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Asbestos directly increases lung epithelial permeability.

Asbestos causes the fibrotic lung disease asbestosis, but the biologic basis for this is unknown. Lung epithelial dysfunction including increased permeability is hypothesized to contribute to lung scarring in other forms of pulmonary fibrosis. Lung epithelial permeability is increased in both animals and humans exposed to asbestos. It is not known whether the increased epithelial permeability results from direct effects of asbestos or occurs as a result of the inflammatory reaction to asbestos fibers. To address this question we used a cultured human lung epithelial model, and we measured the direct effect of asbestos on lung epithelial barrier integrity as measured by mannitol permeability. We exposed the monolayer to chryogenically ground, respirable-sized chrysotile asbestos particles. This chrysotile asbestos caused a dose- and time-dependent increase in mannitol permeability across the epithelial monolayer. Increased mannitol permeability occurred both in the presence and in the absence of serum, was not due to cytotoxicity as measured by lactate dehydrogenase release, and was not associated with altered actin cytoskeleton at the light microscopic level. Permeability to 70 kDa neutral dextran also increased after asbestos exposure; however, the absolute permeability to dextran was less than mannitol permeability. Neither latex beads nor tantalum caused any change in permeability, suggesting that our findings are not explained by nonspecific effects of particles. Increased permeability did not reverse in the continued presence of asbestos and persisted even after removing the asbestos. Finally, surface-bound iron did not appear to be necessary for this effect because neither chelating iron with deferoxamine nor iron-loading the asbestos altered the effect on mannitol permeability. These results show that asbestos has direct effects on lung epithelial permeability. Together with the recent observation that asbestos directly increases epithelial fibrinolytic activity, our results suggest a novel mechanism for asbestos-induced lung injury.

Asbestos↗

Effect of reactive oxygen metabolites on endothelial permeability: role of nitric oxide and iron.

OBJECTIVE: We evaluated the effects of the xanthine oxidase (XO)-derived reactive oxygen metabolites on the permeability of bovine pulmonary artery-endothelial monolayers and examined how iron and nitric oxide (NO) participate in these changes in permeability. METHODS: Permeability was measured using a cell-column chromatographic method in which monolayers were exposed to combinations of agents. RESULTS: Exposure of monolayers to a superoxide/peroxide generator, xanthine (X, 0.1 mM)/XO (25 mU/mL), increased solute permeability after 10 minutes, but the same dose of either X or XO alone did not. Exposure of monolayers to peroxide (0.1 mM) also increased permeability, but only after 70 minutes. This X/XO permeability was attenuated by either catalase, superoxide dismutase, methionine (1 mM), an oxy-radical scavenger, or desferrioxamine (0.1 mM), an iron chelator. Spermine NONOate (SNO), an NO donor, attenuated X/XO permeability at 0.1 mM, but this protection was not significant at 0.01 or 1 mM. Spermine NONOate (0.1 mM) did not alter the permeability produced by 0.1 mM peroxide. L-N5-(1-iminoethyl)-ornithine (10 microM), an NO synthase inhibitor, completely blocked peroxide-, and partially attenuated X/XO-mediated permeability. However, 3-morphosynodiomine (SIN-1, 1 mM) plus catalase (1,000 U/mL), a peroxynitrite generator, did not alter permeability. CONCLUSIONS: Xanthine/Xanthine Oxidase permeability involves peroxide, superoxide, oxy-radicals, and iron. Endogenous NO may regulate peroxide-, but not superoxide-mediated permeability. The protective effects of exogenous NO on the X/XO permeability may represent interactions between superoxide, peroxide, and cell surface-bound iron.

Animals↗

[Use of sucrose permeability test (SaLM) for detection of lesions of upper gastrointestinal tract mucosa in upper dyspepsia patients--a pilot study].

