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Biomedical subjects

M R Clark

Publications and source records attributed to M R Clark.

At least 163 records · Page 9Linked to original sources

The effect of malonyldialdehyde, a product of lipid peroxidation, on the deformability, dehydration and 51Cr-survival of erythrocytes.

Erythrocyte membrane lipid peroxidation has been reported to occur in various haemolytic anaemias. In the present study, treatment of human erythrocytes with malonyldialdehyde (MDA), a product of fatty acid peroxidation, induced membrane rigidity, cellular dehydration and reduced whole cell deformability. These effects of MDA were blocked by histamine and fluorescamine, which can act as alternate substrates for MDA. Additionally, reduced deformability of MDA-treated rabbit cells was associated with shortened 51Cr survival in vivo. These findings suggest a biochemical basis for decreased survival of erythrocytes undergoing peroxidative damage of the membrane.

Animals↗

Stimulation of phospholipid synthesis by luteinizing hormone in isolated rat granulosa cells.

This report describes the effect of LH on phospholipid metabolism in rat granulosa cells isolated from mature Graafian follicles. As indicated by the incorporation of radioactive phosphate, LH specifically stimulated the labeling of phosphatidic acid (PA) and phosphatidylinositol (PI). This effect was observed after 2 min and was more pronounced with further incubation with LH. Increases in PI labeling were correlated with increases in LH-induced progesterone accumulation. LH also increased the tissue concentrations of PI. Addition of exogenous PA or PI, but not other phospholipids, increased progesterone accumulation by granulosa cells. These results indicate that LH has selective effects on phospholipid metabolism in rat granulosa cells which may play a role in ovarian steroidogenesis.

Animals↗

Calcium- and lipid-dependent protein phosphorylation in the human ovary.

The cytosol of human ovarian tissues was observed to promote protein phosphorylation in the combined presence of Ca2+, 1,2-diolein, and phosphatidylserine. Ca2+ alone or lipid alone did not produce full activation of this protein kinase(s). The addition of human erythrocyte calmodulin to the assay mixture, in the presence or absence of Ca2+, had no effect on protein kinase activity. Phosphorylation of cytosol proteins ranging in mol wt from 10,000 to 200,000 was selectively increased by Ca2+ plus lipid. This protein kinase activity may play a crucial role in the intracellular transmission of the action of hormones affecting cellular Ca2+ flux and/or phospholipid metabolism.

Calcium↗

Selective isolation of murine erythropoietin-responsive progenitor cells (CFU-E) with monoclonal antibodies.

Erythropoietin-responsive progenitor cells (CFU-E) from normal mouse foetal liver have been substantially purified on the basis of their differential binding to two monoclonal antibodies in conjunction with flow cytometry. This has allowed the formal identification of the foetal liver CFU-E as an early erythroid blast cell with a highly basophilic cytoplasm. It has also been possible to show a quantitative association of a membrane marker with proliferative potential within a single differentiation lineage. This is the first demonstration of such an association. Progenitor cells enriched in this way should allow study of the molecular mechanisms of erythropoietin action and also serve as a target for determining the cellular specificity of erythroid-transforming viruses.

Animals↗

Osmotic gradient ektacytometry: comprehensive characterization of red cell volume and surface maintenance.

Whole cell deformability of red cells was measured as a continuous function of suspending medium osmolality using the ektacytometer, a laser-diffraction viscometer. Study of normal cells in which water content and membrane surface area had been selectively modified showed that this technique can detect changes in these properties with high sensitivity. The osmotic deformability profiles obtained from this assay provide information about cell water content, surface area, and the heterogeneity in these cellular properties, information that by conventional methods would require several different types of measurements. Application of this approach to a variety of pathologic blood samples showed that various hematologic disorders can be characterized by the shape of this profile and the position of specific features of the profile along the osmolality axis. Measurement of osmotic deformability profiles thus provides a convenient and comprehensive means of identifying abnormalities either in red cell water content or surface area.

