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Biomedical subjects

Dennis J Blodgett

Publications and source records attributed to Dennis J Blodgett.

3 recordsLinked to original sources

How to evaluate toxicant exposures.

Susceptibility of individual animals to any specific toxicant is influenced by many factors, including genetics, environment, age, gender, and preexisting disease. Because the relative influence of these factors on a specific toxicosis is often unknown and unmeasured, it is difficult to predict how an individual animal is likely to respond to a toxic challenge compared with the "average" animal in the population. Safety or uncertainty factors of 10 have been proposed to deal with intraspecies and interspecies variability in regard to LD50 values. These safety factors may be too conservative for many situations. Toxicant exposure is assessed in animals to determine if preventive treatment is warranted or for differential diagnosis purposes. Calculation techniques require converting English and apothecary units to metric units by either of several methods.

Animals↗

Elution of metronidazole and gentamicin from polymethylmethacrylate beads.

OBJECTIVE: To characterize the elution and bioactivity of metronidazole and gentamicin sulfate polymerized, individually and in combination, with polymethylmethacrylate (PMMA). STUDY DESIGN: In vitro experimental study. METHODS: PMMA beads containing metronidazole (3 concentrations), gentamicin sulfate, or metronidazole and gentamicin sulfate were immersed in 5 mL of phosphate-buffered saline in triplicate. Eluent was replaced at specified time intervals for 1 or 21 days, and antibiotic concentrations were measured by high-performance liquid chromatography. Changes in antibiotic bioactivity attributable to polymerization or copolymerization of the antibiotics with PMMA, ethylene oxide sterilization, and storage of AIPMMA beads containing metronidazole were evaluated. RESULTS: Antibiotic elution patterns were similar for all groups. Day 1 elution for groups containing metronidazole or gentamicin individually represented a mean 63%-66% and 79%, respectively, of the 21-day total. Approximately 50% of the day 1 elution occurred during the first hour. The elution of metronidazole was dose dependent. The elution of metronidazole (day 3-21) and gentamicin (all days) was significantly greater when metronidazole and gentamicin were combined (P <.05). The addition of metronidazole delayed polymerization of PMMA. Neither polymerization nor copolymerization of metronidazole and gentamicin with PMMA, gas sterilization, or 2-month storage of beads containing metronidazole significantly affected antimicrobial bioactivity. CONCLUSIONS: Metronidazole elution from PMMA was dose dependent. Copolymerization of metronidazole and gentamicin sulfate in PMMA resulted in increased rates of elution. Intraoperative preparation of metronidazole-impregnated PMMA beads is not practical, but sterilization and storage for 2 months should not affect efficacy. CLINICAL RELEVANCE: The local delivery of biologically active metronidazole and gentamicin by elution from PMMA is feasible.

Animals↗

Cretinism in a North American black bear (Ursus americanus).

Congenital hyperplastic goiter and cretinism were documented in a 16 month-old male North American black bear (Ursus americanus). The cub was captured at approximately 8 months of age and maintained for an additional 8 months in captivity. Clinical signs included growth retardation, clumsiness, and facial dysmorphism. Hypothyroidism was documented by determining serum triiodothyronine (T3) and thyroxine (T4) levels. Lysosomal storage disease was ruled out by measuring various lysosomal enzyme activities. Serologic, radiographic, computed tomographic, necropsy, and histopathologic findings were consistent with congenital hypothyroidism and cretinism.

Animals↗