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Biomedical subjects

W S Tyler

Publications and source records attributed to W S Tyler.

80 records · Page 5Linked to original sources

Pulmonary alterations in rats exposed to 0.2 and 0.1 ppm ozone: a correlated morphological and biochemical study.

Weanling male Sprague-Dawley rats were fed either a synthetic diet supplemented with 11 mg vitamin E/kg body weight (to approximate average U.S. human dietary intake) or a commercial rat chow for 5 wk. At 2 months of age, rats were exposed to either 0.0, 0.1, or 0.2 ppm ozone continuously for 7 days. Morphological lesions were consistently present in centriacinar regions of lungs of both groups of rats at the 0.2 ppm level. At 0.1 ppm ozone, two of six rats fed the synthetic diet and two of five fed lab chow had minimal centriacinar lesions. Biochemical assays showeed that the activities of glutathione (GSH) peroxidase, GSH reductase, and G-6-P dehydrogenase and level of nonprotein sulfhydryls in the lungs of rats fed the synthetic diet and exposed to 0.1 ppm were elevated to about one-half the level that was produced by 0.2 ppm. The authors conclude that the level whereby there are no observable morphologic effects for short-term exposure to ozone in 2-month-old rats is less than, but close to, 0.1 ppm.

Animals↗

Effects of the sex-linked dwarf gene (dw) on the expression of the muscular dystrophy gene (am) in chicken.

The sex-linked dwarf gene (dw) was introduced into companion muscular dystrophic (am) and nondystrophic (Am+) New Hampshire chicken lines to investigate influences of the dwarf gene on breast muscle weights, muscle fiber area, and the histological expression of muscular dystrophy. Dystrophic and nondystrophic chickens within dwarf or nondwarf genotypes were similar in body and carcass weights. Pectoralis and supracoracoideus muscle weights (as a percentage of adjusted carcass weight) were similar in nondystrophic dwarf and nondwarf males and females. In addition, pectoralis weight was similar in dystrophic dwarf males and dystrophic nondwarf males and females. However, pectoralis weight was significantly smaller in dystrophic dwarf females than in dystrophic nondwarf females, whereas supracoracoideus weight was significantly larger in dystrophic dwarf males than in dystrophic nondwarf males. Supracoracoideus weight was similar in dystrophic dwarf males and females and dystrophic nondwarf females. Pectoralis muscle fiber area was influenced by sex and by dwarf and dystrophy genotype. Muscle fiber area was larger in females than in males, smaller in dwarfs than in nondwarfs, and smaller in dystrophic than in nondystrophic muscles. Muscle fiber degeneration and adipose infiltration was more extensive in dystrophic than in nondystrophic females and males, and it was more advanced in dwarfs than in nondwarfs. Excessive acetylcholinesterase staining patterns were characteristic of dystrophic muscle in both dwarf and nondwarf genotypes. Nondystrophic and dystrophic dwarf male and female chickens are comparable substitutes for nondwarfs as biomedical models with respect to pectoralis histology, acetylcholinesterase staining pattern, and pectoralis muscle hypertrophy.

Acetylcholinesterase↗

Vascular injury associated with naturally occurring strangulating obstructions of the equine large colon.

Ten horses were euthanatized before, during, or after surgery to correct severe volvulus of the large colon. At surgery, the colonic serosa changed from blue-gray, blue or purple toward a more normal pink in seven horses after the volvulus was corrected. The mucosa consistently remained black or dark red. Results of postmortem colonic microangiography revealed perfusion of the serosa and the circular and longitudinal muscle layers, but mucosal perfusion was limited by thrombosis in the muscularis mucosae and submucosa. There was evidence of thrombosis of the mesenteric colic vessels in six horses. Damage to the colonic vascular system, especially thromboembolism in the submucosa, may be an important limitation to colonic viability after surgical correction of volvulus of the large colon.

Angiography↗