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Abnormal thiol group modulation of sodium-lithium countertransport and membrane fluidity is associated with a disturbed relationship between serum triacylglycerols and membrane function in type II diabetes.

In essential hypertension and diabetic nephropathy, sodium-lithium countertransport (Na-Li CT) is an inherited marker, subject to metabolic influences, of cardiovascular risk. Studies in Type II diabetes, taking clinical phenotypes as their starting point, are conflicting. We sought to identify Na-Li CT kinetic abnormalities in Type II diabetes, and only subsequently to seek relationships with clinical variables. Na-Li CT kinetics, membrane fluidity and their modulation by thiol proteins were measured in erythrocytes from 38 patients with Type II diabetes and in 16 normal control subjects. In untreated erythrocytes, Na-Li CT kinetics were similar. Thiol protein alkylation with N-ethylmaleimide generally caused both V(max) and K(m) to fall, but caused K(m) to rise in erythrocytes from 13 out of 38 diabetic subjects, whose native K(m) was low (P=0. 0013 compared with control). V(max) and serum triacylglycerol levels were related in normal controls (r(s)=0.54, P=0.038) and in diabetic subjects whose K(m) fell after N-ethylmaleimide (n=25, r(s)=0.62, P=0.001). Where the K(m) rose after N-ethylmaleimide, V(max) and triacylglycerol levels were not related (n=13, r(s)=-0.39, P=0.183) and membrane fluidity did not increase after N-ethylmaleimide. However, these subgroups were indistinguishable in terms of blood pressure, albuminuria, glycaemia or lipid profiles. Thus abnormalities in the regulation of Na-Li CT and membrane fluidity by key thiol proteins, resembling those seen in essential hypertension and diabetic nephropathy, were apparent in one-third of subjects with Type II diabetes. Membrane abnormalities may indicate a common pathological mechanism. The prognostic significance of Na-Li CT kinetic abnormalities in Type II diabetes must now be confirmed.

Adult↗

Fusion of sperm with prostasomes: effects on membrane fluidity.

Prostasomes are membranous vesicles (150-200 nm diameter) present in human semen. They are secreted by the prostate gland and contain large amounts of cholesterol, sphingomyelin, and Ca2+. In addition, some of their proteins are enzymes. Prostasomes enhance the motility of ejaculated sperm and are involved in a number of biological functions. In this work, we study the fusion of prostasomes to sperm by determining the relief of octadecylrhodamine self-quenching and the fluidity of membranes by measuring the fluorescence anisotropy of diphenylhexatriene. We present the following findings: (a) the contact of sperm cells with prostasomes at slightly acidic pH causes the fusion of the membranes; (b) the amount of transferred lipid depends on the prostasome/sperm ratio; (c) the fluidity of sperm is much higher than that of prostasomes; (d) the fusion changes some properties of sperm cells, such as fluidity, which decreases greatly; and (e) the extent of fluidity variations depends on the prostasome to sperm ratio. We propose that the H(+)-dependent fusion of prostasomes to sperm may have physiological consequences. In fact, this process can modify the lipid and protein pattern of sperm plasma membranes.

Humans↗

Decrease of polymorphonuclear leukocyte membrane fluidity in uremic patients on hemodialysis.

We measured membrane fluidity of polymorphonuclear leukocytes (PMN) from 14 uremic patients on hemodialysis by the excimer-forming lipid technique with pyrenedecanoic acid using flow cytometry. Membrane fluidity of PMN was significantly lower in the uremic patients during the predialysis period. During hemodialysis, progressive normalization in membrane fluidity was observed. Cross-incubation studies indicated that this observation is ascribed to factors in the patients' serum and that they can be removed by hemodialysis. When sera of these patients were fractionated by Sephadex G-25 column chromatography, the specific fraction responsible for a decreased fluidity was found in the low-molecular-weight fraction. Uremic patients have an increased risk of infection, which may be partly due to altered membrane fluidity of their PMN.

Adult↗

Effects of superoxide anion, B(alpha)P and TPA on the membrane fluidity of NIH3T3 cells.

