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Oleic acid inhibits alveolar fluid reabsorption: a role in acute respiratory distress syndrome?

Levels of oleic acid (OA) are elevated in plasma and bronchoalveolar lavage fluids of patients with acute respiratory distress syndrome (ARDS). OA is also widely used to provoke edema, by unknown mechanisms, in experimental models of ARDS. We investigated the impact of intravascularly applied OA on epithelial lining fluid balance. OA (25 microM) dramatically blocked active transepithelial (22)Na(+) transport (by 92%) in an isolated, ventilated, and perfused rabbit lung model, provoking alveolar edema, assessed by increases in lung weight and epithelial lining fluid volume. OA did not alter epithelial permeability, measured by [(3)H]mannitol and fluorescently labeled albumin flux, but did increase endothelial permeability, assessed by capillary filtration coefficient. In A549 cells, OA completely blocked amiloride-sensitive sodium currents measured by patch clamp, and also largely abrogated ouabain-sensitive Na(+),K(+)-ATPase-mediated (86)Rb(+) uptake. Although OA did not alter epithelial sodium channel or Na(+),K(+)-ATPase surface expression, it covalently associated with both molecules and directly, dramatically, and dose-dependently inhibited the catalytic activity of purified Na(+),K(+)-ATPase. Therefore, OA impaired the two essential transepithelial active sodium transport mechanisms of the lung, and could thus promote alveolar edema formation and prevent edema resolution, thereby contributing to the development of ARDS.

Animals↗

[Effect of short-time intra-ruminal infusions of linoleic and cis-oleic acids on methane level in the blood of sheep].

Studies were carried out on 7 sheep aged 2-4 years about 40 kg in body weight successively in summer and autumn. The animals were fed in 6 feeding groups. The samples of arterial and venous blood and control air also were taken 4 hrs after morning feeding. During feeding sheep were given in a short intraruminal 1-hr infusions unsaturated fatty acids: linoleic and cis-oleic. The methane levels in arterial and venous blood were both higher in summer than in autumn. The contents of CH4 in each of the diets were higher in venous blood than in arterial blood. The highest inhibition of methane production was observed in blood of experimental sheep which were fed on a bulky feed.

Animals↗

Oleic acid induces pulmonary injury independent of eicosanoids in the isolated, perfused rabbit lung.

Intravenous injection of oleic acid (OA) induces acute, edematous lung injury resembling some of the features of adult respiratory distress syndrome. One class of inflammatory agents speculated to be mediators of acute lung injury are eicosanoids. We tested the hypothesis that 5-lipoxygenase and cyclooxygenase metabolites of arachidonic acid mediate the pulmonary injury induced by OA. OA (0.1 ml), injected as a bolus into the pulmonary artery (PA) of isolated, Krebs-perfused rabbit lungs, resulted in significant (P less than .05) increases in lung weight (an index of pulmonary edema), maximum airway pressure, perfusate immunoreactive (i) 6-keto PGF1a, and a significant, though minimal, increase in perfusate i-thromboxane B2. No measurable increases were recorded in PA pressure or perfusate i-leukotriene (LT) C4/D4. Neither pretreatment with the LTD4/E4 antagonist, LY171883 (10 microM), nor the 5-lipoxygenase/cyclooxygenase inhibitor, BW755C (100 microM), attenuated the pulmonary edema. However, BW755C abrogated the increase in i6-keto PGF1a. Additionally, administration of exogenous LTD4 (100 nM) into the perfusate produced only a minimal increase in lung weight in the isolated rabbit lungs (n = 4). These results demonstrate that 5-lipoxygenase and cyclooxygenase metabolites do not appear to mediate OA-induced injury in the isolated, Krebs-perfused rabbit lung.

4,5-Dihydro-1-(3-(trifluoromethyl)phenyl)-1H-pyraz↗

Binding activities of thyroxine binding globulin versus thyroxine binding prealbumin in rat sera: differential modulation by thyroid hormone ligands, oleic acid and pharmacological drugs.

