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[Induction of IgE-Fc receptor (Fc epsilon RII/CD23) expression on stimulated monocytes by mite allergen in patients with asthma].

The low affinity IgE-Fc receptors (Fc epsilon RII/CD23) show an important role in atopic disorders such as bronchial asthma. Since monocytes/macrophages could be contributed to allergic inflammation through IgE stimulation, I examined Fc epsilon RII/CD23 expression on peripheral blood monocytes in patients with bronchial asthma. The expression of Fc epsilon RII/CD23 on monocytes was higher in asthmatic patients than in normal control subjects. Furthermore when peripheral blood monocytes in patients with mite-allergic asthma (RAST score > or = 3) were additionally stimulated by mite allergen, the expression of Fc epsilon RII/CD23 increased and remained after culture with mite allergen. In order to investigate the mechanisms of the induction of Fc epsilon RII/CD23, I examined the effects of the supernatants on Fc epsilon RII/CD23 expression on monocytes, using the monocytic cell line U937. Our findings were that the supernatants of mononuclear cells from mite allergic patients cultured with mite-allergen, as well as IL-4, induced Fc epsilon RII/CD23 expression on U937 cells, while anti IL-4 antibody almost but not completely inhibited the induction of Fc epsilon RII/CD23 expression on U937 cells by the supernatants, suggesting a possibility that Fc epsilon RII/CD23 expression on monocytes might be mainly regulated by IL-4 in combination with various cytokines.

Adult↗

[Molecular biological analysis of house dust mite allergens].

Using a host-vector system of Escherichia coli, we could produce one of major house dust mite allergens, Der f II in large quantity for therapeutic and diagnostic purposes. About 5 mg of purified and biologically active rDer f II was obtained from one liter culture, which was corresponding to the amount in about 30 g of live mite. The rDer f II was almost identical with native Der f II with respects to biological and physicochemical view points. Native mite Der f II is a mixture of several kinds of Der f II molecule with a few amino acid substitutions, which were due to polymorphisms among individual mite gene sequence. We had cloned three kinds of Der f II cDNAs from mite culture and expressed in E. coli and prepared three kinds of rDer f II in this system. As a result of comparison of IgE binding activity among three rDer f IIs and nDer f II, there was no significant difference observed.

Allergens↗

New mattresses: how fast do they become a significant source of exposure to house dust mite allergens?

BACKGROUND: Sensitization and exposure to mite allergens is a major risk factor for asthma. Little is known about the rate of build-up of allergens in the mite micro-habitats. OBJECTIVES: To investigate the rate of increase in mite allergen levels in new mattresses. METHODS: Der p 1 was measured in the dust samples collected from six identical new single mattresses over a period of 2 years. RESULTS: Der p 1 increased significantly at 4 months as compared with baseline level (P < 0.01), but no difference was found between the concentrations at 4, 8, 12 and 24 months. There was a significant correlation between Der p 1 concentration in mattresses at 4, 8, 12 and 24 months and Der p 1 levels in the bedroom carpet at the beginning of the study. CONCLUSIONS: New mattresses can become a significant source of exposure to mite allergens after a short period of time (< 4 months). There is little justification for advising mite sensitive patients to replace their mattresses as a part of avoidance regime.

Allergens↗

Allergic and nonallergic interactions between house dust mite allergens and airway mucosa.

Asthma and allergy are extremely frequent diseases, affecting 5-10% and 30% of the population, respectively. The prevalence of asthma has increased in many developed countries, which may be due to several factors, including increased exposure to house dust mite (HDM) allergens. HDM to which humans are most frequently sensitized are Dermatophagoides pteronyssinus, Dermatophagoides farinae, and Euroglyphus maynei. These mites multiply in carpets, bedding and upholstered furniture in a hot and humid atmosphere. The allergens are digestive enzymes of the mites. Several epidemiological studies have shown that an increase in exposure to HDMs is associated with an increase in the prevalence of sensitization and asthma, whereas mite avoidance leads to a decrease in respiratory symptoms of sensitized asthmatic subjects. Sensitized subjects have specific immunoglobulin G and E (IgG and IgE) humoral responses, as well as proliferative T-cell responses to HDM allergens. Experimental exposure to HDM allergens induces bronchoalveolar inflammatory responses, that are characterized by the recruitment and activation of eosinophils, mastocytes, neutrophils, monocytes and lymphocytes. The cysteine protease activity of Der p 1 (a major allergen of D. pteronyssinus) has been shown to increase airway mucosal permeability, and may thereby contribute to the pathogenesis of airway inflammation and hyperresponsiveness by nonimmunological mechanisms. These epidemiological and experimental data support the recommendations for mite avoidance, especially in persons at high risk of developing asthma.

