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F Feihl

Publications and source records attributed to F Feihl.

At least 19 recordsLinked to original sources

Hypoxic contraction of small pulmonary arteries from normal and endotoxemic rats: fundamental role of NO.

The present study was aimed at examining the role of nitric oxide (NO) in the hypoxic contraction of isolated small pulmonary arteries (SPA) in the rat. Animals were treated with either saline (sham experiments) or Escherichia coli lipolysaccharide [LPS, to obtain expression of the inducible NO synthase (iNOS) in the lung] and killed 4 h later. SPA (300- to 600-micrometer outer diameter) were mounted as rings in organ chambers for the recording of isometric tension, precontracted with PGF2alpha, and exposed to either severe (bath PO2 8 +/- 3 mmHg) or milder (21 +/- 3 mmHg) hypoxia. In SPA from sham-treated rats, contractions elicited by severe hypoxia were completely suppressed by either endothelium removal or preincubation with an NOS inhibitor [NG-nitro-L-arginine methyl ester (L-NAME), 10(-3) M]. In SPA from LPS-treated rats, contractions elicited by severe hypoxia occurred irrespective of the presence or absence of endothelium and were largely suppressed by L-NAME. The milder hypoxia elicited no increase in vascular tone. These results indicate an essential role of NO in the hypoxic contractions of precontracted rat SPA. The endothelium independence of HPV in arteries from LPS-treated animals appears related to the extraendothelial expression of iNOS. The severe degree of hypoxia required to elicit any contraction is consistent with a mechanism of reduced NO production caused by a limited availability of O2 as a substrate for NOS.

Animals

Nonselective versus selective inhibition of inducible nitric oxide synthase in experimental endotoxic shock.

The effects of two nitric oxide synthase (NOS) inhibitors with different isoform selectivity were compared in a murine model of endotoxemia. Mice challenged with 70 mg/kg intraperitoneal (ip) lipopolysaccharide (LPS) were treated 6 h after LPS with either NG-gamma-L-arginine methyl ester (L-NAME, nonselective NOS inhibitor, 10-60 mg/kg), L-canavanine (selective inhibitor of inducible NOS, 50-300 mg/kg), or saline (0.2 mL) given ip. In a subset of mice, plasma concentrations of nitrate (NO breakdown product), lipase (pancreas injury), lactate dehydrogenase, and transaminases (liver injury) were measured 16 h after LPS. Although both inhibitors reduced plasma nitrate, they produced contrasting effects on survival and organ injury. L-NAME enhanced liver damage and tended to accelerate the time of death, while L-canavanine significantly reduced mortality and had no deleterious effects in terms of organ damage. These results indicate that nonselective NOS inhibitors are detrimental in endotoxic shock and support the potential usefulness of selective inducible NOS inhibitors in this setting.

Animals

Selective iNOS inhibition is superior to norepinephrine in the treatment of rat endotoxic shock.

S-methyl-isothiourea (SMT) is a potent inhibitor of NO synthase (NOS) with relative selectivity towards the inducible isoform (iNOS). We compared SMT and norepinephrine for the treatment of experimental endotoxic shock. Anesthetized rats challenged intravenously with lipopolysaccharide (LPS), 10 mg/kg, were treated after 1 h with a 4-h infusion of norepinephrine (titrated to maintain blood pressure within baseline values), SMT at low dose (0.1 mg x kg-1 x h-1), or at high dose (1 mg x kg-1 x h-1), or an equivalent volume of saline (2 ml x kg-1 x h-1). In saline-treated animals, LPS increased plasma nitrate and produced hypotension, low cardiac output (CO), lactic acidosis, and signs of liver and kidney dysfunction. Norepinephrine maintained blood pressure (BP) and reduced the fall in CO, without affecting lactic acidosis, organ dysfunction, and nitrate accumulation. The latter was dose-dependently blunted by SMT. Treatment with this agent prevented hypotension, through systemic vasoconstriction with the high dose and a maintained CO with the low dose. Low, but not high, dose SMT blunted lactic acidosis. Both doses reduced the signs of renal, but not liver, dysfunction. In additional studies, we obtained evidence that, in contrast with the high dose, SMT at low dose did not interfere with the function of constitutive NOS. These findings suggest a potential advantage of selective iNOS inhibition over standard adrenergic support in the therapy of septic shock.

Animals

[Efficacy of ketanserin on postanesthetic shivering].

