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W Wharton

Publications and source records attributed to W Wharton.

58 records · Page 4Linked to original sources

The inhibition by xanthine phosphodiesterase inhibitors of the induction of alkaline phosphatase activity in HeLa cells: relationship of enzyme activity to cyclic AMP concentrations.

The three xanthine derivatives, caffeine, theophylline and 3-isobutyl-1-methyl-xanthine (IBMX) produced dose-dependent increases in cyclic AMP concentrations in HeLa cells after long term treatment. Only IBMX produced increases over the first 60 minutes, with a peak of approximately 5-fold control values five to 10 minutes after the addition of the drug. About four hours after the addition of either 0.67 or 1.0 mM IBMX there was a second peak in the concentration of cyclic AMP which was at least as large and usually larger than the peak observed at five to ten minutes. Neither caffeine nor theophylline increased cyclic AMP concentrations above control values until one hour after addition of the compounds, and there was no indication of a peak in the concentration at four hours. Between 24 and 72 hours, all three compounds produced elevations in cyclic AMP levels that were steadily maintained. At any given concentration, the order of potency was IBMX greater than theophylline greater than caffeine. If the xanthine derivatives were removed from the medium after 24 hours of treatment, the cyclic AMP concentrations fell to control levels within one hour. Treatment with 5-iodo-2'-deoxyuridine (IdUrd) or hydrocortisone alone did not change the levels of cyclic AMP, nor did the presence of these inducers of alkaline phosphatase activity alter the effects of the xanthine derivations on cyclic AMP concentrations. The data showed a significant correlation between the magnitude of the increase in cycli AMP concentrations over the period from 24 to 72 hours and the degree of inhibition by the xanthine derivatives of the induction of alkaline phosphatase activity.

1-Methyl-3-isobutylxanthine↗

Induction of alkaline phosphatase activity in HeLa cells by sodium butyrate.

The induction of HeLa cell alkaline phosphatase activity by sodium butyrate could be inhibited by the coadministration of caffeine or theophylline. The inhibitions were dose dependent, and at any given concentration the potency was theophylline greater than caffeine. Although the induction by sodium butyrate was more sensitive to the inhibition by the xanthines than was that produced by 5-iodo-2'-deoxyuridine, the magnitudes of the increases in cyclic AMP concentrations after treatment with the xanthines were similar in the inhibition of both types of induction. The induction of alkaline phosphatase activity by sodium butyrate also produced a shift in the thermostability pattern of the enzyme, with a proportionately greater increase in the heat-labile, rather than heat-stable, form of the activity.

Alkaline Phosphatase↗

Induction of alkaline phosphatase activity in HeLa cells by choline chloride.

Choline chloride produced a dose-dependent induction of alkaline phosphatase activity in HeLa cells. At the highest concentration tested, 40 mM, there was a 5- to 7-fold increase in alkaline phosphatase activity, a significantly greater induction than that produced by equiosmolar additions of either NaCl or sucrose. Enzyme activity was higher than control values by 24 hr after the addition of the salt, although the largest increases in activity occurred between 36 and 72 hr. The induction of alkaline phosphatase activity by choline chloride could be inhibited in a dose-dependent manner by the simultaneous addition of either caffeine or theophylline. At comparable concentrations of inhibitor, the magnitude of the inhibition of the induction produced by choline chloride was greater than that observed when the xanthines were used to inhibit the induction by either 5-iodo-2'-deoxyuridine or NaCl. Choline chloride, like NaCl, produced a proportionately greater increase in the heat-stable rather than the heat-labile form of alkaline phosphatase activity.

Alkaline Phosphatase↗

Antagonism of etonitazene's effects in rats and pigeons.

The effects of etonitazene were studied in the pigeon under a mult FR FI schedule of food presentation and in the rat under a continuous avoidance-escape schedule. A low dose of etonitazene increased rates of responding by pigeons under the FI component of the multiple schedule, whereas higher doses produced dose-related decreases in rates of responding under both components of the multiple schedule. These effects were blocked by cyclazocine. Under the continuous avoidance-escape schedule, etonitazene produced only dose-related decreases in rates of responding by rats, and these decreases were blocked by naloxone.

Animals↗