Gallbladder ablation: need for a better model.
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Biomedical subjects
Publications and source records attributed to B C Inman.
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Ornithine decarboxylase (ODC) activity increases during many growth responses. Some cells and tissues in culture also exhibit elevated enzyme activity with decreasing osmolality of the culture medium. We have found that this also occurs with uterine tissue from ovariectomized rats. Organ culture incubation under hypotonic conditions caused maximal stimulation of uterine ODC activity at 4 hr. This stimulation was observed when either NaCl or sucrose was used to adjust the osmolality. Incubation under isotonic conditions also increased ODC activity relative to hypertonic conditions. This increase was similar in magnitude to that seen with unincubated uterine tissue from animals receiving systemic estradiol or intrauterine cholera toxin. Both estradiol and cholera toxin increase vascular permeability, and the resultant edema changes the extracellular microenvironment of the uterine cells. We suggest that this change somehow is mimicked by organ culture under hypotonic or isotonic conditions and is responsible for the stimulation of uterine ODC activity.
Cholera toxin administered by intrauterine injection to ovariectomized rats increased uterine ornithine decarboxylase activity as much as systemic estradiol at 4 h after treatment. At 45-60 min after treatment, however, cholera toxin did not increase nuclear estrogen receptor or stimulate synthesis of the uterine "induced protein," which is closely correlated with nuclear receptor, whereas estradiol caused substantial increases in both nuclear receptor and induced protein synthesis. Intrauterine injection of cholera toxin also produced an estrogen-like elevation of the uterine protein/DNA ratio at 24 h. Because both cholera toxin and estradiol are known to increase vascular permeability, our results support the hypothesis that some uterine effects of estradiol are not mediated by receptor-genome interaction but involve another mechanism that is associated with increased vascular permeability.