Densitometry↗

Red cell membrane stiffness in iron deficiency.

The purpose of this study was to characterize red blood cell (RBC) deformability by iron deficiency. We measured RBC deformability to ektacytometry, a laser diffraction method for determining the elongation of suspended red cells subjected to shear stress. Isotonic deformability of RBC from iron-deficient human subjects was consistently and significantly lower than that of normal controls. In groups of rats with severe and moderate dietary iron deficiency, RBC deformability was also reduced in proportion to the severity of iron deficiency. At any given shear stress value, deformability of resealed RBC ghosts from both iron-deficient humans and rats was lower than that of control ghosts. However, increase of applied shear stress resulted in progressive increase in ghost deformation, indicating that ghost deformability was primarily limited by membrane stiffness rather than by reduced surface area-to-volume ratio. This was consistent with the finding that iron-deficient cells had a normal membrane surface area. In addition, the reduced mean corpuscular hemoglobin concentration (MCHC) and buoyant density of the iron-deficient rat cells indicated that a high hemoglobin concentration was not responsible for impaired whole cell deformability. Biochemical studies of rat RBC showed increased membrane lipid and protein crosslinking and reduced intracellular cation content, findings that are consistent with in vivo peroxidative damage. RBC from iron-deficient rats incubated in vitro with hydrogen peroxide showed increased generation of malonyldialdehyde, an end-product of lipid peroxidation, compared to control RBC. Taken together, these findings suggest that peroxidation could contribute in part to increased membrane stiffness in iron-deficient RBC. This reduced membrane deformability may in turn contribute to impaired red cell survival in iron deficiency.

Anemia, Hypochromic↗

Lithium toxicity with rarely reported ECG manifestations.

A case of severe lithium intoxication treated successfully with hemodialysis is presented. In addition to the common neurological manifestations of toxicity the patient demonstrated three rarely reported cardiotoxic manifestations: reversible first degree A-V block, intraventricular conduction delay, and prolonged Q-T interval. These findings demonstrate the need to include lithium intoxication in the differential diagnosis of drug overdose with prominent ECG changes. The pharmacology, presenting signs and symptoms, and current treatment modalities of lithium intoxication are reviewed.

Adult↗

Hydration of sickle cells using the sodium ionophore Monensin. A model for therapy.

Mean cell hemoglobin concentration (MCHC) is thought to have an important influence in sickle cell disease, both through the strong dependence of sickling rates on hemoglobin S concentration, and through the profoundly limiting effect of high MCHC on the rheologic competence of oxygenated, irreversibly sickled cells (ISC). Recent studies have tested the ability of antidiuretic hormone to reduce sickle cell MCHC by reducing plasma sodium (Na) and osmolality. An alternative means of reducing MCHC is to elevate intracellular cation content, rather than to depress extracellular cation concentration. In an effort to do this, we have treated sickle cells with Monensin, an antibiotic that selectively enhances membrane Na permeability. At submicromolar concentrations, Monensin substantially reduced the MCHC of whole sickle blood and isolated ISC, causing an improvement in cell deformability. Monensin's effectiveness in producing a controlled increase in erythrocyte water content suggests that agents that selectively increase membrane Na permeability could be therapeutically useful.

Anemia, Sickle Cell↗

Stimulation of progesterone and prostaglandin E accumulation by luteinizing hormone-releasing hormone (LHRH) and LHRH analogs in rat granulosa cells.

