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Biomedical subjects

L F Rubin

Publications and source records attributed to L F Rubin.

10 recordsLinked to original sources

On the etiology of subcapsular lenticular opacities produced in dogs receiving HMG-CoA reductase inhibitors.

The administration of high dosages of various hydroxymethylglutaryl-CoA (HMG-CoA) reductase inhibitors has resulted in the development of subcapsular lenticular opacities in dogs. While dogs receiving cataractogenic doses of HMG-CoA reductase inhibitors experienced profound decreases in circulating serum cholesterol concentrations (40-60% reductions in total serum cholesterol), a causal relationship between serum cholesterol lowering and cataractogenesis was not established. A strong relationship was demonstrated, however, between the systemic exposure to inhibitor (plasma drug levels) and the cataractogenic potential of the various compounds studied. Analysis of lenses from dogs chronically dosed with various HMG-CoA reductase inhibitors revealed the presence of low drug levels in the lens (less than 500 ng equivalents g-1), but no correlation was observed between the amount of drug associated with the lens after chronic treatment and cataract development. In addition, no abnormalities in cholesterol content or sterol composition were observed in clear and/or cataract containing lenses from dogs chronically dosed with HMG-CoA reductase inhibitors. The kinetics of drug appearance in the aqueous and lens cortex was assessed after doses of various HMG-CoA reductase inhibitors, and suggested somewhat higher but not statistically significant peak concentrations of inhibitor were achieved by compounds which produced a higher incidence of cataracts. These data have suggested that high doses of HMG-CoA reductase inhibitors may increase lenticular exposure to drug via the aqueous humor by producing a substantial systemic exposure to drug substance. This may result in an increased concentration of inhibitor in the outer cortical region of the lens where cholesterol synthesis is critical, thereby resulting in the development of opacities. The production of lenticular changes by a HMG-CoA reductase inhibitor of diverse chemical structure establishes, with reasonable assurance, that these lens changes are mechanism based (i.e. a product of the biochemical mechanism of action of this class of compounds). An extrapolation of these findings to patients receiving therapeutic dosages enables a favorable risk evaluation since the doses to be employed clinically are much lower and result in a far lower systemic exposure to drug substance.

Animals

Albino versus pigmented animals for ocular toxicity testing.

The capability of uveal and retinal tissue to accumulate exogenously administered materials, coupled with the existence of anatomic, physiologic and biochemical ocular abnormalities in albino animals, evokes the question of whether albino animals are suitable for testing novel compounds for untoward ocular effects. Examples of special susceptibilities of either pigmented or non-pigmented animals to novel compounds exist. The best way to avoid unanticipated oculotoxic effects from the administration of novel compounds is to use both pigmented and unpigmented strains.

Albinism

Chronic morpholine exposure of rats.

The chronic toxicity and carcinogenic potential of morpholine were evaluated in 60 Sprague-Dawley rats/sex/group receiving morpholine at mean inhalation exposure concentrations of 0, 10, 50 and 150 ppm for 6 hr/day, 5 days/week, for 104 weeks. Survival, body weight gains, organ weights, hematology, and clinical chemistries were normal in exposed groups and comparable to those of the control animals. The incidences of palpable tissue masses and of histologically confirmed neoplasia were comparable among all groups, including the control groups, and were typical of the strain and age of the rats tested. In-life clinical examinations revealed increased incidences of irritation around the eyes and nares, chromadacryorrhea, and urine stains on the fur, predominantly in high-dose animals. Morpholine exposure was associated with corneal irritation seen by ophthalmoscopic examination and confirmed microscopically as keratitis limited to the highest exposure group. Irritation of the maxillary and nasoturbinates as indicated by infiltration of neutrophils, focal squamous metaplasia of the turbinate epithelium, and necrosis of the turbinate bone was observed in high-dose animals. Therefore, chronic exposure of rats to morpholine for 2 years at concentrations of 150 ppm or less revealed no carcinogenic potential or chronic systemic toxicity. Consistent with its known irritating properties, morpholine produced only local irritation, which was limited almost exclusively to high-dose animals.

Administration, Inhalation

Protothecosis with ocular involvement in a dog.

An 8 1/2-year-old Collie dog was referred for evaluation of chronic diarrhea as well as sudden blindness and leukokoria of the right eye. An organism morphologically similar to Prototheca sp was recovered from the subretinal fluid and was found at necropsy in the eyes, gastrointestinal tract, lungs, lymph nodes, kidneys, heart, abdominal fat, and omentum.

Animals

Exophthalmos secondary to zygomatic adenocarcinoma in a dog.

An 8-year-old Labrador Retriever developed unilateral exophthalmos over a 1-year period. Contrast radiography, surgical exploration, and histologic examination revealed the cause to be an adenocarcinoma arising from the zygomatic salivary gland or duct.

Adenocarcinoma

The electroretinogram in dogs with inherited cone degeneration.

The electroretinogram (ERG) of hemeralopic Alaskan malamute dogs contains only rod components. There is absence of the photopic b-wave which is normally elicited with red light stimuli during dark adaptation and, using flicker stimulation, only the first or rod branch of the flicker fusion response curve is present. At high stimulus intensity levels, the flicker response of hemeralopes is absent. A normal ERG is recorded from affected dogs using blue light stimuli and low intensity white light. In the adult hemeralope, the retina contains no cones.

Animals

Hemeralopia in dogs.

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Animals