively hydrolyzed formulae, phosphate-buffered saline or the amino acid formula. However, 6 of 8 mice showed positive skin tests when immunized with partially hydrolyzed formulae and with one of the extensively hydrolyzed formulae. CONCLUSIONS: The residual allergenic potential is markedly reduced in many hydrolyzed formulae, but most of the formulae investigated could induce an allergic immune response in BALB/c mice. Our murine model seems to be suitable to investigate the sensitizing capacity of hydrolyzed formulae and to differentiate even between extensively hydrolyzed formulae.

Animals↗

Effect of low-dose cyclosporin a microemulsion on disease severity, interleukin-6, interleukin-8 and tumor necrosis factor alpha production in severe pediatric atopic dermatitis.

BACKGROUND: The release of cytokines [interleukin-6 (IL-6), IL-8 and tumor necrosis factor-alpha (TNF-alpha)] by skin cells is involved in the pathogenesis of atopic dermatitis (AD). OBJECTIVE: To evaluate the effect of low-dose cyclosporin A (CyA) on clinical symptoms and cytokine secretion in severe pediatric AD. METHODS: Ten children with severe AD (SCORAD index >50) were treated for 8 weeks with CyA. The initial dose of 2.5 mg/kg/day was titrated to a maximum of 5 mg/kg/day until a SCORAD reduction of >or =35% was achieved ("treatment response"). After stopping CyA all patients entered a 4-week follow-up period. Cytokine secretion (IL-6, IL-8 and TNF-alpha) from patients' PBMC was assessed by ELISA before and after CyA treatment and was compared with 18 healthy nonatopic controls. Only the data of patients, who responded to CyA and did not experience a relapse during the follow-up period, were evaluated for this paper. RESULTS: Seven patients responded to CyA without relapse during the follow-up period. The median SCORAD index in these patients improved from 71 at baseline to 22 after CyA treatment (p < 0.001). AD patients' PBMC produced more IL-6, IL-8 and TNF-alpha than PBMC of controls. Suppression of IL-6 (p < 0.05) and IL-8 (p < 0.05) production was observed after CyA treatment. TNF-alpha levels were unchanged by CyA in all patients. CONCLUSIONS: The reduction in severity of pediatric AD with CyA is associated with decreased production of IL-6 and IL-8, but not TNF-alpha by PBMC.

Adolescent↗

Differential regulation of neurotrophin expression by mitogens and neurotransmitters in mouse lymphocytes.

In this study, we examined the expression of neurotrophins in mouse lymphocytes and the regulation of their expression by mitogens and neurotransmitters. We found that mixed splenocytes as well as T and B lymphocytes expressed mRNA for all the neurotrophins examined. Differential regulation of the neurotrophins was obtained upon stimulation of the cells. Thus, LPS increased the expression of NGF, BDNF and NT-3 in splenocytes and B cells, whereas Con-A increased the mRNA of NT-3 and NT-4 in T cells and NGF expression in splenocytes. The neurotransmitter substance P and the beta-adrenergic agonist, isoproterenol induced an increase in the expression of NGF. Our results suggest an important role for the different neurotrophins in the function of the immune system and point to a bi-directional interaction between neurotrophins and neurotransmitters in this system.

Animals↗

Impact of in utero Th2 immunity on T cell deviation and subsequent immediate-type hypersensitivity in the neonate.

