PubMed HealthSearch

Biomedical subjects

S MacNeil

Publications and source records attributed to S MacNeil.

13 recordsLinked to original sources

Calcium-calmodulin-dependent activation of adenylate cyclase in prostaglandin-induced electrically-monitored intestinal secretion in the rat.

The calcium-calmodulin antagonist 5-iodo-C8-W7 inhibited the PGE2-induced stimulation of cAMP production by isolated enterocytes from rat small intestine. It also reduced the secretory response of intestinal sheets to PGE2, measured as a rise in short-circuit current. It did not however, inhibit the electrical responses to forskolin and dibutyryl cAMP, nor to acetylcholine, a secretagogue whose effect is not mediated by cAMP. It is concluded that the receptor-mediated activation of adenylate cyclase and the subsequent secretory response are dependent upon calcium-calmodulin.

Acetylcholine

A simple bioassay for epidermal growth factor using pig thyrocytes.

A bioassay for epidermal growth factor (EGF) is described using an eluted stain assay (ESTA) of dehydrogenase activity in pig thyrocytes. Optimal responsiveness to EGF was obtained in confluent cultures of primary pig thyrocytes cultured with EGF or biological samples containing EGF for either 24 or 48 h. Dehydrogenase activity was determined by measuring the production and then the release of a coloured formazan product produced by reduction of a 3-[4,5-dimethylthiazol-2-yl]-2,5-diphenyltetrazolium bromide substrate added to the cells. The assay responded equally to mouse, human and recombinant EGF and was suitable for measuring EGF activity in some but not all biological fluids. Specificity of detection of EGF activity was confirmed using antibody to EGF. The ESTA assay compared favourably with the radioreceptor assay for EGF in terms of sensitivity to EGF with half-maximal activation at 0.24 +/- 0.06 nmol/l (mean +/- S.E.M., n = 22 experiments) for the ESTA assay and 0.60 +/- 0.13 nmol/l (n = 7 experiments) for the radioreceptor assay.

Animals

1 alpha,25(OH)2 vitamin D3 increases intracellular calcium in human keratinocytes.

Vitamin D3 metabolites have been found to improve psoriasis but their mechanism of action is not clear. Keratinocyte proliferation and differentiation are known to be dependent on calcium concentrations in vitro. The aim of this study was to examine whether 1 alpha,25(OH)2 vitamin D3 had any direct effect on intracellular free calcium concentrations in cultured keratinocytes. A response to 1 alpha,25(OH)2 vitamin D3 was seen in 88% of monolayers of normal human keratinocytes attached to glass coverslips. An increase in intracellular free calcium was seen in 80% of the reactive cultures, with over half the responses occurring within 30 s of exposure to 1 alpha,25(OH)2 vitamin D3 and the remainder occurring within minutes. Responses could be seen at physiological concentrations of 1 alpha,25(OH)2 vitamin D3 and were not blocked by the protein synthesis inhibitor cycloheximide. The response to 1 alpha,25(OH)2 vitamin D3 took the form of rapid transient increases in intracellular free calcium in 29 out of 59 coverslips. The basal intracellular free calcium was calculated to be 245 +/- 47 nM rising to a maximum of 834 +/- 267 nM (mean +/- SEM; n = 20) following exposure to 1 alpha,25(OH)2 vitamin D3. We conclude that 1 alpha,25(OH)2 vitamin D3 acts directly on keratinocytes to increase intracellular free calcium and that this may be relevant to its mechanism of action in psoriasis.

Calcitriol

Elevated platelet-free calcium in uraemia.