We use gel equilibration and electrophoretic techniques to compare the binding properties of thyroxine binding globulin and thyroxine binding prealbumin in rat sera. The evidence indicates that TBG bears the serum lowest capacity highest affinity sites for thyroxine (T4) and triiodothyronine (T3) (Ka1 greater than or equal to 10(9) M-1) as well as weaker saturable T3 sites (Ka2 approximately 10(8) M-1). TBPA bears for T4 only Ka2 approximately 10(8) M-1 sites and for T3 only Ka approximately 10(6) M-1 sites. Consistent with these parameters are the specific responses of TBG and TBPA binding activities to varying serum concentrations of T4, T3, oleic acid, the drugs diphenylhydantoin or salicylate. The primary attack of these compounds is aimed at TBG. Small T4, oleate or DPH doses chase the TBG-bound T4 to TBPA, high doses of T4 or oleate but not of DPH inhibiting the T4 binding to both proteins. In the T3-serum interactions, all tested compounds displace the TBG-bound hormone without chasing it to TBPA. The high reactivity of TBG sites designates the protein as crucially involved in modulating the free vs bound serum levels of T4 and T3 against physiological or pathological variations of binding competitors.

Animals↗

Effects of metformin and oleic acid on adipocyte expression of resistin.

AIM: The adipocyte-secreted hormone resistin has been implicated in obesity-induced insulin resistance and type 2 diabetes, but pharmacological and dietary factors that regulate resistin gene expression and the effects of resistin on cellular glucose uptake in muscle have not been clearly defined. METHODS: Expression of resistin mRNA was studied in differentiated 3T3-L1 adipocytes by using real-time semiquantitative reverse transcription-polymerase chain reaction. The effects of resistin on insulin-stimulated and insulin-independent 2-deoxyglucose uptake were evaluated in L6 muscle cells. RESULTS: Insulin 1 microm and rosiglitazone 10 microm markedly reduced resistin mRNA expression (relative to the control gene TF2D) by 4.7-fold (p < 0.05) and 5.3-fold (p < 0.02), respectively. Similar reductions in resistin mRNA were demonstrated with metformin 100 microm (6.2-fold reduction, p < 0.02) and oleic acid 100 microm (3.9-fold reduction, p < 0.03). Resistin 1 microm significantly reduced maximum insulin-stimulated 2-deoxyglucose uptake in L6 cells from 634 to 383% (relative to 100% for control, p < 0.001), and co-administration of rosiglitazone had no effect on resistin-induced insulin resistance. In the absence of insulin, however, resistin increased glucose uptake dose-dependently (e.g., 1.75-fold at 5 microm, p < 0.001) via a mitogen-activated protein kinase-dependent pathway. CONCLUSIONS: These results demonstrate that various glucose-lowering therapies and oleic acid reduce resistin gene expression in isolated adipocytes, and that resistin impairs insulin-stimulated glucose uptake in skeletal muscle-derived cells.

3T3-L1 Cells↗

Effects of the antiestrogen LY 117018 on the modulation by ethinyl estradiol of the metabolism of [1-14C]oleic acid by perfused livers from normal and ovariectomized rats.

Intact female Sprague-Dawley rats (195-249 g) and rats that had been ovariectomized (210-285 g) were injected subcutaneously for 14 days with ethinyl estradiol (15 micrograms/kg), the antiestrogen LY 117018 (500 micrograms/kg), both drugs simultaneously, or the vehicle (sesame oil) alone. Livers were removed and perfused in vitro in a recycling system. The administration of LY 117018 alone did not affect the secretion of triacylglycerol by livers from normal rats but decreased the secretion of triacylglycerol by livers from ovariectomized rats. When the drugs were administered concurrently to either normal or ovariectomized animals, the increase in the concentration of triacylglycerol and the decrease in the concentration of cholesteryl esters in the plasma produced by ethinyl estradiol were prevented. When administered to either intact or ovariectomized rats, ethinyl estradiol alone stimulated the synthesis and secretion of triacylglycerol and cholesteryl esters by perfused livers isolated from these animals. The simultaneous administration of LY 117018 with ethinyl estradiol prevented this stimulation of the hepatic synthesis and secretion of triacylglycerol and cholesteryl esters. The depression of ketogenesis observed with livers from rats administered ethinyl estradiol alone was reversed by concurrent administration of LY 117018. The concurrent administration of the estrogen and antiestrogen did not result, however, in a complete blockade of the estrogen-induced elevation of hepatic triacylglycerol synthesis and depression of ketogenesis. The incorporation of [1-14C]oleic acid into the triacylglycerol and ketone bodies by livers from ovariectomized rats was less than that of livers from normal rats. It is clear that the antiestrogen antagonizes the actions of ethinyl estradiol on hepatic lipid metabolism. Furthermore, the use of the antiestrogen LY 117018 in these experiments allows the probable conclusion that the modulation of hepatic metabolism of fatty acid by estrogen is mediated by conventional estrogenic receptors.