It was the aim of this study to analyze the impact of maternal Th2 immune responses on onset and subsequent development of allergen-specific immunity and immediate-type hypersensitivity in early childhood. In a well characterized mouse model of Th2 immunity, BALB / c mice were sensitized to ovalbumin (OVA) before mating followed by allergen aerosol exposure during pregnancy. At the end of pregnancy mice developed allergen-specific Th2 / Th0 immunity and immediate-type hypersensitivity responses to OVA. T cells from these newborns, when restimulated with PMA / ionomycin, demonstrated a lowered capacity to produce IFN-gamma. To assess whether prenatal allergen exposure favors postnatal onset of a Th2-type immune response, these offspring were immunized to a novel antigen by a single injection of beta-lactoglobulin (BLG). In contrast to offspring from non-sensitized mothers, offspring from OVA-sensitized mice showed both higher anti-BLG immunoglobulin titers and higher frequencies of immediate-type skin test responses. Our data suggest that Th2 / Th0 immunity present during pregnancy has a decisive impact on shaping of the Th1 / Th2 T cell profile in the neonate. Furthermore, this effect favors the development of Th2 immune responses, when mice are exposed to a novel antigen during early childhood.

Animals↗

Genetics of atopy in a mouse model: polymorphism of the IL-5 receptor alpha chain.

To study the genetics of atopy systematically we established a mouse model that provides the general phenotype of atopy: the early response characteristic of IgE-dependent eczema or atopic dermatitis, and the diagnostic test of atopy, the skin-prick test. Using an immediate cutaneous hypersensitivity test (ICHS) against birch pollen extract we could classify A/J and C57BL/6 (B6) inbred mouse strains respectively as high responder and low responders. The F1 hybrids were found to be high responders with incomplete penetrance. Backcrossing F1 mice to the low responder B6 strain yielded three classes of responders, high, intermediate, and low. A genome-wide microsatellite screen of the backcross progeny disclosed suggestive linkage to a microsatellite marker on chromosome 6 close to the locus of the IL-5 receptor alpha chain. Its allelic variation in A/J and B6 strains was investigated and two major differences were detected. Firstly, a nucleotide exchange in the 5' untranslated region of B6 mRNA resulted in increased transcription/translation of a reporter construct. Higher expression of the receptor on the cell surface would be expected to favor an allergic immune response. Secondly, the two alleles are differentially spliced so as to yield two soluble isoforms in A/J mice versus one in B6 mice. Higher expression of soluble IL-5R would be expected to reduce the level of allergy through capture of IL-5. Thus both findings conform to the expectation based on susceptibility to atopy and thus identify the IL-5R alpha chain as a likely contributor to the genetics of atopy.

Alternative Splicing↗

The influence of infections on the development and severity of allergic disorders.

The frequency and severity of atopic disorders are steadily increasing, particularly in developing countries. The reason for this observation is not clear. Recent studies indicate that infections with viruses and especially with bacteria early in life may help to inhibit allergic Th2 responses by skewing the immune system towards Th1 responses. However, infections can also lead to the exacerbation of atopic disorders.

Animals↗

Deficient cytokine response of human allergen-specific T lymphocytes from humanized SCID mice and reconstitution by professional antigen-presenting cells.

BACKGROUND: Hu-PBL-SCID mice generated by the transfer of PBMCs from atopic individuals may provide a physiologic in vivo model for investigating human responses to allergens and potential approaches toward immunotherapy. OBJECTIVE: This study was undertaken to investigate the functional activity and cytokine profile of human allergen-reactive T lymphocytes isolated from hu-PBL-SCID mice. METHODS: PBMCs from allergic individuals were coinjected with allergen into SCID mice. Human lymphocyte migration and phenotype were established by reverse transcription-PCR and immunohistochemistry, IgE levels in sera were determined, and the frequency of allergen-reactive cytokine-producing T lymphocytes was established. RESULTS: After immunization with allergen, specific IgE levels in hu-PBL-SCID sera were comparable with levels in donor sera. Although the majority of lymphocytes remained in the peritoneum, significant numbers of T lymphocytes were located in the spleen, where human IL-4, IL-5, and IFN-gamma messenger RNA expression was detected after stimulation with PHA and phorbol myristate acetate. Failure to induce cytokine production by human T lymphocytes isolated from the peritoneum and spleen of hu-PBL-SCID mice by allergen was reversed by stimulating with allergen in the presence of exogenously added IL-2 and antigen-presenting cells (APC), particularly CD14(+) monocytes. Under these conditions, allergen-reactive T cells expressed a T(H)2-like phenotype. CONCLUSIONS: These data suggest that, after initial activation and induction of antibody production, human T lymphocytes enter a state of unresponsiveness, arising from a loss of human professional APC, in hu-PBL-SCID mice. The use of hu-PBL-SCID mouse models in studies on therapeutic approaches for allergy may benefit from the additional transfer of human professional APC.