The membrane fluidity of NIH3T3 cells treated with low and high concentration of cell stimulatives (extracellular generated superoxide anion(O2-.),12-O-tetra-decanoyl-phorbol-13-acetate(TPA), and benzo(alpha)-pyrene[B(alpha)P]) was investigated by means of fluorescence labels 1,6-diphenyl-1,3,5 hexatriene (DPH) and N-(3-pyrene) maleimide (N(3p)M). The high concentration of O2-., TPA, B(alpha)P greatly increased the fluidity of cell membrane lipid domain. No changes of the florescence polarization of DPH was found in membrane lipid domain treated with low concentration of O2-., TPA, and B(alpha)P. However, decrease in the fluoresence polarization of N(3p)M on the cell membrane protein domain damaged by low concentration of cell stimulatives was observed, showing that these treatment could influence the conformation of membrane protein. The possible relationship between the changes of the conformation of membrane protein and the cell transformation and its carcinogenic machenisms were discussed.

3T3 Cells↗

Stimulation of chloride transport by fatty acids in corneal epithelium and relation to changes in membrane fluidity.

The effect of altering cell membrane lipids on ion transport across isolated corneas was studied. Corneas mounted in Ussing-type chambers showed a rapid increase in short-circuit current following treatment with a variety of unsaturated fatty acids of varying chain length and unsaturation. Measurements of membrane fluidity which utilize immunofluorescence labelling of membrane proteins showed corneal epithelial cell membranes to be significantly more fluid following linoleic acid treatment. Uptake studies indicate rapid incorporation of [14C]linoleic acid into corneal cell membranes. Highly unsaturated fatty acids were found to have the greatest ability to stimulate chloride transport. Saturated fatty acids were tested and were found to have no effect on chloride transport at any concentration. It is proposed that unsaturated fatty acids activate chloride transport by increasing membrane lipid fluidity. The relationship of these parameters is discussed in terms of a mobile receptor model. We speculate that an increase in membrane lipid fluidity promotes lateral diffusion of membrane receptor proteins and enzymes, increasing protein-protein interactions within the membrane, ultimately resulting in the enhancement of cyclic AMP synthesis.

Animals↗

The relationship of membrane fluidity to calcium flux in chick intestinal brush border membranes.

To evaluate whether membrane fluidity plays a role in regulating calcium flux across the intestinal brush border, we purified brush border membranes from different regions of the chick intestine and determined the relationship of their ability to transport calcium and their fluidity parameters, as determined by diphenylhexatriene fluorescence polarization. Raising the temperature from 4 to 37 C resulted in a 3-fold increase in calcium accumulation by duodenal brush border membrane vesicles (BBMV; 2.85 to 8.70 nmol/mg protein X 12 min). This rise in temperature was associated with a decrease in degree of polarization from 0.395 to 0.290. The methyl esters of cis- and trans-vaccenic acid markedly increased calcium uptake at all temperatures studied (4, 25, and 37 C); the trans isomer was more effective. Both cis- and trans-vaccenic acid lowered the degree of polarization of the BBMV from 0.340 to 0.311 and 0.293, respectively, at 25 C. cis- and trans-vaccenic acid were effective whether BBMV were prepared from vitamin D-deficient chicks or their hatchmates given 1,25-dihydroxyvitamin D [1,25-(OH)2D]. The ability to accumulate calcium correlated to the degree of polarization when calcium uptake by and degree of polarization of BBMV prepared from duodenum, jejunum, and ileum were compared at 25 C. The duodenal BBMV had the greatest calcium accumulation (9.4 nmol Ca/mg protein X 10 min) and the lowest degree of polarization (0.336); the ileal BBMV had the least calcium accumulation (3.5 nmol Ca/mg protein X 10 min) and the greatest degree of polarization (0.375); and the jejunal BBMV were intermediate (8.2 nmol Ca/mg protein X 10 min; 0.344). This rank order was the same whether the intestine was from vitamin D-deficient chicks or their hatchmates given 1,25-(OH)2D before they were killed. 1,25-(OH)2D stimulated calcium uptake by duodenal and jejunal BBMV, reaching a maximal effect at 4 h, but no changes in degree of polarization were observed during this period. A plot of the degree of polarization as a function of the reciprocal of absolute temperature showed an inflection point at approximately 25 C. Neither the slope of the plot nor the point of the inflection was altered by 1,25-(OH)2D. We conclude that chick intestinal BBMV membrane fluidity and calcium uptake correlate in relation to the effects of temperature, changes in membrane lipids, and regional differences in the intestine. However, 1,25-(OH)2D stimulates calcium uptake by BBMV without a detectable change in membrane fluidity.

