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Biomedical subjects

M Haida

Publications and source records attributed to M Haida.

70 records · Page 4Linked to original sources

Characterization of the proteases in the crude mite extract.

Characterization of the proteases was performed in the crude mite extract fractionated by Sephacryl S-200 gel filtration. Three peaks of protease activities were detected in the fractions. From the results of substrate specificity and susceptibility to the inhibitors, PK.1 protease (about 60 kD) is suggested to be a trypsin-like protease of mites. From the results of susceptibility to various agents, PK.2 (about 30 kD) and PK.3 (about 20 kD) proteases may be cysteine proteases, e.g., papain and cathepsin B. PK.3 protease existed in the precipitate of 60% ammonium sulfate fractionation. The data in the present study suggest the possibility that Dermatophagoides farinae I allergen might be a cysteine protease probably derived from the gastrointestinal tract of the house dust mite.

Allergens↗

[Measurement of IgE, IgG1 and IgG4 antibodies against mite Sephadex fractions and purified allergens by means of enzyme-linked immunosorbent assay].

Mite antigens (Dermatophagoides farinae) were fractionated by a Sephadex G-200 column and their reactivities with IgE, IgG1 and IgG4 antibodies were investigated with enzyme-linked immunosorbent assay (ELISA). High IgE antibody values were observed in fractions with low molecular weight (allergenic part), while high IgG1 and IgG4 antibody values were observed in fractions with high molecular weight. High IgG4 antibody values to crude mite extract and fractions with high molecular weight were detected in individuals who had received immunotherapy. However, IgG4 antibodies directed to allergenic part were found in only one out of 12 sera tested. IgG4-ELISA using DF1 (major allergen of Dermatophagoides farinae) as antigen was also performed. In the group treated with mite, significant IgG4 antibody levels were detected in only one out of 13 sera tested. In the group treated with house dust, significant IgG4 antibodies were detected in only one out of 12 sera tested. Patients who showed high IgG4 antibody responses to crude mite extract and to high molecular weight did not show responses to allergenic part and DF1. The only case who showed positive IgG4 responses to allergenic part also reacted with DF1. Those results suggest that IgG1 and IgG4 antibody values in ELISA using crude mite extract as antigen do not reflect major allergen-specific antibody values. The importance of the use of partially purified antigens in measuring major allergen-specific IgG4 antibodies was also suggested.

Allergens↗

Acute and repair stage characteristics of magnetic resonance relaxation times in oxygen-induced pulmonary edema.

Proton magnetic relaxation times, T1 and T2, were determined for rat lungs exposed to 80% oxygen for a duration of 2 weeks. The transverse magnetization decay curve of the lung tissue was multiexponential. A linear combination of two decay curves with different T2 values fits the multiexponential decay suggesting that there are at least two different components of tissue water in the lung. Remarkable prolongation of T1 and T2 was demonstrated as lung injuries progressed in the acute stage of pulmonary edema. Both 1/T1 and 1/T2 were significantly correlated with 1/water content of the lung tissue. In the repair stage, T1 and T2 were significantly shortened. Shortening coincided with the spontaneous resolution of pulmonary edema. Relaxation rates showed no significant correlation with 1/water content in this stage. These results indicate that the physical state of water in the tissue is affected not only by the water content but also by the derangement of macromolecules in pulmonary edema. T2 was more sensitive than T1 for detecting pulmonary damage.

Animals↗

Lung cancer: differentiation of tumor, necrosis, and atelectasis by means of T1 and T2 values measured in vitro.

In vitro measurements of T1 and T2 values were performed in surgical specimens from 15 patients with lung cancer. Correlation between histologic results and measured values revealed that different pathologic tissues can be characterized by means of T1 and T2 values. The transverse magnetization decay curve of the lung tissue was multiexponential, which can be explained by two different relaxation times, fast T2 and slow T2. The signal intensity of pathologic lung tissues at different pulse sequences was simulated on a signal intensity gradient graph based on measured values of T1, fast T2, slow T2, and water content. The results showed that T2-weighted sequences were more valuable in discriminating viable lung cancer from necrotic tumor and collapsed lung lesions.

Carcinoma, Squamous Cell↗

Solid-phase enzyme immunoassay for anti-mite IgE and IgG antibodies in allergic patients.

Solid-phase enzyme immunoassays for the measurement of anti-mite IgE and IgG antibodies in the sera of mite-allergic patients were developed. In both assays, microtiter plates coated with the crude extract of Dermatophagoides farinae were used. The solid-phase enzyme immunoassay detected mite-specific IgE and IgG antibodies in sera of 18 and 15 out of 20 allergic patients, respectively. The correlation coefficient between the two antibody titers in patients' sera was 0.74, which was statistically significant (P less than .01). Both of the assays require no special facilities for radioactive materials and are considered to be useful in practice for the diagnosis of allergy to house dust mites by combining the results of the two assays.

