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Biomedical subjects

H Ferguson

Publications and source records attributed to H Ferguson.

26 records · Page 2Linked to original sources

Morphological integrity of the bronchial epithelium in mild asthma.

In severe asthma bronchial epithelial cells are damaged and detached, and it has been proposed that such damage might lead to the bronchial hyperresponsiveness that characterises asthma. To investigate the relation between airway hyperresponsiveness and epithelial damage, biopsy specimens of the bronchial mucus membrane were obtained at fibreoptic bronchoscopy from 11 patients with mild atopic asthma and airway hyperresponsiveness (provocative concentration of methacholine causing a 20% fall in FEV1 (PC20) less than 1.0 mg/ml), and from 17 healthy non-atopic subjects who did not have airway hyperresponsiveness (PC20 methacholine greater than 8.0 mg/ml). Observers who were blind to the presence or absence of asthma examined the biopsy specimens by light and electron microscopy. Epithelial cells, intercellular spaces, and goblet cells were counted. Intercellular junctional complexes were examined, and a semiquantitative assessment was made of ciliary loss, non-parallel central ciliary filaments, and vacuoles in ciliated cells. There were no differences between the asthmatic and healthy groups in any of these measurements. These findings indicate that airway hyperresponsiveness may be present when there is no apparent change in the structure of the bronchial epithelium.

Adult↗

Bronchial provocation testing of sodium iso-nonanoyl oxybenzene sulphonate.

1. Asthmatic symptoms have been reported in workers following occupational exposure to certain low molecular ratio chemicals. 2. A small number of workers involved in the initial manufacture of a new low temperature bleach activating chemical, sodium iso-nonanoyl oxybenzene sulphonate (SINOS) developed rashes, rhinitis and conjunctivitis following exposure to the compound. One worker also developed asthma. An investigative study was undertaken to examine the possible asthmatic effects of inhaling SINOS in naive non-asthmatic and asthmatic subjects handling the material in the laboratory setting. 3. Since SINOS has a similar chemical structure to aspirin, it was hypothesized that SINOS-associated asthma might be elicited by a mechanism similar to the mechanism associated with aspirin asthma. Therefore aspirin-sensitive asthmatics were also included in the study. 4. No adverse respiratory reactions were observed in the non-asthmatic subjects or in the aspirin and non-aspirin-sensitive patient volunteers following exposure to SINOS dust at atmospheric concentrations of up to 36.3 micrograms m-3. 5. Skin prick tests to increasing concentrations of SINOS were carried out in all subjects. No positive reactions were observed on any occasion. 6. This study indicates that SINOS does not elicit asthma via a mechanism similar to aspirin. Additionally, the study suggests that the addition of SINOS to washing powder will not cause significant respiratory reactions in consumers even if they are asthmatic or intolerant to aspirin.

Administration, Inhalation↗

Body piercing.

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Attitude of Health Personnel↗