Animals↗

Membrane phospholipid composition and membrane fluidity of human brain tumour: a spin label study.

Membrane fluidity in membrane phospholipids of brain tumours was investigated and compared with those of white and grey matter. Fifteen brain tumours including 5 gliomas, 5 meningiomas and 5 metastatic cancers were examined. These samples were frozen immediately after extirpation in liquid nitrogen. After extraction of total lipids from the tumour tissues, membrane phospholipids were separated and analysed by thin-layer and gas-liquid chromatography. The fluidity of the phospholipid membrane was studied by electron spin resonance (ESR) spectroscopy, using a stearate spin probe. The fatty acid composition of total phospholipid of brain tumours was characterized by an increase in linoleic and arachidonic acids when compared to the control brain. The percentage of palmitoleic acid was higher in gliomas and metastatic tumours than in meningiomas. Furthermore, in the brain tumour tissues, the decreases of phosphatidylethanolamine and phosphatidylserine and the increase of phosphatidylcholine were observed when compared with grey or white matter with the exception of meningioma. There was some difference in phospholipid membrane fluidity between brain tumour and control brain tissue. The order parameter calculated from ESR spectra became higher in the following order: metastatic brain tumour, less than meningioma, less than grey matter, less than glioma, less than white matter. These results suggest that the phospholipid metabolism in the brain tumour is different from that of the normal brain, and this difference may affect the alteration of membrane physical properties which exhibit in part the character of the transformation.

Brain Chemistry↗

Cognitive function and platelet membrane fluidity in Alzheimer's disease.

Increased platelet membrane fluidity, as reflected by a decrease in the fluorescence anisotropy of diphenylhexatriene in labeled membranes, identifies a clinically distinct subgroup of approximately 50% of patients at our center who meet NINCDS-ADRDA clinical criteria for Alzheimer's disease. In the current study, we compared the cognitive impairments of patients in this subgroup to those observed in the residual subgroup of patients with Alzheimer's disease who had normal platelet membrane fluidity. No significant differences in the number or distribution of deficits in six cognitive domains were observed between the two subgroups. However, in the subgroup with increased platelet membrane fluidity, there were significantly more patients who exhibited dissociation of deficits on tests related to left and right parietal lobe function than in the residual subgroup. Moreover, the cases with dissociation of deficits consisted almost entirely of patients with deficits on tests reflecting left parietal lobe function and no deficit on tests of right parietal lobe function.

Aged↗

Thyroid hormones control lipid composition and membrane fluidity of skeletal muscle sarcolemma.

Sarcolemma membrane lipid phase of skeletal muscles of hyperthyroid animals was compared to that of control (euthyroid) ones. Hyperthyroidism caused 15% decrease in cholesterol and 70% increase in the phospholipid content of the membrane. This was accompanied by the alterations in proportions between individual phospholipid classes, and was followed by changes in the composition of phospholipid fatty acids. The calculated fatty acid unsaturation index was higher for membrane lipid phase of hyperthyroid animals than of euthyroid ones. Thyroxine-induced alterations in the lipid composition of sarcolemma caused changes in the membrane fluidity and the activity of calmodulin-stimulated (Ca(2+)-Mg(2+)-ATPase. Measurements of the steady-state fluorescence polarization of 1,6-diphenyl-1,3,5-hexatriene indicated that the lipid phase transition of membrane vesicles occurred at 25.9 degrees C and at 28.9 degrees C for preparations isolated from hyperthyroid and euthyroid rabbits, respectively. Arrhenius plot break-point temperature for CaM-stimulated (Ca(2+)-Mg(2+)-ATPase activity was lower in membrane preparations isolated from hyperthyroid (26.9 degrees C) than from euthyroid ones (30.0 degrees C). Thus, the increase of the membrane fluidity presumably caused that the enzyme was characterized by the lower activation energy value. This phenomenon may be viewed as a supplementary mechanism for activation of the enzyme by thyroid hormones to previously reported elevation of the amount of (Ca(2+)-Mg(2+)-ATPase protein exerted by hyperthyroidism (Famulski et al. (1988) Eur. J. Biochem., 171, 363-368; Famulski and Wrzosek (1988) in The Ion Pumps-Structure, Function and Regulation (Stein, W.D., ed.), pp. 355-360, Alan R. Liss, New York).

