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Unconfined lateral diffusion and an estimate of pericellular matrix viscosity revealed by measuring the mobility of gold-tagged lipids.

Nanovid (video-enhanced) microscopy was used to determine whether lateral diffusion in the plasma membrane of colloidal gold-tagged lipid molecules is confined or is unrestricted. Confinement could be produced by domains within the plane of the plasma membrane or by filamentous barriers within the pericellular matrix. Fluorescein-phosphatidylethanolamine (F1-PE), incorporated into the plasma membranes of cultured fibroblasts, epithelial cells and keratocytes, was labeled with 30-nm colloidal gold conjugated to anti-fluorescein (anti-F1). The trajectories of the gold-labeled lipids were used to compute diffusion coefficients (DG) and to test for restricted motion. On the cell lamella, the gold-labeled lipids diffused freely in the plasma membrane. Since the gold must move through the pericellular matrix as the attached lipid diffuses in the plasma membrane, this result suggests that any extensive filamentous barriers in the pericellular matrix are at least 40 nm from the plasma membrane surface. The average diffusion coefficients ranged from 1.1 to 1.7 x 10(-9) cm2/s. These values were lower than the average diffusion coefficients (DF) (5.4 to 9.5 x 10(-9) cm2/s) obtained by FRAP. The lower DG is partially due to the pericellular matrix as demonstrated by the result that heparinase treatment of keratocytes significantly increased DG to 2.8 x 10(-9) cm2/s, but did not affect DF. Pericellular matrix viscosity was estimated from the frictional coefficients computed from DG and DF and ranged from 0.5 to 0.9 poise for untreated cells. Heparinase treatment of keratocytes decreased the apparent viscosity to approximately 0.1 poise. To evaluate the presence of domains or barriers, the trajectories and corresponding mean square displacement (MSD) plots of gold-labeled lipids were compared to the trajectories and MSD plots resulting from computer simulations of random walks within corrals. Based on these comparisons, we conclude that, if there are domains limiting the diffusion of F1-PE, most are larger than 5 microns in diameter.

Animals↗

TRPV4 channel is involved in the coupling of fluid viscosity changes to epithelial ciliary activity.

Autoregulation of the ciliary beat frequency (CBF) has been proposed as the mechanism used by epithelial ciliated cells to maintain the CBF and prevent the collapse of mucociliary transport under conditions of varying mucus viscosity. Despite the relevance of this regulatory response to the pathophysiology of airways and reproductive tract, the underlying cellular and molecular aspects remain unknown. Hamster oviductal ciliated cells express the transient receptor potential vanilloid 4 (TRPV4) channel, which is activated by increased viscous load involving a phospholipase A(2)-dependent pathway. TRPV4-transfected HeLa cells also increased their cationic currents in response to high viscous load. This mechanical activation is prevented in native ciliated cells loaded with a TRPV4 antibody. Application of the TRPV4 synthetic ligand 4alpha-phorbol 12,13-didecanoate increased cationic currents, intracellular Ca(2+), and the CBF in the absence of a viscous load. Therefore, TRPV4 emerges as a candidate to participate in the coupling of fluid viscosity changes to the generation of the Ca(2+) signal required for the autoregulation of CBF.

Animals↗

Correction of pneumotachograph signal for changes in viscosity during nitrogen washout.

Changes in gas viscosity during the nitrogen washout test will affect pneumotachograph measurements. A digital correction technique, using estimates of viscosity derived from measurements of gas concentration, has been described and was examined in this study. The pneumotachograph gain varied directly with argon concentration (coefficient of correlation = 0.995, P less than 0.01) indicating that a simple correction was legitimate. This was tested with an in vitro model, giving very consistent estimates of volume (FRC) despite variations in the ventilation pattern, which were slightly underestimated due to incomplete mixing in the system. Alveolar mixing efficiency (AME) was also reproducible but, like studies in man, fell when low tidal volumes were used. In a repeatability study in six volunteers, examined six times on each of two days, FRC and AME were also reproducible (average coefficient of variation within subjects of 4.97% and 4.34% respectively), considerably better than another reported study using conventional flow measurements. This method appears to be a useful addition to existing techniques for studying nitrogen washout.