Allergens↗

Clinical tolerance, parasitological efficacy and environmental effects of dehumidifiers in stable asthmatics sensitized to house dust mites.

Dehumidifiers (DH) are potentially effective appliances as coadjuvant therapy in the treatment of bronchial asthma caused by sensitization to house dust mites. The aims of this study were to analyze DH tolerance in asthmatic patients, to assess the parasitological effects and to analyze the environmental effects produced by the use of these appliances in the bedrooms of asthmatic patients sensitized to house dust mites. 10 stable asthmatic patients sensitized to house dust mites were studied. DH appliances (CD-300) were installed in their bedrooms. Each patient was given symptom scoring tables and a portable peak expiratory flow (P.E.F.) during a period of 5 months, 1 month before installing the DH and 4 months afterwards. To study the parasitological efficacy of the DHs, we analyzed dust samples from the bedrooms and determined the Der p I, Der f I and Der II allergens by means of a modified ELISA based on monoclonal antibodies. Dust samples were collected before installing the DHs and after they had been working for 2 and 4 months. Dry temperature and relative humidity measurements at three time intervals (7-9, 15-17 and 22-24 h) were carried out. The 1st measurement was done prior to installation of the DHs in the patients' bedrooms and the 2nd and 3rd were achieved 2 and 4 months respectively after the installation. Statistical analysis was done by comparison of paired means. No significant differences were detected in the patients' symptoms nor in the P.E.F. measurements in the course of the study. Decreases in the house dust mite allergens were observed in 4 bedrooms. A significant decrease in relative humidity in the bedrooms of mite asthma patients after use of dehumidifier appliances was observed (p < 0.01). Significant differences between the measurements of the bedrooms with and without DH were detected (p < 0.01). In summary, DHs were well tolerated by stable asthmatic patients, produced a significant decrease in the relative humidity level and showed some parasitological efficacy.

Animals↗

[Allergenicity and specific protein profiles of mange mites Chorioptes bovis, Psoroptes ovis (Acari: Psoroptidae), Saroptes suis and Notoedres cati (Acari: Sarcoptidae) using SDS-PAGE and immunoblotting].

A main point of immunoparasitological research in regard to pest arthropod-infestation is biochemical and immunological characterization of antigens. Precondition of own examinations to the specific protein pattern of mange mites were in quality and amount sufficient antigen preparations in mite extract solutions. For mite separation and antigen refinement field strains of Chorioptes bovis, Psoroptes ovis, Sarcoptes suis and Notoedres cati from definitive host animals cattle, sheep, pig and cat have been used. Parasites were isolated in a migration procedure. After having applicated subepidermally a low dose of mite extract solutions in sensitized animals allergic skin changes (Immediate reaction type 1) became apparent. SDS-PAGE exhibited specific protein patterns of 4 pathogen mite species. For Chorioptes bovis 16, Psoroptes ovis 15, Sarcoptes suis 27, and Notoedres cati 36 fractions have been detected. Proteins are antigens or allergen structures to be found in saliva, faecal output or moulting products of developmental stages and other metabolites of the parasites. Protein components were transferred onto nitrocellulosis. Immunoblotting made fractions with antigen activity visible.

Allergens↗

The role of mite allergen in chronic urticaria.

Fifty-two patients with chronic urticaria were tested intradermally with mite allergen (Dermatophagoides farinae). None had any past history of any other atopic diseases. Thirty of the 52 patients gave positive skin tests to mite allergen. A good correlation between skin sensitivity to mite allergen and in vitro mite antigen-induced histamine release from leucocytes was observed. These facts suggest that a mite may be an important role in chronic urticaria.

Allergens↗

Evaluation of the MAST CLA allergy system for diagnosis of allergies to house dust mites and cats.