INTRODUCTION: Endoscopy, a golden standard with its high diagnostic value, is an invasive and unpleasant method as far as patients are concerned. So far there has been no available non-invasive test in the Czech Republic capable of distinguishing between heavy (i.e. peptic ulcer) and light (i.e. portal gastropathy) lesions of upper gastrointestinal mucosa. AIMS: In this pilot study we decided to test our modification of sucrose permeability test (SaLM test) on upper dyspepsia patients in our conditions. We first needed to compare the results of intestinal permeability obtained from the studied test (containing sucrose, a so called SaLM test) with a formerly established intestinal permeability test (containing glucose, a so called LaMa test) to know, if the new test could replace the old one. Then we wanted to find normal values of sucrose permeability, find a relationship between sucrose permeability and endoscopically verified damage to upper gastrointestinal mucosa and calculate sensitivity and specificity of SaLM test using results of gastroduodenoscopy. After that we tried to suggest possible future benefits of the test for clinical praxis. MATERIALS AND METHODS: A group of 10 young healthy volunteers underwent both SaLM and LaMa tests, which were made methodically indentical to compare the tests as to the results of intestinal permeability. The probands ingested SaLM solution with the following composition: sucrose (25.0 g), lactulose (10.0 g), mannitol (2.0 g), xylose (2.0 g) and water (up to 100 ml). Urine was collected for five hours and the samples were analysed using gas chromatography. From the results normal value of sucrose permeability was calculated, too. After that, 28 patients with upper dyspepsia were included in the study. They were divided into two groups (a group of light lesions with 9 patients and a group of heavy lesions counting 19 patients) according to gastroscopical findings. We compared the results among the three groups. RESULTS: In our volunteers, the intestinal permeability values using LaMa and SaLM tests showed normal distributions. No statistically significant difference (p < 0.05) was found between the tests in regard to the intestinal permeability. The normal value of sucrose permeability was found to be up to 0.10% of the amount taken orally. The permeability for sucrose was significantly higher (p < 0.01) in patients with heavy lesions (0.527 +/- 0.414) versus those with light ones (0.178 +/- 0.090). Moreover, the latter had their sucrose permeability values significantly higher than healthy volunteers (0.088 +/- 0.067), (p < 0.05). Sensitivity and specificity of the test for heavy upper gastrointestinal mucosal damage was 0.95 and 0.33, respectively. CONCLUSION: SaLM test could replace LaMa test without having a significant effect on the intestinal permeability results. It is feasible to study SaLM test on bigger sets of patients and specify it in more detail, since the results of our pilot study (in accordance with many other studies) make it promising for various clinical applications (i.e. in upper dyspepsia patients it might help in deciding about urgency and reasonability of gastroduodenoscopy).

Adult↗

Effects of aspirin and Helicobacter pylori on the gastroduodenal mucosal permeability to sucrose.

BACKGROUND: A non-invasive marker is needed to identify patients with significant gastrointestinal injury due to non-steroidal anti-inflammatory drugs. Gastrointestinal permeability to sucrose has been suggested as such a test. AIMS: To assess the utility of sucrose permeability as a marker of gastroduodenal mucosal injury after single and multiple doses of aspirin, to identify the site of increased sucrose permeability, to explore the relation between sucrose permeability and endoscopic findings, and to evaluate whether Helicobacter pylori infection influenced gastroduodenal sucrose permeability. METHODS: After a fasting urine was obtained, 500 ml of a solution containing 100 g of sucrose was ingested. Urine was collected for five hours and assayed for sucrose by high performance liquid chromatography. Sucrose permeability was also assessed 20 minutes after ingestion of 650 mg of aspirin and eight to 12 hours after a 72 hour course of 650 mg aspirin four times a day. The site of increased permeability was identified after pyloric occlusion with a double balloon tube. RESULTS: Thirty seven healthy volunteers participated. Sucrose permeability (mean (SEM)) increased after both single (195.2 (27) mg and multiple (196.4 (31) mg) doses of aspirin compared with baseline (53.7 (10) mg; p < 0.0005). Balloon pyloric occlusion confirmed that the site of increased sucrose permeability was the stomach. The effect of aspirin on sucrose permeability was similar in those with and without H pylori infection. CONCLUSION: These results confirm the use of sucrose permeability as a marker of aspirin induced gastroduodenal mucosal injury and identify the stomach as the major site of increased permeability. H pylori infection does not seem to change gastric mucosal sucrose permeability either at baseline or after ingestion of aspirin.

Adult↗

Mechanism of the nitric oxide-induced blockade of collecting duct water permeability.

