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Biomedical subjects

K M Halprin

Publications and source records attributed to K M Halprin.

At least 91 records · Page 5Linked to original sources

Further studies on adenyl cyclase in psoriasis.

Slices of human skin obtained with a keratome were pre-incubated with [3H]adenine to label the ATP pool from which cyclic AMP was subsequently formed. The accumulation of radioactive cyclic AMP was measured as an index of adenyl cyclase activity. The data showed that both the ability to incorporate [3H] into ATP and adenyl cyclase activity were significantly lower in psoriatic plaques than in uninvolved skin of the psoriatic patients, or in normal skin of control subjects. The response of adenyl cyclase to the stimulation of 3.3 muM adrenaline was less than five fold in psoriatic plaques as compared to twelve to thirty-two fold in the uninvolved skin. The response to the stimulation of prostaglandin E2 (5 mug/ml) showed no significant difference between the plaque and normal skin. The adenyl cyclase activity in uninvolved skin of psoriatic patients appeared normal. Propranolol (10 muM) blocked the stimulatory effect of adrenaline but not that of PGE2 in normal skin. These results suggest that the adenyl cyclase system of the skin has different regulatory sites for adrenaline and PGE2 and that the enzyme is defective in the epidermis of the psoriatic plaque, especially at the adrenaline regulatory site.

Adenine↗

Prostaglandins and cyclic AMP in epidermis. Evidence for the independent action of prostaglandins and adrenaline on the adenyl cyclase system of pig and human epidermis, normal and psoriatic.

Prostaglandins E1 and E2 stimulate cyclic AMP accumulation in pig epidermis and in human epidermis from patients with psoriasis. Prostaglandins A1,A2 and F2alpha are relatively ineffective. The fact that this stimulation is not inhibited by a beta-blocker (propranolol) and that the stimulation by prostaglandin E2 and adrenaline is additive indicates that each drug acts independently on the epidermal adenyl cyclase system. In other words, prostaglandins E1 and E2 act on a site other than the beta-receptor of adenyl cyclase in epidermis. The stimulation by prostaglandins E1 and E2 is not additive; hence they probably act on the same site. Concentrations of prostaglandin E above 3X10(-7) M are effective in causing stimulation. This concentration may be within the physilogical range and the contribution of endogenous prostaglandin levels in the control of intracellular cyclic AMP levels cannot be disregarded.

Adenylyl Cyclases↗

On the lack of response to catecholamine stimulation by the adenyl cyclase system in psoriatic lesions.

When epidermis from the uninvolved skin of psoriatic patients was incubated for 5 min in Hank's medium containing adrenaline and theophylline, the cyclic AMP level consistently increased 20-30 times over the level observed when adrenaline was not added to the medium. On the other hand, when epidermis from the involved skin of psoriatic patients was incubated under the same experimental conditions, the cyclic AMP level increased only 2-5 times. Even when theophylline, and inhibitor of specific cyclic AMP-phosphodiesterase, was omitted from the medium, a clearly demonstrable difference in sensitivity to adrenaline was evident in normal appearing and lesional psoriatic epidermis. These results indicate a faulty adenyl cyclase system in the involved epidermis of psoriatic lesions rather than a defective degradation process by the specific phosphodiesterase. Since the Km for adrenaline activation of adenyl cyclase was approximately the same in both the uninvolved and the involved epidermis and since the cyclic AMP increase by adrenaline was abolished by the addition of propranolol, the basic nature of the beta-receptor (specifically the binding affinity to adrenaline) in the involved epidermis does not appear to be defective. On the other hand, the finding that the Vmax for adrenaline activation is 10-20 times higher in the uninvolved than in the involved epidermis suggests that the poor response in the involved epidermis may be due to fewer available binding sites for adrenaline in the psoriatic lesion.

Adenylyl Cyclases↗

The effects of catecholamine and related compounds on the adenyl cyclase system in the epidermis.

The effect of various hormones and drugs on the adenyl cyclase system of pig and human epidermal slices was studied in vitro. Adrenaline and isoproterenol in the presence of theophylline increased the epidermal cyclic AMP level 20-fold in 5 min. Noradrenaline also stimulated cyclic AMP accumulation but to a much lesser degree. The adrenaline stimulation was marked even in the absence of the phosphodiesterase inhibitor, theophylline. Theophylline potentiated the effect of adrenaline at the concentration of 2-10 mM although theophylline alone did not elevate the cyclic AMP level significantly. The Km for adrenaline stimulation of the adenyl cyclase system of pig epidermis was 7-7 X 10(-7) M. A beta-adrenergic antagonist, propranolol, markedly inhibited the adrenaline stimulation while alpha-antagonists, phentolamine or priscoline, showed little effect. The results are in accord with the view that the epidermis possesses an active adenyl cyclase system with beta-adrenergic receptors.

Adenylyl Cyclases↗

Is the cyclic AMP in psoriatic epidermis low?

A deficiency of epidermal cyclic adenosine 3', 5'-monophosphate (cyclic AMP) has been implicated as the cause of the incomplete differentiation, increased mitosis and increased glycogen concentration which characterize the psoriatic lesion. This communication contains our data on the epidermal concentration of cyclic AMP in the lesional and 'normal' (non-involved) skin of patients with psoriasis. In these studies we have introduced the following improvement in methodology: (1) Local ischaemia in the biopsy specimens was prevented by not giving any injections prior to removal of the tissues and by freezing the tissues prior to removal. (2) The epidermis was microdissected from the dermis prior to cyclic AMP assay as as to give as pure an epidermal specimen as possible. Epidermal cyclic AMP was found to be 20-25% higher in the skin lesion than in the uninvolved skin when compared on a dry weight or protein basis but essentially when compared on the basis of DNA content. Our conclusion is that the cyclic AMP level in the psoriatic lesion is not lower than that in the 'normal' skin and thus these characteristics in psoriatic lesions cannot be related simply to a cyclic AMP deficiency.

Adult↗

Percutaneous absorption of salicylic acid.

The potential hazards of repeated topical application of salicylic acid under occlusion to large areas of the body was evaluated by measuring the percutaneous absorption and serum salicylate concentrations in four patients with active psoriasis. Serum salicylate concentrations never exceeded 5 mg/100 ml in any of the patients, and although greater than 60 percent of the salicylic acid applied was absorbed, no evidence of accumulation or toxicity was observed. This form of treatment appears to present little potential hazard even in patients with extensive skin disease. Therapy could be hazardous for patients with impaired hepatic or renal function or for smaller children. The urinary excretory products of salicylate metabolism were compared following topical and intravenous salicylate administration to determine if the skin plays any part in the biotransformation of salicylate during percutaneous absorption. Our data are too limited and inconclusive to answer this question.

Administration, Topical↗

Photosensitivity reaction to vinblastine.

A photosensitivity reaction to vinblastine sulfate occurred in a patient receiving chemotherapy for Hodgkin disease. Ultraviolet light (UVL) testing revealed a decreased minimal erythema dose (MED), which returned to normal following discontinuation of the drug. Photoreactions to intradermal injections of vinblastine were produced in the patient and in five normal controls with a suberythema dose of UVL. Spectrophotometric studies confirmed absorption of vinblastine sulfate in the sunburn range. The clinical lesions and phototests could not be reproduced through window glass or aminobenzoic acid as sunscreens.

Adult↗

Senile purpura.

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Age Factors↗