The present investigation was performed to characterize the accumulation of progesterone and prostaglandin E (PGE) by rat granulosa cells exposed to LHRH and LHRH analogs in vitro. Granulosa cells were obtained from immature rats 48 h after the injection of 20 IU PMS gonadotropin and incubated for up to 5 h, followed by determination of the total progesterone and PGE accumulated in cells and medium. LHRH and several LHRH agonists, at concentrations of 10-2000 ng/ml, caused 2- to 3-fold increases in progesterone accumulation. This stimulation was consistently much less than the 15- to 30-fold increase produced by LH or FSH. A LHRH agonist also stimulated PGE synthesis by rat granulosa cells, but in this case the stimulation was similar in magnitude and time course to the effect of LH. In addition, the injection of a LHRH agonist into hypophysectomized, PMS gonadotropin-treated immature rats resulted in elevated ovarian PGE content 5 h later. The effect of LHRH on progesterone and PGE accumulation by rat granulosa cells was blocked by a LHRH antagonist. Lh stimulation of progesterone and PGE accumulation, on the other hand, was not affected by this antagonist. Incubation of granulosa cells with LHRH agonist did not reduce the progesterone or PGE response to LH or FSH, even at suboptimum concentrations of gonadotropin. The presence of 10(-7) M testosterone did not modify the effect of a LHRH agonist on basal or LH-stimulated progesterone and PGE accumulation. In acute incubations of granulosa cells from mature follicles, therefore, LHRH specifically stimulates progesterone and PGE accumulation when present alone, and does not modify the stimulation of progesterone accumulation by LH or FSH.

Animals↗

Ovulation induced by a gonadotropin releasing hormone analog in hypophysectomized rats involves prostaglandins.

A potent analogue of gonadotropin releasing hormone [D-Ala6- Des-Gly10-NH2]-GnRH ethylamide (GnRHa) caused oocyte maturation and ovulation when injected in the afternoon of proestrus in immature PMSG-treated female rats, hypophysectomized on the morning of proestrus. This action of GnRHa was accompanied by a marked increase in ovarian PGE levels. Furthermore, the pretreatment of the animals with a prostaglandin synthetase inhibitor (indomethacin) completely inhibited this PGE increase and ovulation. These data suggest a role for prostaglandins in GnRHa induced ovulation.

Animals↗

Production of 6-keto-prostaglandin F1 alpha by rat granulosa cells in vitro.

The production of 6-keto-prostaglandin (PG)-F1 alpha by rat granulosa cells in vitro was measured in order to determine if the precursor of this compound, prostacyclin (PGI2), is a potential mediator of preovulatory changes in follicular function. Granulosa cells were collected from immature rats (27-29 days old) 48 h after an injection of PMSG (20 IU). The cells were incubated in medium 199 containing 1% BSA with or without arachidonic acid and various treatments for up to 5 h. PGI2 synthesis was determined by extracting the combined cells and medium, purifying the extract by thin layer chromatography, and measuring 6-keto-PGF1 alpha using a sensitive RIA. PGE synthesis was also determined by RIA in order to compare and contrast effects of treatments on PGE synthesis with those on 6-keto-PGF1 alpha synthesis. Both exogenous arachidonic acid and LH stimulated 6-keto-PGF1 alpha synthesis approximately 4-fold in comparison to controls during 5-h incubations. Maximum stimulation was achieved by the combination of arachidonic acid and LH. The effect of arachidonic acid was evident as early as 1 h of incubation, but LH had no effect until 3 h of incubation. PGE synthesis was also stimulated by arachidonic acid within 1 h of incubation and by LH within 3 h of incubation. A potent LHRH agonist also significantly stimulated 6-keto-PGF1 alpha and PGE production during a 5-h incubation, whereas three vasoactive agents (histamine, bradykinin, and angiotensin II) had no stimulatory effect on the synthesis of either compound. Based on the measurement of 6-keto-PGF1 alpha, it is concluded that rat granulosa cells have the capability to synthesize PGI2 and that this synthesis is stimulated by LH and a potent LHRH agonist. Therefore, PGI2 is a potential mediator of hormone actions in the preovulatory follicle.

6-Ketoprostaglandin F1 alpha↗

Effect of gonadotrophin-releasing hormone (GnRH) and GnRH agonists upon accumulation of progesterone, cAMP and prostaglandin in isolated preovulatory rat follicles.