Animals↗

Effects of culture and incubation conditions on membrane fluidity in monolayers of cultured cells measured as fluorescence anisotropy using trimethylammoniumdiphenylhexatriene (TMA-DPH).

Membrane fluidity of coverslip attached living cells was measured as fluorescence anisotropy using 5 microM trimethylammoniumdiphenylhexatriene (TMA-DPH) as fluorescent probe. Fluorescence anisotropy is inversely related to membrane fluidity. Cells were grown on glass coverslips that were inserted and directly incubated in quarz cuvettes. The coverslips were fixed with special holders at an angle of 30 degrees in respect to the incident light. Effects of incubation temperature, of cell growth and densities and of the ionic and nonionic composition of the incubation medium on membrane fluorescence anisotropy were measured. Membranes of growing cells were more fluid than those of stationary cells, while cell densities had no effect except at very low cell numbers. Calcium concentrations increasing from 0 to 8 mmol/l in the incubation medium proportionally decreased membrane fluidity. Hypotonicity of the incubation media increased membrane fluidity while hypertonicity compared to normotonicity had no effect. Differentiated human fibroblasts from different origins exhibited similar membrane fluidities. They were, however, different from those of rat cells. Membrane fluidity of rat brain tumor cells increased with age in culture while membrane fluidity of primary differentiating rat brain cells decreased in with age in culture. Measurement of fluorescence anisotropy in living cells attached to glass coverslips is a convenient tool to study effects of culture--as well as of environmental--conditions on membrane fluidity.

Animals↗

Erythrocyte membrane fluidity in type 1 diabetes mellitus.

Erythrocyte membrane fluidity was determined in a group of type 1 diabetics in varying metabolic control. No difference in membrane fluidity, as measured by fluorescence polarization of 1,6-diphenyl-1,3,5-hexatriene, was found between cells from diabetic subjects. In addition, no difference was detected in membrane phospholipid and cholesterol content or the ratio of cholesterol to phospholipid in the diabetic subjects when compared to controls. The present study suggests that changes in erythrocyte membrane fluidity do not play a major role in the alterations of the physical properties of blood seen in type 1 diabetes mellitus.

Adolescent↗

Alterations in mitochondrial membrane fluidity by lipid peroxidation products.

Age-related damage to the mitochondrial membrane, including decreased membrane fluidity, has been attributed to free radical reactions. Our previous studies point to lipid peroxidation as a primary cause in age-related changes in membrane fluidity. This report offers new evidence that lipid peroxidation-modulated decreases in membrane fluidity are mediated through two aldehydic lipid peroxidation products, 4-hydroxynonenal (HNE) and malondialdehyde (MDA). Hepatic mitochondria were isolated from both ad libitum fed (AL) and dietary restricted (DR) rats of different ages. Introduction of the aldehydes was found to decrease mitochondrial membrane fluidity, although the fluidity decrease induced by HNE was more pronounced than that induced by MDA. It seems likely that HNE modifies membrane fluidity by direct interaction with membrane phospholipids, as shown by the generation of a fluorescent complex between HNE and membrane phospholipids. Finally, HNE and MDA were isolated and quantitated in mitochondria. Their levels clearly differentiated between animals of different age and dietary groups. These data indicate that the reactive products of lipid peroxidation, especially HNE, may play an important role in mediating the decreased mitochondrial membrane fluidity observed in aging animals.

Aging↗

Lowered membrane fluidity of younger erythrocytes in diabetes.