Allergens↗

Evidence for a disease-promoting effect of Staphylococcus aureus-derived exotoxins in atopic dermatitis.

BACKGROUND: The skin of patients with atopic dermatitis (AD) exhibits a striking susceptibility to colonization with Staphylococcus aureus. Some strains of S aureus secrete exotoxins with T-cell superantigen activity (toxigenic strains), and abnormal T-cell functions are known to play a critical role in AD. OBJECTIVE: Our purpose was to examine the impact of superantigen production by skin-colonizing S aureus on disease severity. METHODS: In a cross-sectional study of 74 children with AD, the presence and density of toxigenic and nontoxigenic strains of S aureus was correlated with disease severity. In a subgroup of patients the T-cell receptor Vbeta repertoire of peripheral blood and lesional T cells was investigated and correlated with individual superantigen activity of skin-colonizing S aureus. RESULTS: Fifty-three percent of children with AD were colonized with toxigenic strains of S aureus producing staphylococcal enterotoxin C, staphylococcal enterotoxin A, toxic shock syndrome toxin-1, staphylococcal enterotoxin B, and staphylococcal enterotoxin D in decreasing frequency. Children colonized with toxigenic S aureus strains had higher disease severity compared with the nontoxigenic and S aureus-negative groups. Patients colonized with toxigenic S aureus exhibited shifts in the intradermal T-cell receptor Vbeta repertoire that correspond to the respective superantigen-responsive T-cell subsets. CONCLUSION: The data demonstrate that S aureus-released exotoxins can modulate disease severity and dermal T-cell infiltration.

Adolescent↗

Sequential development of airway hyperresponsiveness and acute airway obstruction in a mouse model of allergic inflammation.

BACKGROUND: Mouse models have been established mirroring key features of human bronchial asthma including airway hyperresponsiveness (AHR). Acute airway obstruction in response to an allergen challenge, however, remains to be demonstrated in these models. OBJECTIVE: A mouse model of allergic lung inflammation was employed to analyze the development of specific (allergen-induced) and nonspecific (methacholine-induced) airway obstruction. METHODS: Mice were sensitized to ovalbumin (OVA) and challenged with OVA aerosol twice each week during four weeks. Changes in lung functions were determined by noninvasive head-out body plethysmography. The development of acute airway obstruction after OVA challenge and AHR after methacholine aerosol application were assessed by a decrease in the mid-expiratory flow rate (EF(50)). RESULTS: Two airway challenges were sufficient to induce AHR (5.7 vs. 15 mg/ml methacholine). Further OVA challenges reduced the baseline EF(50) from 1.85 to 1.20 ml/s (4th week) and induced acute airway obstruction. The OVA-induced obstruction was maximal in the 4th week (EF(50) = 0.91 ml/s). CONCLUSION: The development of acute airway obstruction in allergen-sensitized mice was demonstrated by means of head-out body plethysmography. In our model, AHR was observed before the development of airway obstruction.

Airway Obstruction↗

Superantigen-induced T cell death by apoptosis: analysis on a single cell level and effect of IFN-gamma and IL-4 treatment.