To study the acute and direct effects of GnRH agonists preovulatory follicles were isolated from PMSG-treated immature rats and incubated for 15-360 min in modified Kreb's bicarbonate buffer. The levels of cAMP, prostaglandin E, and progesterone were analysed in the tissue and/or incubation media. GnRH and two GnRH agonists produced a dose-dependent stimulation of progesterone production with maximal levels 5-6-fold higher than the control group. As compared to LH the magnitude of this effect was small and was detected only after 240-360 min of incubation. GnRH also stimulated prostaglandin E accumulation and this effect was as pronounced as for LH. There were no detectable changes in cAMP levels for any concentration of GnRH when the incubation time varied between 15 and 120 min whether or not a phosphodiesterase inhibitor was present, but after 240 min of incubation a 2-fold increase in cAMP was found. Consistent with previous results, LH caused a pronounced (40-50-fold) increase in follicular cAMP which was already detectable after 15 min of incubation. Indomethacin abolished the rise in prostaglandin E induced either by GnRH or LH but did not affect the response in terms of cAMP or progesterone, and did not affect the stimulation of meiotic maturation of the follicle-enclosed oocytes caused by the hormones. It is concluded that GnRH can exert acute and LH-like stimulatory effects on the preovulatory rat follicle but that the mechanism of GnRH action is different from that of LH.

Animals↗

A simple laboratory alternative to irreversibly sickled cell (ISC) counts.

Irreversibly sickled cells (ISC) are considered to be a hallmark of sickle cell disease, yet their number in peripheral blood smears varies greatly among different homozygous SS patients. This variation has suggested a role for ISC in the varying clinical manifestations of the disease. Efforts to determine the role of ISC have been complicated by the difficulty in standardizing the quantification of these cells. For this reason, we have attempted to develop an alternative method of quantification that would be less variable than the microscopic counting of cells on blood smears. Because ISC are dehydrated dense cells, a measurement based on cell density seemed an attractive alternative approach. Analysis of whole blood samples on a simple, 2-step density gradient, spun in a microhematocrit centrifuge, showed a strong correlation between the proportion of high density cells and the percentage of morphologically identified ISC. Parallel ektacytometric measurements of cell deformability, another parameter that reflects the low water content and high MCHC of ISC, were also strongly correlated with ISC counts. These findings suggest that either of these measurements, sensitive to the special physical properties of ISC, could be used as an objective substitute for the microscopic counting of ISC.

Anemia, Sickle Cell↗

Study on the dehydrating effect of the red cell Na+/K+-pump in nystatin-treated cells with varying Na+ and water contents.

Using the antibiotic Nystatin, we have developed a systematic method for the preparation of red blood cells with independently selected levels of intracellular Na+ concentrations and water content. Such cells provided an experimental model to study the effect of Na+/K+ pump stimulation on red cell water content. Even in initially dehydrated cells, stimulation of the Na+/K+ pump by elevated intracellular Na+ caused subsequent further loss of cell water. Cell water loss was reflected in decreased monovalent cation content per unit mass of hemoglobin and by a shift in the density distribution of the cell populations to higher densities on discontinuous Stractan gradients. We conclude that the 3 Na+out : 2 K+in stoichiometry of the Na+/K+ pump results in a net desalting effect with increased pump activity. Under the conditions of these experiments, the cell appears to have no effective mechanism to compensate for a net loss of ions and water.

Adenosine Triphosphate↗

Expression of spleen cell immunoglobulin phenotype in hybrids with myeloma cell lines.

Fusions were performed between myeloma cell lines, of mouse and rat origin, and mouse or rat spleen cells. Two statistical methods have been used to measure the proportion of hybrids expressing a spleen cell-derived immunoglobulin phenotype, one of them applicable to cells growing under nonlimiting dilution conditions. The results indicate that there is strong preferential selection for hybrid cell growth with an immunoglobulin-secreting phenotype. The degree of preferential selection is dependent upon the myeloma cell line used and is most marked in the case of the rat myeloma lines. Surviving hybrids seem to originate from fusions of myeloma and spleen B(but not T) cells, but immunoglobulin production is lost more readily in certain combinations.

Animals↗