Animals↗

Isolation of nascent high-density lipoprotein from rat liver perfusates by immunoaffinity chromatography: effects of oleic acid infusion.

Immunoaffinity chromatography on a column of rabbit IgG anti-rat apolipoprotein (apo) A-I covalently bonded to agarose was used to isolate nascent high-density lipoprotein (nHDL) from recirculated perfusates of rat livers. After passage through the affinity column, the bound material was eluted with sodium thiocyanate and analyzed for apolipoproteins and lipids. The protein content was 52% and the lipid composition was 37% triglyceride, 40% phospholipid, and 23% cholesterol. Apolipoproteins E and A-I each comprised approximately one third of the total, and very little apo B was detectable as judged by SDS-PAGE analysis. The affinity-isolated particles were therefore similar in composition to the major apo A-I:apo E-rich subfraction of nHDL isolated by ultracentrifugation in earlier work. It is concluded that the apo E in this class of nHDL (containing both apo E and apo A-I) is present in the secreted particle and is not a consequence of a loss of apo E from very-low-density lipoprotein (VLDL) during ultracentrifugation. The high triglyceride content in the virtual absence of apo B confirms and extends previous analyses and reinforces the conclusion that nHDL particles are enriched in triglyceride compared to plasma HDL. The inclusion of 4% albumin in the perfusion medium did not significantly change the total triglyceride output of 115 micrograms/g liver/h, but it decreased the triglyceride output isolated by anti-apo A-I affinity chromatography from 3.2 to 0.48 micrograms/g liver/h. The addition of oleic acid complexed to albumin increased the total triglyceride output by 70% and that associated with the immunoaffinity column increased from 0.48 to 2.7 micrograms/g liver/h.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

A selective oleic acid albumin agar medium for the cultivation of Mycobacterium bovis.

The modification of Middlebrook's 7H11 oleic acid albumin agar medium by the addition of fresh bovine serum and lysed sheep red cells to encourage growth of Mycobacterium bovis is described. The improved medium was made selective by the addition of antibiotics and a comparative trial of this medium and the guineapig test in the isolation of M. bovis from badger tissues is reported. A close agreement between the two tests was found; the guinea-pig test detected 95% of all isolations and culture detected 91%.

Animals↗

[Uptake and incorporation of labeled oleic acid and glycerol by the isolated and perfused liver of the Wistar rat].

After perfusion by oleic acid (9-10(-3)H) and glycerol (1(-14)C) previously starved Wistar rats, the synthesis of hepatic TG and PL follows the two following different method: -- during the first minutes of perfusions, the most important method synthesis of TG and especially of PL is a de novo synthesis utilizing glycerol and the exogenous AG. The TG synthesized are 18:1 18:1 18:1 and 16:0 18:1 18:2 the PL synthesized are LP, AP and LPC; -- during perfusions of long duration (30, 60, 120 min.), the major method of synthesis of TG and PL is an active exchange of AG of the endogenous glycerolipids. The TG synthesized are 16:0 18:1 18:1 and 16:0 18:1 18:2 the PL synthesized are PE and PC.

Animals↗

Mutual hairless rat skin permeation-enhancing effect of ethanol/water system and oleic acid.