Nitric oxide has a diuretic effect in vivo. We have shown that nitric oxide inhibits antidiuretic hormone-stimulated osmotic water permeability in the collecting duct; however, the mechanism by which this occurs is unknown. We hypothesized that inhibition of antidiuretic hormone-stimulated water permeability by nitric oxide in the collecting duct is the result of activation of cGMP-dependent protein kinase, which in turn decreases intracellular cAMP. To test this hypothesis, we microperfused cortical collecting ducts. Antidiuretic hormone-stimulated water permeability was 317 +/- 47 microm/s (P < .001). Addition of spermine NONOate, a nitric oxide donor, to the bath decreased water permeability to 74 +/- 38 microm/s (P < .002). In the presence of LY 83583, an inhibitor of soluble guanylate cyclase, spermine NONOate did not change water permeability. Addition of spermine NONOate increased cGMP production (P < .01). In the presence of the cGMP-dependent protein kinase inhibitor, spermine NONOate did not change water permeability. Since antidiuretic hormone increases water permeability by increasing cAMP, we hypothesized that nitric oxide inhibits water permeability by decreasing cAMP. In tubules pretreated with antidiuretic hormone, intracellular cAMP was 18.9 +/- 3.9 fmol/mm. In tubules treated with antidiuretic hormone and spermine NONOate, cAMP was 9.3 +/- 1.7 fmol/mm (P < .03). We also examined the effect of spermine NONOate on dibutyryl-cAMP-stimulated water permeability. In the presence of dibutyryl-cAMP, water permeability was 388 +/- 30 microm/s. Addition of spermine NONOate had no significant effect on water permeability. Time controls and inhibitors by themselves did not change antidiuretic hormone-stimulated water permeability. We concluded that nitric oxide decreases antidiuretic hormone-stimulated water permeability by increasing cGMP via soluble guanylate cyclase, activating cGMP-dependent protein kinase and decreasing cAMP.

Adsorption↗

Caco-2 permeability of weakly basic drugs predicted with the double-sink PAMPA pKa(flux) method.

The aim of this study was to analyze pH-dependent permeability of cationic drugs in Caco-2 cell monolayers using the pK(a)(flux) method and to correlate the results with those obtained in PAMPA (parallel artificial membrane permeability assay). The pH-dependent permeability of verapamil and propranolol was studied in Caco-2 cell monolayers. The data were subsequently processed using software developed for the PAMPA pK(a)(flux) method. Literature values for an additional nine cationic drugs were also analyzed. Double-Sink PAMPA data were also obtained for the same cationic drugs, to compare with the Caco-2 data. The Algorithm Builder program was then used to develop a predictive model of Caco-2 permeability based on PAMPA permeability and calculated Abraham molecular descriptors. From the relationship between permeability and pH it was shown that in PAMPA only the uncharged form of the drugs permeated across the membrane barrier, while charged and ionized forms of the drugs were significantly permeable in Caco-2. The charged-form permeability, P(i), was therefore determined and subsequently subtracted from all permeability coefficients in Caco-2 prior to the comparison with PAMPA. The resulting intrinsic permeability coefficients (P(o)) obtained in Caco-2 were successfully related to those derived from the PAMPA model. In this study we have shown that permeability coefficients obtained in PAMPA can predict the passive transcellular permeability in Caco-2.

Caco-2 Cells↗

Enhanced oral paclitaxel absorption with vitamin E-TPGS: effect on solubility and permeability in vitro, in situ and in vivo.

Solubility and permeability being important determinants of oral drug absorption, this study was aimed to investigate the effect of D-alpha-tocopheryl polyethylene glycol 1000 succinate (TPGS) on the solubility and intestinal permeability of paclitaxel in vitro, in situ and in vivo, in order to estimate the absorption enhancement ability of TPGS. Aqueous solubility of paclitaxel is significantly enhanced by TPGS, where a linear increase was demonstrated above a TPGS concentration of 0.1 mg/ml. Paclitaxel demonstrated asymmetric transport across rat ileum with significantly greater (26-fold) basolateral-to-apical (B-A) permeability than that in apical-to-basolateral (A-B) direction. Presence of P-glycoprotein (P-gp) inhibitor, verapamil (200 microM), diminished asymmetric transport of paclitaxel suggesting the role of P-gp-mediated efflux. TPGS showed a concentration-dependent increase in A-B permeability and decreased B-A permeability. The maximum efflux inhibition activity was found at a minimum TPGS concentration of 0.1 mg/ml, however, further increase in TPGS concentration resulted in decreased A-B permeability with no change in B-A permeability. Thus, the maximum paclitaxel permeability attained with 0.1 mg/ml TPGS was attributed to the interplay between TPGS concentration dependent P-gp inhibition activity and miceller formation. In situ permeability studies in rats also demonstrated the role of efflux in limiting permeability of paclitaxel and inhibitory efficiency of TPGS. The plasma concentration of [14C]paclitaxel following oral administration (25 mg/kg) was significantly increased by coadministration of TPGS at a dose of 50 mg/kg in rats. Bioavailability is enhanced about 4.2- and 6.3-fold when [14C]paclitaxel was administrated with verapamil (25 mg/kg) and TPGS, respectively, as compared to [14C]paclitaxel administered alone. The effect of verapamil on oral bioavailability of [14C]paclitaxel was limited relative to the TPGS, consistent with the in vitro solubility and permeability enhancement ability of TPGS. In conclusion, the current data suggests that the coadministration of TPGS may improve the bioavailability of BCS class II-IV drugs with low solubility and/or less permeable as a result of significant P-gp-mediated efflux.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Vaginal-cervical epithelial permeability decreases after menopause.