Adult↗

Plasma viscosity, haematocrit and red-cell transport.

An erythrocyte transport function (ETF) is proposed, as an index of the efficiency of the circulation of red cells. Under defined conditions, this ETF is shown to be proportional to the ratio of haematocrit to whole-blood viscosity (phi/eta), a ratio already used by Chien. The variations of phi/eta with phi, at selected driving pressures in a capillary viscometer, are presented, both for normal and for pathological blood samples. Maximal values of phi/eta appear generally to occur at haematocrits of about 42%, and are strongly dependent upon plasma viscosity. They are also influenced by shear. The concept of 'isograds' (curves of phi/eta against phi at constant velocity gradient) is introduced, and is analysed in technical appendices which also deal with rates of shear in capillary and rotational viscometers when Newtonian or shear-sensitive liquids are measured.

Adult↗

Viscosity of food gums determined in vitro related to their hypoglycemic actions.

Experiments were carried out in vitro and in normal human subjects to evaluate alternative food-grade viscous polysaccharides as agents for reducing postprandial hyperglycemia and to assess the relationship between the in vitro and in vivo performance of the polysaccharides. A 1:1 mixture of xanthan and locust bean gum (X/LBG) had the greatest viscosity at equivalent concentrations and shear rates and was more effective than guar gum, xanthan, or locust-bean gum at inhibiting glucose movement in vitro. It was not, however, more efficient in lowering postprandial blood glucose and plasma insulin in human subjects when incorporated in a drink containing 50 g glucose. When the different gums were acidified and reneutralized to mimic conditions in the gut, there was a better correlation between viscosity and blood glucose and plasma insulin levels. This effect may explain why X/LBG was no more effective than the other gums in reducing postprandial hyperglycemia in man.

Adolescent↗

Weaning-food viscosity and energy density: their effects on ad libitum consumption and energy intakes in Jamaican children.

The effects of weaning-food viscosity and energy density on consumption and energy intake were determined in 15 non-breast-fed Jamaican children aged 7-15 mo under standardized conditions. We tested whether feeding thick, energy-dense porridge four times daily resulted in increased energy intakes and whether amylase treatment to reduce viscosity offered any advantage. When a traditional liquid, low-density porridge (2.15 kJ/g) was fed, the mean (+/- SD) daily consumption was 139 +/- 25 g/kg and the mean daily energy intake was 296 +/- 54 kJ/kg. When a semisolid high-density porridge (4.09 kJ/g) was fed, consumption was significantly lower (98 +/- 21 g/kg) but the daily energy intake was significantly higher--402 +/- 85 kJ/kg (P < 0.001). Amylase treatment of the thick energy-dense porridge did not increase intakes further. Meal duration for the thick porridge (12.9 +/- 4.0 min) was significantly longer than that for the low-density (7.4 +/- 2.6 min) or amylase-treated (6.4 +/- 1.8 min) porridges.

Amylases↗

Variability in cyst fluid carcinoembryonic antigen level, fluid viscosity, amylase content, and cytologic findings among multiple loculi of a pancreatic mucinous cystic neoplasm.