OBJECTIVE: To evaluate the clinical and electromyographic (EMG) effects of ketanserin (K), a serotoninergic receptor antagonist (5-HT2), on postoperative shivering (POS). STUDY DESIGN: Prospective, randomised, double-blind study. PATIENTS: Fifty ASA class 1 and 2 patients with major clinical postoperative tremor were studied. METHODS: POS was assessed clinically (0 = nil, 1 = moderate, 2 = severe). Inclusion criterion was a POS of 2 at admission in the recovery room. The mean arterial blood pressure, rectal temperature, SpO2 were recorded at admission (T0) and subsequently at T5, T10, T15, T30 and T60 minutes. Either 10 mg of K (n = 25) or a corresponding volume of a placebo (P) (n = 25) were intravenously injected. The EMG activity of the deltoid and quadriceps muscles was recorded continuously. Blood lactic acid concentration was measured at the end of POS. Results are expressed as mean +/- SEM. Parametric values were analysed with unpaired Student's t-test, and nonparametric values with chi 2 analysis. P < 0.05 was accepted. RESULTS: Demographic data, duration of anaesthesia, postoperative temperature, oxygen saturation, blood pressure and blood lactate concentration were similar between groups. The POS duration in the K group was significantly shorter than in the P group: 8.8 +/- 1.5 min and 15.5 +/- 1.5 min respectively (P < 0.01). The number of patients in the K group experiencing POS at T5 and T10 was significantly lower, when compared with those who had received the P (P < 0.05). CONCLUSION: At a dose of 10 mg, K administered in patients with POS during recovery, reduced significantly the duration and intensity of the shivering without noticeable side effects. This study suggests that this 5-HT2 antagonist is an efficient therapeutic tool for POS in adults.

Adult

Effect of L-lysine on nitric oxide overproduction in endotoxic shock.

1. An enhanced production of nitric oxide (NO) from L-arginine, related to the diffuse expression of an inducible NO synthase (iNOS), contributes to the pathogenesis of endotoxic shock. Since iNOS activity depends on extracellular L-arginine, we hypothesized that limiting cellular L-arginine uptake would reduce NO production in endotoxic shock. We investigated the effects of L-lysine, an inhibitor of L-arginine uptake through system y+, on NO production, multiple organ dysfunction and lactate levels, in normal and endotoxaemic rats. 2. Anaesthetized rats challenged with intravenous lipopolysaccharide (LPS, 10 mg kg[-1]) received a 5 h infusion of either L-lysine (500 micromol kg(-1) h(-1), n = 12) or isotonic saline (2 ml kg(-1) h(-1), n = 11). In rats treated with saline, LPS produced a large increase in plasma nitrate and L-citrulline concentrations at 5 h, both markers of enhanced NO production. LPS also caused severe hypotension, low cardiac output and marked hyperlactataemia. All these changes were significantly reduced by L-lysine administration. 3. Endotoxaemia also caused a significant rise in the plasma levels of alanine aminotransferase (ALAT), lipase, urea and creatinine, and hence, liver, pancreatic and renal dysfunction. These changes tended to be less pronounced in rats treated with L-lysine, although the differences did not reach statistical significance. 4. Similar experiments were conducted in 10 rats challenged with LPS vehicle in place of LPS and then treated with L-lysine (500 micromol kg(-1) h(-1), n = 5) or saline (2 ml kg(-1) h(-1), n = 5) for 5 h. In these animals, all the haemodynamic and metabolic variables remained stable and not statistically different between both treatment groups, except for a slight rise in ALAT, which was comparable in L-lysine and saline-treated rats. 5. In conclusion, L-lysine, an inhibitor of cellular L-arginine uptake, reduces NO production and exerts beneficial haemodynamic effects in endotoxaemic rats. L-lysine also reduces hyperlactataemia and tends to blunt the development of organ injury in these animals. Contrastingly, L-lysine has no effects in the absence of endotoxin and thus appears to act as a selective modulator of iNOS activity.

Animals

Intensive care physicians' insufficient knowledge of right-heart catheterization at the bedside: time to act?

OBJECTIVE: To evaluate French, Swiss, and Belgian intensive care physicians' knowledge about the pulmonary artery catheter. DESIGN: Survey study by questionnaire. SETTING: Eighty-six European university and nonuniversity intensive care units (ICUs). SUBJECTS: One hundred thirty-four ICUs identified from the directories of two European intensive care medicine societies were asked to participate. Five hundred thirty-five critical care physicians working in 86 ICUs participated. INTERVENTIONS: In any particular ICU, all physicians were to complete--simultaneously, anonymously and without prior notice--a multiple choice questionnaire consisting of 31 questions regarding all aspects of bedside pulmonary artery catheterization. This questionnaire was the same one already used and extensively validated in a similar study conducted several years earlier in the United States and Canada. MEASUREMENTS AND MAIN RESULTS: The percentage of correct answers per participant (score) was tabulated. Sixty-eight percent of respondents still in training (n = 232) believed that their knowledge of the pulmonary artery catheter was less than adequate; 36% of those who had completed their postgraduate training (n = 294) also believed their knowledge to be inadequate. The mean score of all respondents was 72.2 +/- 14.4%, significantly lower (p <.0001) in case of uncompleted postgraduate training (67.3 +/- 14.7%, lower quartile 56.7%, median 70.0%, upper quartile 76.7%), as compared with completed postgraduate training (76.1 +/- 13.0%, lower quartile 70.0%, median 80.0%, upper quartile 86.7%). When using multivariate analysis, the location of the ICU in a university hospital, the belief of respondent that his/her knowledge of the pulmonary artery catheter was adequate, and the responsibility for supervising catheter insertion were the only independent predictors of good performance on the questionnaire (p < .001 for all three variables). It was impossible to identify any subcategory of physicians with a uniformly good knowledge of the pulmonary artery catheter. The proportion of incorrect answers to some basic items was disturbingly high. For instance, approximately 50% of the respondents, whether trained or in training, did not correctly identify pulmonary artery occlusion pressure from a clear chart recording. CONCLUSIONS: Knowledge of right-heart pulmonary artery catheterization is not uniformly good among ICU physicians. Accreditation policies and teaching practices concerning this technique need urgent revision.

