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Biomedical subjects

R W Butcher

Publications and source records attributed to R W Butcher.

At least 55 records · Page 3Linked to original sources

Decreased cAMP levels in human diploid cells exposed to cholinergic stimuli.

Carbachol at a concentration of 1 micron caused very significant decreases in PGE1 stimulated cAMP levels in three human diploid lung fibroblasts, WI-38, MRC-5, and IMR-90. Detailed studies with WI-38 cells showed that carbachol acted at low concentrations and very rapidly, cAMP levels being reduced by 50% in about 1 minute. The effect was moderately reduced but still very significant in Ca++ free medium containing 10(-5)M EGTA. Acetylcholine (in the presence of physostigmine), pilocarpine, and muscarine lowered cAMP levels at concentrations of 1 or 10 micron. The effects of carbachol were exquisitely sensitive to atropine but were unaffected by hexomethonium or d-tubocurarine. These data suggested that the cholinergic response of WI-38 cells was of the muscarinic type.

Acetylcholine↗

The escape of cyclic AMP from human diploid fibroblasts: general properties.

A variety of human diploid fibroblasts released large amounts of cAMP to the medium in a time-dependent fashion concomitant with stimulation of the cells by agonists of the adenylate cyclase. In WI-38 cells increased medium cAMP levels were detectable as quickly as increased cellular levels. Escape was not secondary to serum deprivation nor cell injury. It occurred in defined media, and was pH and temperature dependent. Elevated rates of escape were maintained for up to 24 hours after stimulation. A variety of PDE inhibitors reduced the rate of escape. A rough proportionality existed between the potencies of the compounds as potentiators of PGE1 increased cellular cAMP levels on the one hand and as inhibitors of escape on the other. In the case of IBMX, the inhibition of escape was transient, the most pronounced effect being during the first 5 minutes of incubation. In addition, a variety of compounds without significant acute effects on cellular cAMP levels inhibited escape.

1-Methyl-3-isobutylxanthine↗

Distortion of cyclic AMP responses to catecholamine due to destruction of the hormone.

The acute actions of low and moderate concentrations of catecholamines on cyclic AMP metabolism in SV40-transformed human lung fibroblasts (VA13) were seriously distorted by non-enzymatic destruction of the agonist. Catecholamine destruction, as measured directly with an isotopic method, was slowed by a variety of anti-oxidants and chelating agents. A combination of two anti-oxidants, ascorbate and thiourea, was very effective in protecting isoproterenol in the cell culture system. That is, there was a 10-fold increase in the sensitivity of VA13 to isoproterenol and the duration of action of the catecholamine was greatly prolonged. However, the anti-oxidants did not alter the responses of the cells to prostaglandins. We conclude that any quantitative studies of cyclic AMP responses to catecholamines must address the question of agonist destruction if meaningful results are to be expected. The use of anti-oxidants, especially the combination of ascorbate and thiourea, would appear to be advisable, particularly in situations where the catecholamine concentrations are less than supramaximal.

Antioxidants↗

Studies on cyclic AMP metabolism in human epidermoid carcinoma (HEp-2) cells.

Cultured human epidermoid carcinoma (HEp-2) cells were found to contain a highly responsive, catecholamine-sensitive adenyl cyclase activity in cellfree preparations. By contrast, cyclic AMP levels in intact HEp-2 cells were at best only marginally increased by catecholamines under a variety of conditions. The lack of an intact cell response could not be accounted for by escape of cyclic AMP to the medium, excessive phosphodiesterase activity, inactivation of the catecholamine, or by unusual kinetics of the system. However, in the presence of 1-methyl,3-iso-butylxanthine (MIX), a potent phosphodiesterase inhibitor, a moderate catecholamine response was observed in the intact cells. A significant elevation of cyclic AMP levels in the presence of MIX was observed at 0.3 muM epinephrine, and maximal levels occurred at 10 muM. Norepinephrine was much less effective than either epinephrine or isopropylnorepinephrine at 10 muM concentrations. In addition, intact cells slowly but steadily released cyclic AMP into the incubation medium over the course of 60-min incubations in the presence of MIX and epinephrine; maximum intracellular levels were reached by 5 min.

Adenosine↗