The mutual hairless rat skin permeation-enhancing effect of ethanol (EtOH)/water systems and oleic acid (OA) was investigated with model lipophilic (estradiol, progesterone, levonorgestrel) and hydrophilic drugs (zalcitabine, didanosine, zidovudine). The aqueous solubility and hairless rat skin permeation rate of each drug, saturated in various compositions of EtOH/water system (with and without OA), was determined at 37 degrees C. The hairless rat skin permeation rates of ethanol from EtOH/water systems (with and without OA) were also measured to investigate the skin permeation-enhancing mechanism of EtOH/water systems and OA. Both saturated solubility and steady-state permeation rates of each drug in EtOH/water systems increased exponentially as the volume fraction of ethanol increased, reached the maximum value, and then decreased with further increases in the ethanol volume fraction. Moreover, the hairless rat skin permeation rate of each drug had a good linear relationship with that of ethanol up to 70% (v/v) of ethanol in the EtOH/water system. The addition of OA in the EtOH/water system (70:30 and 60:40 for lipophilic and hydrophilic drugs, respectively) further enhanced the skin permeation rate of both ethanol and drugs. However, > 2.0% (v/v) OA was required to achieve the plateau level in the skin permeation rate of lipophilic drugs, whereas only 0.3% (v/v) OA was required for hydrophilic drugs. The skin permeation rate of ethanol also increased with the addition of OA in the EtOH/water systems (70:30 and 60:40), reached the plateau level with < 1.0% (v/v) OA, and did not significantly change with higher OA concentration. These results suggest that the addition of OA in the EtOH/water system is a useful method to enhance the hairless rat skin permeation rate of both hydrophilic and lipophilic drugs, with more enhancement for hydrophilic drugs.

Animals↗

[Comparison in genetically obese and normal rats in the secretion of lipids synthesized from labeled lauric and oleic acids and glycerol in isolated perfused liver].

(1) Isolated livers of previously fasted fafa and Wistar Rats are perfused with labelled oleic acid and glycerol. Two pools of synthesized lipids are studied: --a pool of liver lipids: labelled TG 16:0, 16:0, 18:1, 16:0, 18:1, 18:1 and 18:1, 18:1, 18:1 are synthesized more by the fafa than by the Wistar Rat liver, The TG 16:0, 18:1, 18:2 appears in the liver of the 2 rat strains. After a 30 min. perfusion, the PL are synthesized less by the fafa than by Wistar Rat liver; --a pool of lipids released in the circulation. The labelled tG 16:0, 18:1, 18:2, are increased in the perfusate of fafa rat. The labelled TG 18:1, 18:1, 18:2 and 18:1, 18:2, 18:2 are in the same amount. (2) The liver synthesis of TG 12:0, 12:0, 12:0 is demonstrated in the fafa Rat by a lauric acid perfusion. This TG is not present in circulation, when a Wistar Rat liver synthesizes and releases with this TG, TG containing 1 or 2 molecules of lauric acid.

Animals↗

Vasodilators worsen gas exchange in dog oleic-acid lung injury.

The authors studied the effects of vasodilator treatment with either hydralazine or minoxidil on gas exchange and lung water accumulation over a 5-h period in canine oleic acid-induced pulmonary edema. Thirty dogs were given intravenous oleic acid 1 day prior to study to produce a stable, diffuse lung injury. On the day of study, one group of animals was given minoxidil, a potent systemic and pulmonary vasodilator. A second group was given hydralazine, a potent systemic vasodilator but weak pulmonary vasodilator, and a third group was not treated. Hemodynamic and gas exchange variables were assessed prior to treatment, and again after 5 h of treatment. Both drugs caused an increase in cardiac output and a decrease in peripheral vascular resistance. Minoxidil increased venous admixture from 17 +/- 4 to 55 +/- 6% (P less than 0.05), whereas hydralazine-treated dogs had a smaller increase, from 26 +/- 5 to 47 +/- 6% (P less than 0.05), and untreated animals did not show a significant change. Lung water increased 27 +/- 12% in the untreated animals over the course of the study, 43 +/- 18% in the hydralazine animals, and 60 +/- 16% (P less than 0.05 vs. untreated) in the minoxidil animals. The authors conclude that adverse effects may result from peripheral vasodilators in animals with permeability pulmonary edema, but the extent and severity of these effects may vary, depending on the drugs' effects on the pulmonary circulation.

Animals↗