The MAST CLA system was evaluated against skin prick test (SPT) for diagnosis of allergies to house dust mites (Dermatophagoides pteronyssinus, Dermatophagoides farinae) and cats. Forty three asthmatic children were examined by SPT and MAST CLA. Chi-square analysis indicated significant association between SPT and MAST CLA results for the house dust mites but not for cats. The sensitivities of MAST CLA for house dust mites and cats were 100 and 25% respectively; specificities were all less than 50%. The efficiency of MAST CLA for detection of allergy to the house dust mites was 88% and 44% for cats. A significant linear correlation was found between SPT wheal size and MAST CLA grade for D. farinae but not for D. pteronyssinus and cats. It is concluded that the MAST CLA allergy system can be used to supplement SPT for diagnosis of allergies to house dust mites but not to cats.

Adolescent↗

[Storage mites as the source of household allergens].

Storage mites of the families Acaridae and Glycyphagidae attracted attention as the source of household allergens. Storage mites occurring in house dust were studied. The fauna of storage mites in house dust was represented by two families. The dominating species, both in the relative amount and occurrence, were Tyrophagus putrescentiae and Chortoglyphus arcuatus. In addition, Caloglyphus rodionovi and Carpoglyphus lactis occur regularly. The specific activity of allergenic extracts obtained from storage mites was studied in ELISA. They were shown to have sensitizing and immunogenic properties. The study revealed that storage mites possessed specific determinants and those common with pyroglyphid, not linked with allergens of groups 1 and 2.

Allergens↗

[The gamasid mites (Parasitiformes: Mesostigmata) of small mammals from undeveloped land in Moscow].

On 11 species of small mammals collected in the parks and ruderal areas of Moscow in 1964-1991, 35 species of mites were revealed. Among them 23 species were parasitic. Laelaps hilaris, Haemogamasus nidi, and Androlaelaps glasgowi were predominant. The mite species diversity on small mammals in Moscow is similar to that in natural environments. The epidemiological and epizootiological significance of revealed species of mites is discussed. The rat mite Ornithonyssus bacoti has the major medical importance as the pathogen of the rat mite dermatitis in Moscow and as a vector of transmissive diseases. According to literature and the data obtained the favorable conditions for maintenance of transmissive diseases reservoirs exist permanently in Moscow.

Animals↗

[Allergy to dust mites].

House dust mites are the most important indoor allergens in our region. During recent years more dwellings have become infested, most likely as a result of increased indoor humidity due to reduced ventilation. Among Danish adults, 14% have developed IgE against mites. The allergens are stable and can remain for years. Keeping the humidity low (< 45%) during winter months is the most important limiting factor for mite growth. It can be accomplished by ventilation and heating. If bedding, pillow, eiderdown and covering mattress are washedat temperatures > 55 degrees C mites are killed and allergens removed. In addition mattress covers seem to be useful, although guidelines for quality assessment are lacking. Reduction in mite exposure will reduce development of allergy in all age groups especially in the newborn period. Immunotherapy can be offered in rhinitis and moderate asthma when sufficient allergen reduction cannot be accomplished.

Adult↗

Life history parameters of the two-spotted spider mite (Tetranychus urticae Koch) feeding on bean leaves treated with pyrrolizidine alkaloids.

In this study we assess the effect of pyrrolizidine alkaloids (PAs) extracted from Lithospermum canescens on the biology of the two-spotted spider mite (Tetranychus urticae Koch). Lithospermum canenscens (Michaux) Lehm. (Boraginaceae) is a common prairie plant also known as Indian paint or hoary puccoon. A mixture of seven PAs with known chemical structures was used in this investigation. Mites treated with PAs showed a high mortality of juveniles, a decrease in female fecundity and a shortened longevity. The intrinsic rate of population increase (r(m)) was used as an indicator of T. urticae population performance after treatment with PAs. The r(m) value obtained with alkaloid-treated leaves was lower than that for mites developing on untreated leaves, which indicates that the mite population would develop much slower on treated plants. The results suggest that further studies should be performed to assess the possible use of PA extracts for spider mite control.

Animals↗

Feather mites, pectoral muscle condition, wing length and plumage coloration of passerines.

I compared the feather mite (Acari, Proctophyllodidae) loads of moulting birds with features of the new plumage that they were growing. I examined 21 samples, each sample containing individuals of the same species, sex and age class (juvenile, yearling or adult). I used nine species: wren, Troglodytes troglodytes; dunnock, Prunella modularis; robin, Erithacus rubecula; blue tit, Parus caeruleus; great tit, P. major; chaffinch, Fringilla coelebs; greenfinch, Carduelis chloris; linnet, C. cannabina; and yellowhammer, Emberiza citrinella. As previously reported for the house finch, Carpodacus mexicanus, birds with more feather mites grew duller plumage and relatively shorter wings than less infested individuals of the same sex and age class. They also had lower protein reserves judged by the shape of their pectoral muscle. Mite load was usually a better predictor of coloration than pectoral muscle score, but the opposite was true for changes in wing length. In contrast to house finches, birds whose plumage was dull before moult had higher mite loads while moulting. Even if feather mites do not cause dull plumage or short wings, they appear to be a good indicator of birds in poor physiological condition. Copyright 1999 The Association for the Study of Animal Behaviour.