The procedure of percutaneous aspiration and analysis of cyst contents has been advocated to provide a preoperative diagnosis of pancreatic cystic lesions (pseudocysts and cystic tumors), but it is not known whether variation in the contents of separate loculi of a multilocular neoplasm might misrepresent the identity of the tumor. The authors measured the cyst fluid carcinoembryonic antigen (CEA) level, fluid viscosity, and amylase content and performed cytologic analysis on aspirates rates from ten different loculi of a single mucinous cystic neoplasm of the pancreas. The CEA levels were highly variable (median, 6,326 ng/mL; range, 962-64,670 ng/mL) but in all cases were diagnostic of a mucinous tumor. Fluid relative viscosity values were also variable (median, 2.4; range, 1.3-10+) but diagnostic in eight of nine aspirates. The amylase content in all of the loculi was low (< 91 U/L), and values were consistent with a cystic tumor. Cytologic analysis showed diagnostic mucin-secreting epithelial cells in nine of ten loculi. Although cytologic examination was nondiagnostic in one loculus, there were no false-positive results for malignancy. The combination of all four tests would not have resulted in misclassification of any of the tumors. The authors conclude that the characteristics of the contents of different loculi of pancreatic cystic neoplasms may be variable, but the use of a combination of tests still ensures accurate diagnosis.

Amylases↗

Effects of levodopa and viscosity on the velocity and accuracy of visually guided tracking in Parkinson's disease.

Deficits in velocity generation and movement accuracy occur in Parkinson's disease and are postulated to contribute to the characteristic bradykinesia. In the present study, we attempted to clarify the relationship between the deficits in velocity generation and movement accuracy. Patients with Parkinson's disease and normal controls tracked visually displayed sinusoidal and step targets with the wrist. Performance was evaluated using measurements of velocity and error. Movement velocity was manipulated by two methods: (i) administration of levodopa; (ii) viscous loading. Dependencies of velocity and error on disease state, medication state and viscosity were examined. Visually guided pursuit tracking was characterized by intermittent and frequent velocity excursions in both the patients and controls. For sinusoidal tracking, levodopa significantly increased velocity in the severely affected parkinsonian patients. Prior to the administration of levodopa, step tracking velocity was significantly lower in all patients than in controls. The "on' state produced an increase in velocity to control levels. Error was significantly greater in the parkinsonian subjects than in controls, but was unchanged by levodopa for both tracking tasks. Manipulations of viscosity produced greater changes in velocity than did levodopa, yet a similar independence with respect to accuracy remained. Velocity significantly changed by 40-60% in the two tracking tasks from the viscous to antiviscous loads. Error did not change significantly in 12 out of 14 comparisons of subgroups based on disease and medication state. This contradicts the hypothesis that patients with Parkinson's disease primarily reduce velocity during tracking to maintain acceptable accuracy in the presence of a defective error correction system. Although parkinsonian subjects tracked with reduced accuracy, both normal and parkinsonian subjects were able to compensate for significant changes in velocity due to external loading. Thus a propulsion deficit exists in parkinsonism that may be alleviated with either antiviscosity or levodopa. An error correction deficit is also present in parkinsonism, but is not modified by antiviscosity or levodopa.

Adult↗

Mobile phase viscosity and velocity dependence on protein retention using nonequilibrium chromatographic techniques.

Nonequilibrium chromatography (NEC) is an alternative chromatographic procedure for the separation of macromolecules. The retardation of a protein series is studied using a phosphate buffer as a mobile phase with various concentrations of glycerol fraction (used as a viscosity modifier) at different mobile phase velocities and a C1 column with a very low packing particle diameter as a stationary phase. It is shown that the two factors (viscosity and velocity) of the mobile phase constituted important parameters in the retention mechanism of the proteins in NEC. The retardation velocity domain is divided into two regions. For low velocity regions, the protein retention decreased with a mobile phase velocity increase. This retention is enhanced above a critical value of the mobile phase velocity. The transition between the two well-known NEC methods, slalom chromatography and hydrodynamic chromatography, is clearly visualized for the first time for the protein retention of particular values of the mobile phase velocity.

Animals↗

Developmental competence of oocytes showing increased cytoplasmic viscosity.