Bleeding complications in uraemia are not uncommon. The pathogenesis of haemorrhage in uraemia is still a matter of controversy and the pattern of bleeding suggests a defect of primary haemostasis. Platelet aggregation and biochemistry, including calcium levels, have been studied; however, the results are controversial. We have examined platelet aggregation, platelet-free calcium and calmodulin in platelet-rich plasma because of the significant role of calcium and calmodulin in regulating platelet and other cells' functions. Platelet aggregation in uraemic subjects was similar to that of controls. Platelet basal free cytosolic calcium and platelet calcium in response to 10 microM Ca++ ionophore A23187 in eight subjects with uraemia were 117 +/- 33 nM and 2025 +/- 398 nM (mean +/- SEM) respectively. By contrast in seven matched healthy controls basal calcium and ionophore-stimulated calcium values were 47 +/- 14 nM and 1354 +/- 414 nM, significantly less than in the patients with uraemia (P less than 0.05). The sensitivity of uraemic platelets to A23187 was similar to that of controls. Calmodulin activity in platelet-rich plasma of 12 subjects with uraemia showed no significant difference from that of controls [1.86 +/- 0.29 micrograms/ml (mean +/- SEM) and 2.0 +/- 0.37 micrograms/ml (mean +/- SEM) respectively]. We conclude that despite elevation of platelet calcium in uraemia, which may be due to a plasma factor such as parathyroid hormone, platelet aggregation is normal and bleeding in uraemia is more likely to be due to other factors, including the effect of reduced haematocrit on platelet endothelial interaction. Disturbances in platelet calcium cannot explain the bleeding manifestations in uraemia but warrant further investigation in order to identify the pathogenic mechanisms responsible.

Adolescent

Cyclic GMP release and vasodilatation induced by EDRF and atrial natriuretic factor in the isolated perfused kidney of the rat.

1. Guanosine 3':5'-cyclic monophosphate (cyclic GMP) release and vascular tone was measured in the isolated kidney of the rat perfused at constant flow with Krebs-Henseleit solution. The effects of 3 vasodilators, acetylcholine (ACh), atrial natriuretic factor (ANF) and sodium nitroprusside (SNP) on the renal release of cyclic GMP and vascular tone were examined. The ability of the endothelial-derived relaxing factor (EDRF) inhibitors, haemoglobin and gossypol, to modify vasodilatation and vasodilator-induced changes in cyclic GMP releases from the kidney was also investigated. 2. Renal cyclic GMP release was elevated 8 fold by ANF (0.01 microM), 5 fold by SNP (1 microM) and 3 fold by ACh (0.3 microM). 3. For ACh, both the increase in renal cyclic GMP release and the vasodilatation were reduced by the EDRF inhibitors, haemoglobin (1 microM) and gossypol (15 microM). For SNP, neither the increase in renal cyclic GMP release nor vasodilatation were inhibited by gossypol (15 microM). 4. For ANF, neither the increase in cyclic GMP release from the kidney nor its vasodilator activity were affected by haemoglobin (1 microM). 5. EDRF inhibitors reduced the basal release of cyclic GMP from 0.32 +/- 0.06 pmol min-1 to 0.18 +/- 0.03 pmol min-1, gossypol being more effective than haemoglobin. 6. The results are consistent with the ability of ACh to induce EDRF-mediated vasodilatation in the isolated perfused kidney of the rat. Basal EDRF release appears to contribute approximately 50% to the basal release of cyclic GMP from this preparation. The renal vasodilator action of ANF however, is independent of EDRF, although the renal vascular endothelium cannot be discounted as a site at which ANF stimulates cyclic GMP production.

Acetylcholine

Lithium and the antidiuretic hormone.

The effect of lithium on the urine concentrating response to antidiuretic hormone (ADH) and the excretion of ADH has been studied in rats and man. The maximum urine osmolarity following 18 h dehydration and Pitressin (5 u) was decreased in three out of four patients during lithium treatment compared to their response to the same test in the absence of lithium. In a fifth patient, tested only during lithium treatment, the urine remained hypotonic to plasma throughout this test. Lithium increased the excretion of ADH in non-polyuric patients from 9-22 mu/24 h in the absence of lithium to 36-202 mu/24 - during lithium treatment. In four patients with lithium-induced polyuria, a diuretic acting on the distal tubules, clorexolone, reduced the polyuria. Lithium increased urine volume and the excretion of ADH in four rats receiving lithium in their diet. The response to exogenous ADH was decreased during lithium administration.

Animals