Journal Article↗

Reducing dust, lead, dust mites, bacteria, and fungi in carpets by vacuuming

Old carpets may be reservoirs of dust, lead (Pb), and dust mite allergen. The purpose of this study was to determine if the dust, Pb, dust mite allergen, bacteria, and fungi on the surface of carpets could be reduced by 90% in 1 week with the use of a Hoover Self Propelled Vacuum with Embedded Dirt Finder (HSPF). A high-volume surface sampler (HVS3) was used to measure surface dust and pollutants before and after the use of the HSPF to remove deep dust in carpets 12 to 20 years old in nine middle-class homes and two small offices. The minimum, median, and maximum surface loading for the first and final samples are as follows: first fine dust loading: min 0.32 g/m2, max 14.4 g/m2, median 1.30 g/m2; final fine dust loading: min 0.019 g/m2, max 0.289 g/m2, median 0.102 g/m2; first Pb loading: min 38 &mgr;g/m2, max 3,871 &mgr;g/m2, median 471 &mgr;g/m2; final Pb loading: min 13 &mgr;g/m2, max 2,023 &mgr;g/m2, median 86 &mgr;g/m2; first mite loading: min 0.11 &mgr;g/m2, max 12. 88 &mgr;g/m2, median 2.82 &mgr;g/m2; final mite loading: min 0.06 &mgr;g/m2, max 3.67 &mgr;g/m2, median 0.28 &mgr;g/m2. Data were insufficient to determine if the loadings of bacteria and fungi were reduced a similar amount. Six to 45 min/m2 of vacuuming with the HSPF removed deep dust from these carpets. The median surface loadings of fine dust, Pb, and dust mite allergen in these 11 carpets were reduced by 91, 82, and 94%, respectively, in 1 to 15 h of vacuuming. The loading of the deep dust collected with the HSPF ranged from 8 to 171 g/m2 with a median of 66 g/m2.

Journal Article↗

High-oleate peanut mutants result from a MITE insertion into the FAD2 gene.

A high-oleate trait in the cultivated peanut ( Arachis hypogaea L.) was reported to rely on the allelic composition of the two homeologous, microsomal oleoyl-PC desaturase genes ( ahFAD2A or ahFAD2B). The enzyme activity of either ahFAD2A or ahFAD2B is sufficient for a normal oleate phenotype, and a significant reduction in the levels of ahFAD2B and a mutation in ahFAD2A were reported to be responsible for the high-oleate phenotype in one chemically induced mutant (M2-225) and one derived from a naturally occurring (8-2122) mutant. Here, we report an insertion of the same miniature inverted-repeat transposable element (MITE) in the ahFAD2B gene in another chemically induced mutant (Mycogen-Flavo) and the previously characterized M2-225 mutant. In both cases, this MITE insertion in ahFAD2B causes a frameshift, resulting in a putatively truncated protein sequence in both mutants. The insertion of this MITE in ahFAD2B, in addition to the point mutation in ahFAD2A, appears to be the cause of the high-oleate phenotype in Mycogen-Flavo and M2-225 mutants. Utilizing sequences of the MITE, we developed a DNA marker strategy to differentiate the two insertion-containing mutants from the normal oleate peanut variety (AT-108) and the naturally occurring, high-oleate mutant 8-2122. Reverse transcript-PCR/differential digestion results reveal the expression of both ahFAD2A and ahFAD2B genes in Mycogen-Flavo mutant. This result is in contrast to the observation that ahFAD2B transcripts are greatly reduced in the M2-225 mutant having the MITE insertion further 3' in ahFAD2B gene.

Amino Acid Sequence↗

B cell mitogenic activity of house dust mite, Dermatophagoides farinae, antigens.