BACKGROUND: The objective of the study was to investigate the developmental fate of oocytes with increased cytoplasmic viscosity as assessed by the persistence of the injection funnel after withdrawal of the ICSI pipette. METHODS: For this purpose, 1008 oocytes showing a characteristic injection funnel during ICSI were subdivided into two groups according to the oocyte's ability to restore its spherical shape within 2-3 min after ICSI. Fertilization and further development was evaluated in both groups. In addition, implantation and pregnancy rates were analysed. RESULTS: In the funnel positive cohort (group 1) significantly fewer oocytes degenerated after injection (P < 0.01) compared with oocytes without persistent funnel (group 2). However, at zygote stage, presence of a halo (P < 0.05) and a optimal pronuclear pattern 0 (P < 0.01) was increased in group 2. In addition, significantly fewer poor quality embryos were found in this group (P < 0.01). The number of good quality blastocysts but not blastocyst formation was increased in group 2 (P < 0.05). This resulted in an increased clinical pregnancy rate if embryos which derived exclusively from funnel negative oocytes were transferred (P < 0.05). CONCLUSIONS: Our data suggest that cytoplasm of higher viscosity delays development up to cleavage stage and impairs optimal development. Injection funnel persistence was found to be a negative prognostic marker of preimplantation development.

Blastocyst↗

Barley beta-glucans alter intestinal viscosity and reduce plasma cholesterol concentrations in chicks.

Ninety-six 14-d-old male broiler chicks were divided into three dietary groups and fed a corn-soybean meal diet, a barley diet with beta-glucanase and that diet without beta-glucanase. All diets contained 4 g cholesterol/kg. Average daily body weight gain, plasma total cholesterol concentration, LDL cholesterol concentration and digestibility of lipids and protein were lowest (P < 0.05) in the chicks fed the barley diet without beta-glucanase and highest (P < 0.05) in the chicks fed corn-soybean meal diet. Supplementation of the barley diet with beta-glucanase resulted in greater (P < 0.05) average daily weight gain, plasma total and LDL cholesterol concentrations and digestibility of lipids. Viscosity of small intestinal digesta was greatest in chicks fed barley, lowest in those fed the corn-soybean diet and intermediate in chicks fed enzyme-treated barley. Significant (P < 0.01) negative correlations occurred between viscosity of the small intestinal contents and average daily weight gain, plasma total and LDL cholesterol concentrations, and digestibility of lipids and protein. A lower concentration of insoluble beta-glucans in small intestinal digesta of the chicks fed barley supplemented with beta-glucanase compared with the chicks fed the unsupplemented barley diet reflects hydrolytic activity of the supplemental beta-glucanase in the diet.

Animal Feed↗

Reassessment of the viscosity behavior of sodium dodecyl sulfate-protein polypeptide complexes.

A reassessment study was made on the viscosity behavior of SDS-protein polypeptide complexes, since information about the nature of the complexes is important in establishing the principles of SDS-polyacrylamide gel electrophoresis. Measurements were made under two conditions, i.e., in a buffer of low concentration, and in a buffer of high concentration (usually used in standard SDS-polyacrylamide gel electrophoresis). Results in the former case were not consistent with viscometric data previously reported and widely accepted [Reynolds, J.A. and Tanford, C. (1970) J. Biol. Chem. 245, 5161-5165], and indicated that the complexes did not behave as a series of pseudo-homopolymers under the former conditions. Results in the latter case indicated that the complexes behaved much more like homologous polymers, but their viscosity behavior can only be interpreted in terms of flexible chains rather than a series of rigid rods with a constant diameter and variable lengths depending on their molecular weights.

Chromatography, Gel↗

Development of a rabbit model of tear film instability and evaluation of viscosity of artificial tear preparations.