OBJECTIVE: To determine the effects of menopause (aging and E) on vaginal-cervical epithelial paracellular permeability. DESIGN: Experimental, basic clinical research. SETTING: Academic research environment. PATIENT(S): Premenopausal, perimenopausal, and postmenopausal women, aged 35-65 years. INTERVENTION(S): Primary to tertiary cultures of normal human ectocervical epithelial cells on filters. Cells were outgrown from surgically discarded ectocervical minces. MAIN OUTCOME MEASURE(S): Changes in paracellular permeability were determined as changes in transepithelial electrical conductance and pyranine permeability. RESULT(S): [1] Levels of transepithelial electrical conductance and pyranine permeability decreased as women's age advanced. [2] Removal of E from the culture medium decreased paracellular permeability. Treatment of cells in vitro with 10 nmol/L 17beta-E2 increased transepithelial electrical conductance and pyranine permeability, but the effects were additive to the age-related decrease in permeability. [3] Coadministration of 100 nmol/L tamoxifen blocked the E increase in paracellular permeability in cells of both premenopausal and postmenopausal women. CONCLUSION(S): [1] Aging and E deficiency decrease independently vaginal-cervical epithelial paracellular permeability. [2] The E increase in vaginal-cervical epithelial paracellular permeability in cells of postmenopausal women is mediated by the E receptor. [3] The E increase in vaginal-cervical epithelial paracellular permeability in cells of postmenopausal women is masked by age-related increase in the tight junctional resistance, leading to overall decrease in paracellular permeability.

Adult↗

[Increased long-term permeability of transjugular intrahepatic portosystemic shunt (TIPS) in 218 cirrhotic patients, with strict monitoring].

OBJECTIVE: To measure the impact of strict monitoring on long term permeability of TIPS. METHODS: From November 1991 to December 2002, 208 patients (152 men and 66 women managed for the placing of a TIPS following failure with sclerotherapy or refractory ascites were included. The permeability of the prosthesis was controlled on the surgical piece. Revision of the TIPS was performed at the same time as the diagnosis of obstruction using trans-jugular angiography. The TIPS permeability was classified into 3 categories: primary permeability (duration of permeability recorded up until any intervention); assisted primary permeability (duration of continuous permeability with or without percutaneous intervention); secondary permeability (total duration of permeability with or without treated occlusion). RESULTS: Among the 218 patients in the study, 108 had been monitored for less than one year (49.5%), 29 for between 1 and 2 years (13.5%), 27 between 2 and 3 years (12.5%), 16 between 3 and 4 years (7.5%), 15 between 4 and 5 years (7%) and 23 for more than 5 years (10%). The mean follow-up period was of 24.1 +/- 27.2 months (median: 13.7). Current survival of these patients was of 81.2 +/- 2.9% at 1 year, 62.9 +/- 4.2% at 3 years and 52 +/- 4.9% at 5 years. Thirty-four patients were lost to follow-up (16%), after a mean follow-up of 22.9 +/- 26.7 months (median: 9.7). All these patients exhibited a permeable TIPS during their last control. One hundred and thirty-five patients (62%) had never presented obstruction of the TIPS, with a mean follow-up of 19.5 +/- 26.2 months (median: 7.4); 83 patients (38%) exhibited 117 episodes of obstruction; 24 two episodes, 7 three and 3 more than three; 4 exhibited thrombosis provoked by an invalidating encephalopathy and contraindicating transplantation, 2 of them following a first episode of thrombosis. The current primary, primary assisted and secondary permeability rates were respectively: 67.7 +/- 3 and 514 +/- 3.7%, 79.9 +/- 2.3% and 69.3 +/- 3.4%, 94.4 +/- 1.8% and 91 +/- 2.6% at 1 and 3 years (p = 0.0001, Log Rank = 65.3). Univariate analysis revealed a relationship between the onset of an episode of early or late obstruction and the patients' age at the time the TIPS was inserted, Child's score before, and the pre- and post-surgical gradient. In multivariate analysis, none of these elements reached significance. CONCLUSION: Although the use of TIPS in the treatment of portal hypertension follows the course of development of all surgery towards minimally invasive methods, it should not be considered as a surgical portal shunt or as a permanent treatment: long-term permeability is only obtained with strict and regular monitoring and the possibility of rapid intervention in the case of obstruction.