In vivo age-related changes in membrane fluidity of erythrocytes were investigated by a spin label method after fractionation of the cells by discontinuous density gradient centrifugation. Membrane fluidity was lower in older than in younger erythrocytes in both the normal and diabetic subjects. Cells from diabetic subjects showed a significantly lower level of membrane fluidity for all three age groups (younger, middle and older) than the corresponding cells from normal subjects. The magnitude of progression in the decrease in membrane fluidity in erythrocytes did not differ significantly between both groups of subjects. Both erythrocyte ATP and acetylcholinesterase activity declined, while glycosylated hemoglobin (HbA1c) increased with cell age in both groups of subjects. The HbA1c level in each corresponding fraction was higher in diabetic subjects than normal subjects, but was not correlated with membrane fluidity in either group. Neither the ATP level nor acetylcholinesterase activity in each corresponding fraction differed between groups. Membrane fluidity was significantly correlated with acetylcholinesterase activity in both normal and diabetic subjects. Our results indicate that decreased erythrocyte membrane fluidity in diabetic patients does not form gradually during their life span but develops soon after the cells enter the circulation or during their maturation in the bone marrow.

Acetylcholinesterase↗

Abnormal membrane fluidity as a cause of impaired functional dynamics of chemoattractant receptors on neonatal polymorphonuclear leukocytes: lack of modulation of the receptors by a membrane fluidizer.

Membrane properties associated with chemoattractant-mediated cellular responsiveness of neonatal polymorphonuclear leukocytes (PMN) were analyzed using n-formylmethionyl-leucyl-phenylalanine. Inasmuch as aliphatic alcohols as a membrane fluidizer can enhance the chemoattractant binding and affect subsequent cellular responsiveness in adult PMN, neonatal PMN were studied for such properties by their treatment with iso-propyl alcohol, an aliphatic alcohol. The alcohol (less than 2.5%) treatment enhanced the N-formylmethionyl-leucyl-phenylalanine binding to adult PMN, but there were no changes in the N-formylmethionyl-leucyl-phenylalanine binding to neonatal PMN. Although the N-formylmethionyl-leucyl-phenylalanine-induced subsequent responsiveness including migration, lysosomal enzyme release and superoxide anion production were modulated by the alcohol treatment in adult PMN, there was no such modulation in neonatal PMN. Because membrane fluidity is largely involved in the regulation of the receptor functions, the membrane fluidity of neonatal PMN was next measured by an excimer-forming lipid technique in flow cytometry. The membrane fluidity value (0.45 +/- 0.037) of neonatal PMN was lower than that (0.74 +/- 0.072) of adult PMN (p less than 0.01). Although the aliphatic alcohol enhanced the membrane fluidity of adult PMN, it did not affect the membrane fluidity of neonatal PMN. We conclude that there is abnormal membrane fluidity as a cause of impaired functional dynamics of the chemoattractant receptors, which appears to underlie the defective modulation of cell functions by the membrane fluidizer in neonatal PMN.

1-Propanol↗

[The effect of intralipid on the membrane fluidity of lymphocytes from human blood].

We observed the effect of 10% intralipid on the membrane fluidity of lymphocytes by means of fluorescent polarization measurement. After in vitro incubation with intralipid in concentration 0, 10, 20mg/ml, the lymphocytes from healthy adult blood showed no changes in the membrane fluidity (P > 0.05). In vivo, the membrane fluidity of lymphocytes did not alter significantly during and after infusion of 500ml 10% intralipid at a speed of 100ml per hour into healthy adult (P > 0.05). The level of blood triglyceride was elevated significantly during the infusion (P < 0.01), but decreased rapidly after the infusion. With 500ml per day of infusion (contral group), the surgical patients showed significant decrease in membrane fluidity of lymphocytes after operation (P < 0.01). But there was no significant difference between the study group and control group. The membrane fluidity might be affected by many factors. One of them is membrane lipid. Intralipid mainly contains triglycerides composed of polysaturated fatty acids and lecithin as emulsifier. The result showed that intralipid may neither alter the lipid composition of lymphocytes membrane nor the membrane fluidity. Furthermore, in case of modulation of membrane lipid composition by intralipid occurs, cellular self-regulation may be accomplished by fatty acid synthesis to keep the membrane fluidity stable.

Adult↗

Long-term prognostic value of protein C activity, erythrocyte aggregation and membrane fluidity in transmural myocardial infarction.