OBJECTIVE: The purposes of this study were to establish a quantitative method for evaluating rabbit tear film status and investigate the efficacy of artificial tear preparations through ocular surface bathing or eye drop application. METHODS: The rabbit tear film was evaluated using a noninvasive specular reflection video recording system. The appearance of a tear break area (TBA) on the tear film images (7.4 mm2/mm) after 30 seconds of eye opening was quantified by image analysis. To induce disruption of the rabbit tear film, the ocular surface was challenged for 60 minutes with 1 ppm hypochloric acid (HOCl). Immediately after irrigation, artificial tear preparations composed of viscosity agents sodium hyaluronate (SH), hydroxypropylmethycellulose (HPMC), hydroxyethylcellulose (HEC), or chondroitin sulfate (CS) were applied to the rabbit eye through ocular surface bathing or eye drop application, and the recovery of the disrupted tear film was compared for each preparation. RESULTS: A dramatic increase in TBA was observed immediately after the ocular surface was challenged with HOCl, and it returned to the initial level after 6 hours. Immediately after ocular surface bathing and eye drop application, a dramatic recovery of TBA was observed in all the test solution-treated eyes. One hour after treatments, prolonged amelioration of the tear film instability was observed after ocular surface bathing, but not by eye drop application, with the artificial tear preparations composed of HPMC or SH. CONCLUSION: Ocular surface bathing with artificial tear preparations composed of a suitable viscosity agents could be useful in managing tear film instability.

Animals↗

Effects of hyperventilation, hypothermia, and altered blood viscosity on cerebral blood flow, cross-brain oxygen extraction, and cerebral metabolic rate for oxygen in cats.

Therapies including hyperventilation (HV) and hypothermia (HT) are currently simultaneously used in brain-injured children at risk for cerebral swelling to reduce cerebral blood flow (CBF) and alter cerebral metabolic rate for oxygen (CMRO2). Since HV and HT may contribute to significant patient morbidity, we evaluated the effects of these treatments in combination on CBF, CMRO2, and cross-brain oxygen extraction (CBO2) using the Kety-Schmidt technique before controlled bleeding to alter blood viscosity in 20 lightly anesthetized, paralyzed cats, and after bleeding in another 17 cats. The degree of HV (PaCO2 24 to 26 torr) and HT (32 degrees and 30 degrees C) used were representative of that employed in pediatric neurointensive care. HV at normothermia resulted in a significant decline in CBF (P less than .05) and an unchanged CMRO2. HV and HT together to 32 degrees C resulted in a further significant fall in CBF and CMRO2 (p less than .05), but an unchanged CBO2. Further cooling of the animal to 30 degrees C during HV, both before and after controlled bleeding, resulted in no further significant fall in CBF, CBO2, or CMRO2. This relationship was found despite a significant fall in Hgb (p less than .001), suggesting that blood viscosity did not significantly influence CBF at this temperature. Our data suggest that HT to 32 degrees C during HV may have therapeutic benefit by decreasing CBF and CMRO2, but further cooling to 30 degrees C may not result in further cerebral protective effects.

Animals↗

The effects of radiographic contrast media on myocardial contractility and coronary resistance: osmolality, ionic concentration, and viscosity.

With the ongoing development of new contrast agents, questions develop concerning the cardiac effects of these drugs. We used the perfused rat heart model to investigate the effects on cardiac and coronary function of hypertonic ionic (sodium chloride) and nonionic (glucose) solutions and conventional and low osmolality radiographic contrast media (RCM). We also evaluated the concurrent effects of RCM on prostacyclin and adenine nucleotide/nucleoside release. Hypertonic solutions of glucose had little effect on myocardial contraction (increase up to 7.7 +/- 0.9%), while NaCl solutions of similar osmolality were negatively inotropic (contractile force decreased up to 76.1 +/- 9.2%). Conventional RCM were negatively inotropic (decrease of 59.6 +/- 5.6% with Conray (Mallinckrodt Pharmaceuticals, St. Louis, MO), 32.2 +/- 3.2% with Angiovist 282 (Berlex Laboratories, Cedar Knolls, NJ]; two nonionic RCM, Iopamidol and Iotrol had little effect on myocardial contraction (reduction of 6.9 +/- 1.4% and increase of 12.0 +/- 2.9%, respectively). Hypertonic solutions of glucose and NaCl reduced coronary resistance in direct relationship to hyperosmolality. Conventional RCM also reduced coronary resistance, while the nonionic media caused minor alteration. None of the solutions tested altered prostacyclin or adenine nucleotide/nucleoside efflux from the heart. A solution of Ficoll 70 with a viscosity similar to that of RCM increased myocardial contraction by 9.6 +/- 3.6% and had no effect on coronary resistance, indicating that viscosity per se did not contribute to the negative inotropic effects or the reduction in coronary resistance. Hypertonic solutions, including conventional RCM, reduce coronary resistance as a result of their hyperosmolality Negative inotropic effects, however, are more related to high ionic concentration than to osmolality.