Adult↗

The suitability of an in situ perfusion model for permeability determinations: utility for BCS class I biowaiver requests.

The FDA has published recommendations for sponsors who wish to request a waiver of in vivo bioavailability (BA) or bioequivalence (BE) studies for immediate release (IR) solid oral dosage forms based on the Biopharmaceutics Classification System (BCS). Biowaivers can be requested for IR formulations in which the active ingredient is shown to be a BCS class I drug: that is, a drug showing high permeability and high solubility over a pH range of 1-7.5. For permeability determinations, a variety of experimental methods can be used, such as the rat in situ single pass perfusion or Caco-2 cell culture models, once the suitability of the particular method is established. Following the recommended procedure for assessing the suitability of permeability determinations, we determined the permeability of 20 test drugs using the in situ single pass perfusion model in rats. The test compounds were coperfused through jejunal intestinal segments with an internal permeability reference standard (metoprolol) over a 90 min time period. Sample analysis was performed by HPLC, and the ratio of the effective permeability, Peff (cm/s), of test compound to that of metoprolol was determined. To address the question of test drug permeabilities that approach that of the internal standard, we propose that a statistical analysis such as the "0.8-1.25 rule" used for in vivo or in vitro bioequivalence studies provide guidance for permeability classification using the in situ single pass perfusion model. We developed a method using the 90% confidence interval of the permeability ratio of the test to internal reference standard in order to differentiate between high and low permeability compounds. This analysis allowed for the proper permeability classification of all of the test compounds and suggests a robust means for assessing drug permeability classification.

Animals↗

Tracheal and bronchoalveolar permeability changes in rats inhaling oxidant atmospheres during rest or exercise.

Permeability of tracheal and bronchoalveolar airways of rats was measured and used to examine the effects of inhaled oxidant-containing atmospheres. The atmospheres studied were (a) ozone (O3) at 0.6 ppm (1.2 mg/m3) or 0.8 ppm (1.6 mg/m3); (b) nitrogen dioxide (NO2) at 6 ppm (11.3 mg/m3) or 12 ppm (22.6 mg/m3); (c) O3 + NO2 at 0.6 ppm (1.2 mg/m3) and 2.5 ppm (4.7 mg/m3), respectively; and (d) a 7-component particle and gas mixture (complex atmosphere) representing urban air pollution in a photochemical environment. The rats were exposed for 2 h. The effects of exercise during exposure were evaluated by exposing additional groups in an enclosed treadmill. Exposure of resting rats to 0.8 ppm O3 increased tracheal permeability to DTPA and bronchoalveolar permeability to diethylenetriamine pentaacetate (DTPA) and bovine serum albumin (BSA) at 1 h after the exposure. Bronchoalveolar, but not tracheal, permeability remained elevated at 24 h after the exposure. Exercise during exposure to O3 increased permeability to both tracers in the tracheal and the bronchoalveolar zones, and prolonged the duration of increased permeability in the tracheal zone from 1 h to 24 h, and in the bronchoalveolar zone from 24 h to 48 h. Permeability in the tracheal and bronchoalveolar zones of rats exposed at rest to 6 or 12 ppm NO2 did not differ from controls. However, rats exposed during exercise to 12 ppm NO2 for 2 h developed a significant increase in tracheal and bronchoalveolar permeability to DTPA and BSA at 1 h, but not at 24 or 48 h, after exposure. Exposure at rest to 0.6 ppm O3 plus 2.5 ppm NO2 significantly increased bronchoalveolar permeability at 1 and 24 h after exposure, although exposure at rest to 0.6 ppm O3 alone increased bronchoalveolar permeability only at 1 h after exposure. Exposure to O3 + NO2 during exercise led to significantly greater permeability to DTPA than did exercising exposure to O3 alone. Resting rats exposed to a complex gas/aerosol atmosphere composed of the above O3 and NO2 concentrations, plus 5 ppm (13.1 mg/m3) sulfur dioxide (SO2) and an aerosol of insoluble colloidal Fe2O3 with an aerosol of manganese, ferric, and ammonium salts, demonstrated increased permeability at 1 and 24 h after exposure. Nitric acid vapor was formed in both the O3 + NO2 atmosphere and the complex gas/aerosol atmosphere.(ABSTRACT TRUNCATED AT 400 WORDS)

Administration, Inhalation↗

Diffusional water permeability of human erythrocytes and their ghosts.