BACKGROUND: A role of bacterial superantigens in several chronic inflammatory diseases has previously been proposed. Many of these diseases are associated with an imbalance of the T helper cell subsets and their cytokine production. METHODS: Peripheral blood mononuclear cells from healthy donors were incubated with various concentrations of staphylococcal enterotoxin B (SEB) with or without IL-4 or IFN-gamma. After different time points cell activation, proliferation, Fas expression, cytokine release and cell death via apoptosis were detected. RESULTS: SEB treatment resulted in sequential T cell activation, proliferation, Fas expression, cytokine release, subsequently followed by cell death via apoptosis in a dose- and time-dependent manner. This biphasic effect occurred preferentially in SEB-responsive cells represented by the expression of Vbeta3 and Vbeta12 on T cells. A strong relationship between T cell activation and apoptosis was observed. The amplitude between these events increased with the dose of SEB. The highest rate of apoptotic T cells was observed at a dose of 1,000 ng/ml SEB. Addition of IFN-gamma to SEB-treated cells significantly reduced the rate of apoptotic cells, whereas IL-4 prevented apoptosis only in SEB-untreated cells. CONCLUSION: These results support the concept that the dose of superantigen exposure determines the rate of T cell proliferation and subsequent cell death. This T cell immune response is modulated by the presence and the type of cytokines.

Adult↗

Priming of allergic immune responses by repeated ozone exposure in mice.

The effects of repeated ozone exposures on the development of immune responses toward ovalbumin (OVA) were investigated in BALB/c and C57BL/6 mice. Ozone exposures (180 to 500 microg/m(3); 4 h, three times/wk for 4 wk) were combined with a protocol of OVA-aerosol exposure (1% OVA). Immediate cutaneous hypersensitivity (ICHS) reactions and antibody titers were assessed in parallel to cytokine levels of bronchoalveolar lavage fluids. In BALB/c mice, ozone triggered a T-helper (Th)2-like response indicated by dose-dependent increases in total serum immunoglobulin (Ig) E (from 133 to 821 ng/ml), interleukin (IL)-4 (from 60 to 208 pg/ml), and IL-5 levels (from 43 to 356 pg/ml), and by the recruitment of eosinophils and lymphocytes into the airways. Ozone exposure (500 microg/m(3)) in parallel to OVA-aerosol exposure increased anti-OVA IgG(1) antibody titers by 80%, leukotrienes (C(4)/D(4)/E(4)) by 60%, and airway responsiveness (11.3 versus 7.2 mg/ml methacholine), and doubled the frequency of positive ICHS reactions. In C57BL/6 mice, only the combination of OVA and ozone exposure induced positive ICHS reactions, doubled anti-OVA IgG(1), and suppressed anti-OVA IgG(2a) (-64%) antibody titers. Ozone, therefore, shifted the immune responses to OVA toward a Th2-like pattern in both "IgE-high responder" (BALB/c) and "IgE-low responder" (C57BL/6) mice.

Administration, Inhalation↗

Differential modulation of human immunoglobulin isotype production by the neuropeptides substance P, NKA and NKB.

The modifying effects of tachykinins substance P, neurokinin A and neurokinin B on immunoglobulin production were analyzed in an in vitro culture system. Purified human T- and B-cells were stimulated with TGFbeta2 and IL-5 to induce preferential IgA production. Neuropeptides had the following effects. (1) The levels of IgA and IgG4 production were enhanced by IL-5 and TGFbeta2; IgA levels remained constant or were slightly augmented by neuropeptides, whereas IgG4 was further augmented. (2) IL-5 and TGFbeta2 did not alter IgG3 production, but neuropeptides stimulated secretion of this subclass. (3) IgG1 and IgM production were inhibited by IL-5 and TGFbeta2. This effect was prevented by neuropeptides. (4) Other isotypes including IgG2 and IgE remained unaffected. Except for IgM, these effects were blocked by specific receptor antagonists indicating specificity. The tachykinin receptor NK-1 mRNA was detected in B- and T-cells, whereas NK-3 mRNA was only present in T- and B-cell coculture following activation. Furthermore, neuropeptide effects depended on cytokine co-stimulation and the presence of T-cells. These results suggest that neuropeptides are potent modifiers of preferential IgA synthesis.

B-Lymphocytes↗