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Biomedical subjects

R Paige

Publications and source records attributed to R Paige.

8 recordsLinked to original sources

Factors modulating the epithelial response to toxicants in tracheobronchial airways.

As one of the principal interfaces between the organism and the environment, the respiratory system is a target for a wide variety of toxicants and carcinogens. The cellular and architectural complexity of the respiratory system appears to play a major role in defining the focal nature of the pulmonary response to environmental stressors. This review will address the biological factors that modulate the response of one of the major target compartments within the respiratory system, the tracheobronchial airway tree. Individual airway segments respond uniquely to toxic stress and this response involves not only the target cell population, e.g. epithelium, but also other components of the airway wall suggesting a trophic interaction within all components of the airway wall in maintaining steady state and responding to injury. A number of biological factors modulate the nature of the response, including: (1) metabolic potential at specific sites for activation and detoxification; (2) the nature of the local inflammatory response; (3) age of the organism at the time of exposure; (4) gender of the exposed organism; (5) history of previous exposure; and (6) species and strain of the organism exposed.

Aging↗

Dose-related airway-selective epithelial toxicity of 1-nitronaphthalene in rats.

Nonciliated ("Clara") cells of terminal bronchioles are one of the principal targets of bioactivated pulmonary toxicants. However, we have recently observed cytotoxicity in proximal tracheobronchial airways with high doses of naphthalene. To test if this was true for other xenobiotics, 1-nitronaphthalene (25, 50, 100, or 150 mg/kg) was injected i.p. into male Sprague-Dawley rats and cytotoxicity characterized 24 hr later by high-resolution histopathology along a defined airway path extending from the trachea to the terminal bronchioles. At 25 mg/kg, only nonciliated cells in minor daughter airways were swollen and necrotic. At 50 mg/kg there was near complete loss of nonciliated cells in most bronchioles, minor daughter airways, and tracheas. Marked damage to ciliated cells was observed at doses of 100 and 150 mg/kg. Denudation of the basement membrane was common in the trachea. We conclude for 1-nitronaphthalene cytotoxicity in the lung that: (1) nonciliated cells of the distal bronchioles are not the only target, (2) the threshold for injury in nonciliated cells is lower than that for ciliated cells, (3) the response is airway selective, (4) the response is dose-related.

Animals↗

Magnetic resonance characteristics of an abdominal desmoid tumor.

A case of desmoid tumor arising from the abdominal wall is presented. Although the mass was well demonstrated by contrast-enhanced computed tomography (CT), the typical fibroblastic nature of the tumor was best depicted by magnetic resonance (MR) imaging which also clearly showed the classic origin of the tumor from the anterior abdominal wall musculature. The overall extent of the lesion was also best demonstrated by MR imaging using both transaxial and coronal planes. Spin echo sequences with late echoes were useful in confirming the nature of this lesion.

Abdominal Muscles↗