The diffusional water permeability of human red cells and ghosts was determined by measuring the rate of tracer efflux by means of an improved version of the continuous flow tube method, having a time resolution of 2-3 ms. At 25 degrees C, the permeability was 2.4 x 10(3) and 2.9 x 10(3) cm s-1 for red cells and ghosts, respectively. Permeability was affected by neither a change in pH from 5.5 to 9.5, nor by osmolality up to 3.3 osmol. Manganous ions at an extracellular concentration of 19 mM did not change diffusional water permeability, as recently suggested by NMR measurements. A "ground" permeability of 1 x 10(3) cm s-1 was obtained by inhibition with 1 mM of either p- chloromercuribenzoate (PCMB) or p-chloromercuribenzene sulfonate (PCMBS). Inhibition increased temperature dependence of water permeability for red cells and ghosts from 21 to 30 kJ mol-1 to 60 kJ mol-1. Although diffusional water permeability is about one order of magnitude lower than osmotic permeability, inhibition with PCMB and PCMBS, temperature dependence both before and after inhibition, and independence of osmolality showed that diffusional water permeability has qualitative features similar to those reported for osmotic permeability, which indicates that the same properties of the membrane determine both types of transport. It is suggested that the PCMB(S)-sensitive permeability above the ground permeability takes place through the intermediate phase between integral membrane proteins and their surrounding lipids.

Cell Membrane Permeability↗

Effect of cryoprotectant solutes on water permeability of human spermatozoa.

Osmotic permeability characteristics and the effects of cryoprotectants are important determinants of recovery and function of spermatozoa after cryopreservation. The primary purpose of this study was to determine the osmotic permeability parameters of human spermatozoa in the presence of cryoprotectants. A series of experiments was done to: 1) validate the use of an electronic particle counter for determining both static and kinetic changes in sperm cell volume; 2) determine the permeability of the cells to various cryoprotectants; and 3) test the hypothesis that human sperm water permeability is affected by the presence of cryoprotectant solutes. The isosmotic volume of human sperm was 28.2 +/- 0.2 microns3 (mean +/- SEM), 29.0 +/- 0.3 microns3, and 28.2 +/- 0.4 microns3 at 22, 11, and 0 degrees C, respectively, measured at 285 mOsm/kg via an electronic particle counter. The osmotically inactive fraction of human sperm was determined from Boyle van't Hoff (BVH) plots of samples exposed to four different osmolalities (900, 600, 285, and 145 mOsm/kg). Over this range, cells behaved as linear osmometers with osmotically inactive cell percentages at 22, 11, and 0 degrees C of 50 +/- 1%, 41 +/- 2%, and 52 +/- 3%, respectively. Permeability of human sperm to water was determined from the kinetics of volume change in a hyposmotic solution (145 mOsm/kg) at the three experimental temperatures. The hydraulic conductivity (Lp) was 1.84 +/- 0.06 microns.min-1.atm-1, 1.45 +/- 0.04 microns.min-1.atm-1, and 1.14 +/- 0.07 microns.min-1.atm-1 at 22, 11, and 0 degrees C, respectively, yielding an Arrhenius activation energy (Ea) of 3.48 kcal/mol. These biophysical characteristics of human spermatozoa are consistent with findings in previous reports, validating the use of an electronic particle counter for determining osmotic permeability parameters of human sperm. This validated system was then used to investigate the permeability of human sperm to four different cryoprotectant solutes, i.e., glycerol (Gly), dimethylsulfoxide (DMSO), propylene glycol (PG), and ethylene glycol (EG), and their effects on water permeability. A preloaded, osmotically equilibrated cell suspension was returned to an isosmotic medium while cell volume was measured over time. A Kedem-Katchalsky model was used to determine the permeability of the cells to each solute and the resulting water permeability. The permeabilities of human sperm at 22 degrees C to Gly, DMSO, PG, and EG were 2.07 +/- 0.13 x 10(-3) cm/min, 0.80 +/- 0.02 x 10(-3) cm/min, 2.3 +/- 0.1 x 10(-3) cm/min, and 7.94 +/- 0.67 x 10(-3) cm/min, respectively. The resulting Lp values at 22 degrees C were reduced to 0.77 +/- 0.08 micron.min-1.atm-1, 0.84 +/- 0.07 micron.min-1.atm-1, 1.23 +/- 0.09 microns.min-1.atm-1, and 0.74 +/- 0.06 micron.min-1.atm-1, respectively. These data support the hypothesis that low-molecular-weight, nonionic cryoprotectant solutes affect (decrease) human sperm water permeability.