Adenine Nucleotides↗

The effect of low-osmolar ionic and nonionic contrast media on human blood viscosity, erythrocyte morphology, and aggregation behavior.

The effects of three low-osmolar radiographic contrast media (CM)--two nonionic (iohexol, iopamidol) and one ionic (ioxaglate)--on red blood cell (RBC) morphology and aggregation behavior, as well as on blood and plasma viscosity, have been studied. Blood taken from normal, healthy individuals and from patients with uremia was investigated. The authors controlled for the effects of dilution, ionic and nonionic hyperosomolality, and specific chemotoxicity. With ioxaglate, the normal biconcave RBC morphology was fairly well maintained. Iohexol produced a mixture of more-or-less normal cells and echinocytes, while iopamidol yielded only echinocytes. Irregular RBC aggregates have been frequently associated with the presence of echinocyte morphology. In the case of ioxaglate, the capacity of normal blood for rouleaux formation was preserved. This appeared to be compatible with an only moderate decrease in low shear viscosity values. In comparison to the normal control group, RBCs from patients with uremia were clearly more sensitive for hyperosmolar stress. It can be concluded that, in contrast to the nonionic CM, the ionic dimeric compound ioxaglate seems to protect human RBCs against hyperosmolar stress by a mechanism unknown at the present.

Blood Viscosity↗

Iosimenol, a low-viscosity nonionic dimer: preclinical physicochemistry, pharmacology, and pharmacokinetics.

RATIONALE AND OBJECTIVES: Newer radiologic techniques require fast bolus injections and thus low-viscosity, high-concentration, well-tolerated contrast media (CM), especially in vulnerable patients. To this end, we designed and developed iosimenol, a novel isotonic nonionic dimer, and have conducted tests to enable its clinical evaluation. METHODS: Standard physicochemical methods were used. Effects on erythrocyte morphology and coagulation were investigated in human and rat blood. Neural tolerance was assessed by behavioral tests in rats after intracisternal injection. Immunosensitizing potential was evaluated by the skin sensitization test in guinea pigs and by the popliteal lymph node assay in rats. Pharmacokinetics and biotransformation were investigated in rats and dogs. RESULTS: Iosimenol is extremely hydrophilic, it is less viscous than any other isotonic CM, has little effect on erythrocytes and blood coagulation, and has good neural tolerance. No immunosensitizing effect was found in validated animal models. Pharmacokinetics are identical with other angio- and urographic CM. CONCLUSIONS: Iosimenol is the only CM which, although isotonic, affords, unlike current nonionic dimers, at the same iodine concentration the low viscosity of monomeric, nonionic agents, which are all hypertonic. Iosimenol's pharmacologic characteristics closely resemble those of iotrolan and iodixanol.

Animals↗

Viscosity of interfacial water.

The effective shear viscosity and frequency-dependent dynamic oscillatory shear spectra of water containing monovalent or divalent ions (ionic strength 25 mM), confined between mica crystals at 1-2 water molecules thickness, oscillated with twist angle with the period expected for the pseudohexagonal surface lattice. The effective viscosity varied by orders of magnitude as the twist angle was changed. Confinement appeared to imprint lateral spatial correlation on the ultrathin liquid, the more so the better the confining lattices were aligned, but the oft-proposed "ice structure" was not observed dynamically.

Viscosity↗