The objective of this study was to evaluate the long-term predictive value of the haemostatic, inflammatory and haemorheologic disturbances in transmural myocardial infarction (MI). Sixty-four (59 male) consecutive survivors of a MI, with a mean age of 58.3 +/- 12.0 years, were followed over a period of 36 months. Eighteen patients had a cardiovascular event defined as the composite of death, non-fatal MI, unstable angina and stroke. The haemostatic (protein C activity-PtC, antithrombin III, plasminogen activator inhibitor-1), haemorheologic (blood fluidity and components, erythrocyte membrane fluidity) and inflammatory (polymorphonuclear elastase, leukocyte count) profiles were determined at hospital discharge, using standard methodology. Our results can be summarized as follow: (i) at hospital discharge, the subgroup of patients with events had higher leukoactivity, leukocyte count, membrane fluidity, prognosis cyte count (7833.0 +/- 1696.0 vs. 10294.0 +/- 3129.0; p = 0.011), lower PtC (100.65 +/- 19.08 vs.81.25 +/- 19.95; p = 0.002), and lower erythrocyte aggregation (14.26 +/- 5.94 vs. 11.47 +/- 3.45; p = 0.031) in relation to the ones without events; (ii) By Cox regression the protein C activity lower tertile (OR 0.169; 0.045-0.628; p = 0.008); erythrocyte membrane outer layer fluidity upper tertile (OR 0.067; 95% CI 0.011 - 0.393; p = 0.003); and erythrocyte aggregation lower tertile (OR 0.182; 0.038 - 0.876; p = 0.034) were independent predictors of the composite endpoint. We can conclude that some haemostatic, haemorheologic and inflammatory disturbances, at hospital discharge, are long-term independent predictors of recurrent cardiovascular events in transmural myocardial infarction survivors.

Adult↗

Relationship between vasopressin-sensitive water transport and plasma membrane fluidity in kidney collecting tubule.

The role of plasma membrane fluidity in the regulation of kidney tubule water permeability has been uncertain. We have used new methods to image the fluorescence anisotropy of fluidity-sensitive fluorophores (Fushimi, Dix, and Verkman. Biophys. J. 57: 241-254, 1990) to quantitate membrane fluidity in cells of the vasopressin-sensitive cortical collecting tubule (CCT) and water-impermeable cortical thick ascending limb (CTAL). Isolated tubule segments from rabbit kidney were perfused in vitro, and apical or basolateral plasma membranes were stained with trimethylammonium diphenylhexatriene (TMA-DPH). TMA-DPH anisotropy (r) was imaged quantitatively by an epifluorescence microscope equipped with rotatable polarizers; TMA-DPH nanosecond lifetime (tau) was measured by flash-lamp excitation and gated photomultiplier detection. In CCT, apical membrane r (0.254 +/- 0.003) was similar to basolateral r (0.252 +/- 0.005). Serosal vasopressin at a dose that increased water permeability greater than 10-fold (250 microU/ml) did not affect apical membrane r (delta r = 0.002 +/- 0.003; 7 tubules). A 0.002 change in r was less than that produced by a 2 degrees C temperature variation. In CTAL, apical membrane r was 0.249 +/- 0.002, similar to r from basolateral membrane of proximal tubule (0.24), but much less than that of proximal tubule apical membrane (0.29). These results establish methodology to quantitate fluidity in intact kidney tubule segments and provide the first measurements of plasma membrane fluidity in CTAL and CCT. Our results suggest that regulation of bulk membrane fluidity in CCT apical membrane is not a component of the hydrosmotic action of vasopressin and that low apical membrane fluidity is not responsible for the low water and NH3 permeabilities in CTAL.

Animals↗

Metal ions affect neuronal membrane fluidity of rat cerebral cortex.

The effect of various metal ions on neuronal membrane fluidity was examined using 2-(14-carboxypropyl)-2-ethyl-4,4-dimethyl-3-oxazolidinyloxy, which has been used for the examination of membrane fluidity in hydrophobic areas by electron spin resonance spectrometry. Potassium, cobalt, calcium, magnesium, nickel, copper, ferric, and aluminium ions decreased the membrane fluidity while ferrous ions increased it at each high concentration. Sodium and zinc ions had no effect. Ethylenediaminetetraacetic acid decreased membrane fluidity at high concentrations. Nicardipine lowered membrane fluidity and flunarizine elevated it at each high concentration. There was no change in membrane fluidity by other calcium antagonists, nimodipine and nifedipine.

Animals↗