Cell Membrane Permeability↗

Evaluation of early gastric mucosal permeability induced by central thyrotropin-releasing hormone administration.

Accumulating evidence suggests that central thyrotropin-releasing hormone (TRH) administration induces gastric erosion 4 h after administration through the vagal nerves. However, early changes in the gastric mucosa during these 4 h have not been described. To assess early changes in the gastric mucosa after intracisternal injection of a stable TRH analog, pGlu-His-(3,3'-dimethyl)-ProNH2 (RX-77368), we measured the blood-to-lumen 51Cr-labeled EDTA clearance and examined the effects of vagotomy, atropine, omeprazole, and hydrochloric acid (HCl) on RX-77368-induced mucosal permeability. A cytoprotective dose of RX-77368 (1.5 ng) did not increase mucosal permeability. However, higher doses significantly increased mucosal permeability. Permeability peaked within 20 min and gradually returned to control levels in response to a 15-ng dose (submaximal dose). Increased mucosal permeability was not recovered after a 150-ng dose (ulcerogenic dose). This increase in permeability was inhibited by vagotomy or atropine. Intragastric perfusion with HCl did not change the RX-77368 (15 ng)-induced increase in permeability, but completely inhibited the recovery of permeability after the peak. Pretreatment with omeprazole did not change the RX-77368 (15 ng)-induced increase in permeability, but quickened the recovery of permeability after the peak. These data indicate that the RX-77368-induced increase in permeability is mediated via the vagal-cholinergic pathway and is not a secondary change in RX-77368-induced acid secretion. Inhibited recovery of permeability on exposure to an ulcerogenic RX-77368 dose or on exposure to HCl plus a submaximal dose of RX-77368 may be crucial for the induction of gastric mucosal lesions by central RX-77368 administration.

Animals↗

Isoproterenol antagonizes endothelial permeability induced by thrombin and thrombin receptor peptide.

We determined whether 1) amino-terminal peptides of the thrombin receptor increase endothelial permeability to a comparable extent as alpha-thrombin does, 2) isoproterenol attenuates the thrombin-induced increase in endothelial permeability by an antagonistic action to that of thrombin or by lowering baseline permeability, and 3) isoproterenol decreases permeability via stimulation of the beta 2-adrenergic receptor. Permeability across monolayers of bovine pulmonary artery endothelial cells (CCL 209) was assessed by the clearance of 125I-labeled albumin. Thrombin receptor peptides increased permeability at 1 microM but required a dose of between 10 and 100 microM to equal the permeability response of 1 microM alpha-thrombin. Dose-response experiments demonstrated that isoproterenol antagonized the action of alpha-thrombin and a thrombin receptor peptide on endothelial permeability and that it lowered baseline permeability. This permeability-decreasing action of isoproterenol occurred via stimulation of the beta 2-adrenergic receptor. Terbutaline, a partial beta 2-agonist, prevented the thrombin-induced permeability, but dobutamine, a partial beta 1-agonist, did not. The active stereoisomer of terbutaline and the racemic form mimicked the action of isoproterenol, but the inactive stereoisomer had no effect. ICI-118,551, a specific beta 2-receptor antagonist, prevented the permeability-decreasing action of isoproterenol, whereas ICI-89,406, a specific beta 1-receptor antagonist, did not. Competitive binding studies of 125I-pindolol with ICI-118,551 or ICI-89,406 demonstrated the presence of beta-adrenergic receptors, predominantly beta 2-receptors, on cell membrane homogenates.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenergic beta-Agonists↗

An investigation of the role of glutathione in increased epithelial permeability induced by cigarette smoke in vivo and in vitro.

Airspace epithelial permeability is known to increase in cigarette smokers. To study the role of the antioxidant reduced glutathione (GSH) in this phenomenon, we used an in vitro model of the epithelial permeability of a monolayer of human type II alveolar epithelial cells (A549 cell line). Both whole (WSC) and vapor (VSC) smoke condensates induced a recoverable, concentration-dependent increase in epithelial permeability to 125iodine-labeled bovine serum albumin (125IBSA), associated with a profound fall in intracellular GSH. Buthionine sulfoximine (BSO), a GSH synthesis inhibitor, decreased GSH levels in A549 epithelial cells, significantly increased A549 epithelial cell permeability, and enhanced both WSC and VSC-induced A549 epithelial cell permeability. Co-culturing epithelial cells and GSH (500 microM) reduced WSC-induced, but not VSC-induced A549 epithelial cell permeability. Increasing intracellular GSH also ameliorated the smoke-induced increased epithelial permeability. Concentrations of cigarette smoke condensate of < 20% increased A549 epithelial cell permeability without associated cell detachment and lysis, which was also the case with BSO-induced increased epithelial permeability. WSC and VSC, instilled intratracheally, significantly increased rat lung epithelial permeability to 125IBSA, 6 h postinstillation, associated with a significant recruitment of neutrophils into the airspaces. This was associated with a small increase in GSH in the lung tissue of VSC-treated rats. However, both WSC and VSC markedly reduced GSH in bronchoalveolar lavage (BAL) fluid. Reduction in lung GSH to 95% but not to 68% of control values by BSO increased lung epithelial permeability in vivo. However, there was no additive effect on epithelial permeability of WSC and BSO.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