Animals↗

Intracellular and extracellular spaces of normal adult rat brain determined from the proton nuclear magnetic resonance relaxation times.

The nuclear magnetic resonance method was used to investigate the state of water molecules in normal rat brain tissue in vitro. The transverse magnetization decay curve (TMDC) of the fresh brain tissue of adult rats (8- or 10-weeks-old) was biexponential, which could be interpreted in terms of two distinct transverse relaxation times (T2). Several factors that may affect the TMDC are discussed. It was concluded that the fast and slow components of T2 correspond to those of the water molecules of the intracellular and the extracellular spaces of normal rat brain tissue, respectively.

Animals↗

IgG and IgE antibodies to Chironomidae in asthmatic patients.

IgG antibodies to Chironomidae and its correlations to radioallergosorbent and skin reactions were examined with the aim of clarifying the relationship between asthma and Chironomidae. The level of specific IgG antibody in asthmatic patients (0.698 +/- 0.034, n = 104) was significantly greater than that in normal subjects (0.367 +/- 0.032, n = 52) (P less than 0.01). The specific IgG level was not correlated to skin reaction, nor to IgE RAST scores. Specific IgG1 and IgG4 levels in asthmatic patients were significantly greater than in control subjects (n = 14) (P less than 0.01).

Animals↗

Allergenic and immunogenic components of house dust mite, Dermatophagoides farinae.

The house dust mite, Dermatophagoides farinae, was fractionated by a Sephadex G-200 column. Its allergenic (IgE-reacting) and immunogenic (IgG-reacting) components were investigated. By means of skin test, the molecular weight (MW) of major allergenic components of mite was found to be approximately 9,000 to 21,000 daltons. Immunogenic components were investigated by enzyme linked immunosorbent assay using each fraction as an antigen and mice plasma and human serum as antibodies. With mouse plasma, high IgG antibody titers were observed in fractions that contained the part of the mite with high MW (greater than 150,000). With human sera, high IgG antibody titers were observed in fractions that contained the part of the mite with MW more than 30,000. Heterogeneity of human IgG antibody responses against mite antigen was also suggested.

Allergens↗

Allergens of the house dust mite Dermatophagoides farinae--immunochemical studies of four allergenic fractions.

Analysis of the allergenic components of the house dust mite Dermatophagoides farinae was performed. Four different types of proteins reactive with human anti-mite IgE antibodies were identified as four distinct radioprecipitins in radioimmunoelectrophoresis. These were designated as mite allergen reactive with human IgE antibodies (Me) Me 1, Me 2, Me 3, and Me 4 according to their electrophoretic mobility from the slower to the faster. Me 1 and Me 2 were the first and the second prevailing allergens, respectively, in 133 atopic patients subjected to the study. Me 1, on purification by gel filtration and anion exchange chromatography, elicited a single radioprecipitin by radioimmunoelectrophoresis. Me 1 also elicited a single band in sodium dodecyl sulphate-polyacrylamide gel electrophoresis and a single peak in high-performance liquid chromatography. Both methods elicited identical values of 17,000 daltons for the molecular weight of Me 1. The isoelectric point of Me 1 was suggested to be 8.0. Me 1 elicited higher skin reactions compared to that obtained by the crude mite extract when it was assessed in seven atopic patients by serial titration intradermal skin testing.

Allergens↗

Serum IgE and IgE antibody levels in patients with bronchial asthma, atopic dermatitis, eosinophilic granulomas of the soft tissue (Kimura's disease) and other diseases.

Hyper-IgE immunoglobulinemia was observed in bronchial asthma, atopic dermatitis, eosinophilic granuloma of the soft tissue (Kimura's disease), disseminated visceral eosinophilic granulomas (Zuelzer-Apt syndrome) and disseminated eosinophilic collagen disease, IgE antibodies to environmental allergens (Dermatophagoides farinae mites, Aspergillus fumigatus, mountain cedar pollen, and Candida albicans) were found in bronchial asthma, atopic dermatitis and combinations of the two, but were not significantly detected in the latter three diseases. Hyper-IgE immunoglobulinemia may be divided into two groups on the basis of the presence of specific IgE antibodies directed to environmental allergens. The presence of antimite IgE antibodies in atopic dermatitis sera was confirmed by radioimmunoelectrophoresis. Anti-mite IgE antibodies in atopic dermatitis were heterogeneous in their specificity and the allergenic moieties to which IgE antibodies were directed varied from one case to another.

Adolescent↗