The effect of mite antigens on murine and human lymphocytes was studied in vitro. Antigens prepared from Dermatophagoides farinae feces and bodies stimulated normal murine spleen cells to proliferate in a dose-dependent manner. The responder cells are B cells, because the response was reduced by the treatment of spleen cells with anti-immunoglobulin antibody and complement, but not with anti-Thy 1 antibody and complement. Furthermore, nylon column-purified T cells did not respond. The stimulation of B cells with mite antigens was not due to the contamination of lipopolysaccharide, a representative B cell mitogen, because C3H/HeJ spleen cells which are low responders to lipopolysaccharide could respond to mite antigens. These antigens induced not only proliferative response of murine B cells, but also immunoglobulin production. By gel-filtration column chromatography, the active fractions were eluted around the molecular weight of 150-155 kDa. Furthermore, mite antigens also stimulated human B cells to proliferate and to produce immunoglobulin. All these results suggest that mite antigens are a potent B cell mitogen and this activity might concern the induction of allergic reaction.

Animals↗

Proasthmatic effects and mechanisms of action of the dust mite allergen, Der p 1, in airway smooth muscle.

BACKGROUND: House dust mite allergen exposure is a key risk factor for the development of allergic asthma. Beyond provoking immune cell-mediated allergic responses, house dust mite allergens were recently shown to exert direct effects on airway structural cells secondary to their intrinsic protease activities. OBJECTIVE: This study tested the hypothesis that house dust mite allergen exposure can produce changes in airway responsiveness through a direct effect on airway smooth muscle (ASM). METHODS: Isolated rabbit ASM tissues were exposed to the house dust mite allergen, Der p 1, and induced changes in ASM responsiveness and activation of mitogen-activated protein kinase (MAPK) signaling pathways were examined under different experimental conditions. RESULTS: The observations demonstrated the following: (1) Der p 1 exposure elicited enhanced constrictor responses and impaired relaxation responses in the ASM tissues, (2) these proasthmatic-like effects of Der p 1 were attributed to its intrinsic cysteine protease activity, and (3) the induced changes in ASM responsiveness were associated with activation of both the extracellular signal-regulated kinase (ERK) 1/2 and the p38 MAPK signaling pathways. Additionally, specific blockade of ERK1/2 signaling was found to prevent the Der p 1-induced changes in ASM responsiveness, whereas inhibition of p38 MAPK signaling enhanced the proasthmatic-like action of Der p 1, with the latter effect a result of augmented activation of ERK1/2. CONCLUSION: These findings are the first to demonstrate that the dust mite allergen, Der p 1, can directly elicit changes in ASM responsiveness that are associated with activation of MAPK signaling, wherein proasthmatic effects induced by Der p 1 are attributed to activation of ERK1/2, whereas coactivation of p38 MAPK exerts a homeostatic action by negatively regulating ERK1/2 signaling.

Animals↗

Evaluation of the relationship between cockroach sensitivity and house-dust-mite sensitivity in Turkish asthmatic patients.

Exposure to cockroach has been identified as an important source of indoor allergens in patients with asthma and allergic rhinitis. We evaluated the relationship between cockroach sensitivity and other allergens in patients with asthma. A total of 114 patients, defined asthma according to GINA, were enrolled in this study. A questionnaire including age, sex, duration of asthma, history of cockroach presence at home, and total IgE, blood eosinophil count, pulmonary function tests, standard skin prick test additional cockroach and shrimp allergen were performed. There were 84 (73.7%) female and 30 (26.3%) male patients with a mean age of 38.1+10.1 years. The average duration of asthma was 7.7+7.2 years. Sixty five (57%) patients were determined atopic and 49 (43%) nonatopic. Pollen allergen was the most common allergen in 59 (51.8%) patients with asthma, and second common allergen was mite allergen in 43 (37.7%) patients. Cockroach sensitivity were detected in 23 (20.2%) of 114 all asthmatics and 23 (35%) of atopic asthmatics. High rates of house-dust-mite allergy (73.9%) was determined in patients with cockroach sensitivity (P<0.05), while we found no relationship with other allergens. There was no difference for cockroach sensitivity between rural and urban population. Cockroach sensitivity was more common in mild bronchial asthmatics and a female predominance was observed. In addition, there was no association between shrimp and cockroach sensitivity. As a result, a high rate of cockroach sensitivity alone or with mite sensitivity was seen in patients with bronchial asthma in Turkish population. Because of cross-reactivity between mites and cockroach, cockroach sensitivity should be investigated in patients with house-dust-mite allergy. In addition, a high rate of cockroach sensitivity, in terms of IgE sensitization, may be important for the development of new sensitizations.

Adult↗