The role of tumor necrosis factor in increased airspace epithelial permeability in acute lung inflammation.

Increased airspace epithelial permeability is an early event in lung inflammation and injury. In this study, we have developed a rat model to study the mechanisms of the epithelial permeability to 125iodine-labeled bovine serum albumin (125I-BSA), instilled intratracheally during acute lung inflammation. Epithelial permeability was measured as the percentage of instilled 125I-BSA appearing in the blood. The increase in epithelial permeability induced by intratracheal instillation of heat-killed Corynebacterium parvum produced a peak influx of neutrophils into the bronchoalveolar space at 16 h, which occurred after the peak increase in epithelial permeability (8 h). The increased epithelial permeability induced by C. parvum did not appear to be protease- or oxidant-mediated. Depletion of peripheral blood neutrophils was achieved by an intravenous injection of anti-neutrophil polyclonal antibody. The consequent profound reduction in neutrophil and macrophage influx into the airspaces 8 h after instillation of C. parvum reduced the epithelial permeability to control values. Bronchoalveolar lavage (BAL) leukocytes from rats 8 h, but not 16 h, after treatment with C. parvum caused a modest increase in epithelial permeability when re-instilled intratracheally into control rat lungs. Separation of the leukocytes before re-instillation indicated that macrophages rather than neutrophils were predominantly responsible for the increased epithelial permeability. The presence of dramatically increased levels of tumor necrosis factor (TNF) in BAL 8 h in contrast to a slight increase in BAL 16 h after C. parvum, the release of TNF from 8 h macrophages, the increased epithelial permeability induced by TNF in epithelial monolayers in vitro, and the inhibition of C. parvum-induced epithelial permeability by TNF antibody support the premise that TNF is a major player in the increased epithelial permeability that occurs during C. parvum-induced acute alveolitis.

Acute Disease↗

Dentin morphology and permeability after brushing with different toothpastes in the presence and absence of smear layer.

BACKGROUND: The purpose of this study was to evaluate the morphology and permeability of dentin after brushing with different toothpastes in the presence and absence of smear layers. METHODS: Dentin discs were prepared from extracted third molars. Dentin permeability was measured using a hydraulic pressure apparatus working at 70 cm H2O pressure. Dentin was treated with 0.5 M EDTA for 5 minutes and washed to remove a smear layer and to establish the maximum permeability of each dentin disc, which was expressed as 100%. A new smear layer was then created on the upper surface using a #400 carbide paper under water for 30 seconds. Dentin permeability of the smear layer-covered dentin was measured and expressed as a percentage of the maximum permeability of that specimen, permitting each specimen to serve as its own control. Each sample was then brushed by a mechanical device under water for 3 minutes with constant pressure of 250 g using a medium toothbrush and permeability remeasured. Finally, 1 of 5 different toothpastes was applied on the dentin and brushed for 3 minutes. In another group, the same procedures were performed with the exception of the smear layer production, so it was possible to calculate changes in the permeability of dentin with open tubules following brushing. Scanning electron microscopic (SEM) examination of dentin was obtained before and after treatments with brushing and toothpastes. RESULTS: Dentin permeability was reduced by brushing procedures when the smear layer was absent, but it was increased when the smear layer was present. Toothpaste application reduced dentin permeability when no smear layer was present on the top of the surface, but modified and increased permeability of samples with smear layers. SEM observations demonstrated the presence of dentifrice particles on dentin surfaces and inside dentinal tubules, and this may be responsible for the observed reductions in permeability. Smear plugs produced during dentin brushing were not removed by the dentifrices. CONCLUSIONS: Dentin permeability and morphology are significantly affected by toothbrushing and by the type of dentifrice used. The presence of smear plugs in the dentin may decrease severity.

Adult↗