Attitude of Health Personnel

L-canavanine, an inhibitor of inducible nitric oxide synthase, improves venous return in endotoxemic rats.

OBJECTIVE: To investigate the hemodynamic effects of L-canavanine (an inhibitor of inducible, but not of constitutive, nitric oxide synthase) in endotoxic shock. DESIGN: Controlled, randomized, experimental study. SETTING: Animal laboratory. SUBJECTS: Wistar rats. INTERVENTIONS: Rats were anesthetized with pentobarbital, and hemodynamically monitored. One hour after an intravenous challenge with 5 mg/kg of Escherichia coli endotoxin, the rats were randomized to receive a continuous infusion of either L-canavanine (20 mg/kg/hr; n = 8) or vehicle only (isotonic saline, n = 11). In all animals, the infusion was given over 5 hrs at a rate of 2 mL/kg/hr. These experiments were repeated in additional rats challenged with isotonic saline instead of endotoxin (sham experiments). MEASUREMENTS AND MAIN RESULTS: Arterial blood pressure, heart rate, thermodilution cardiac output, central venous pressure, mean systemic filling pressure, urine output, arterial blood gases, blood lactate concentration, and hematocrit were measured. In sham experiments, hemodynamic stability was maintained throughout and L-canavanine had no detectable effect. Animals challenged with endotoxin and not treated with L-canavanine developed progressive hypotension and low cardiac output. After 6 hrs of endotoxemia, both central venous pressure and mean systemic filling pressure were significantly below their baseline values, indicating relative hypovolemia as the main determinant of reduced cardiac output. In endotoxemic animals treated with L-canavanine, hypotension was less marked, while cardiac output, central venous pressure, and mean systemic filling pressure were maintained throughout the experiment. L-canavanine had no effect on the time-course of hematocrit. L-canavanine significantly increased urine output and reduced the severity of lactic acidosis. CONCLUSIONS: Six hours after an endotoxin challenge in rats, low cardiac output develops, which appears to be primarily related to relative hypovolemia. L-canavanine, a selective inhibitor of the inducible nitric oxide synthase, increases the mean systemic filling pressure, thereby improving venous return, under these conditions.

Animals

L-canavanine improves organ function and tissue adenosine triphosphate levels in rodent endotoxemia.

Overproduction of NO by an inducible NO synthase (iNOS) plays a major role in the pathophysiology of septic shock, and selective inhibition of iNOS in this setting could be of great therapeutic value. In the present study, we evaluated the effects of L-canavanine, a selective iNOS inhibitor, in an animal model of septic shock, with a particular focus on tissue oxidative metabolism and organ functions. Anesthetized rats challenged intravenously with lipopolysacharide (LPS) were treated after 1 h by a continuous infusion of either L-canavanine (20 mg/kg/h; n = 11) or an equivalent volume of saline (2 ml/kg/h; n = 17) given for 4 h. A third group (sham rats; n = 9) did not receive LPS and was treated with a continuous infusion of saline (2 ml/kg/h). At the end of experiments, biopsies were taken from the liver, the kidney, and the small intestine for the measurement of tissue ATP. LPS induced a progressive fall in blood pressure, accompanied by biologic signs of liver and kidney failure, concomitant with a marked decrease in tissue ATP stores. L-canavanine largely prevented hypotension and significantly increased tissue ATP while reducing the signs of organ dysfunction. These effects were associated with a significant improvement in survival during the 5 h of study. We conclude that L-canavanine not only reduces hypotension in endotoxin shock but also largely prevents the detrimental consequences of LPS on tissue oxidative metabolism and major organ functions, allowing a decrease in endotoxin lethality.

Adenosine Triphosphate

Safety of combined heat and moisture exchanger filters in long-term mechanical ventilation.

STUDY OBJECTIVE: To evaluate the safety of a combined heat and moisture exchanger filter (HMEF) for the conditioning of inspired gas in long-term mechanical ventilation (MV). DESIGN: Randomized controlled trial. SETTING: Medical ICU in a large teaching hospital. PATIENTS: One hundred fifteen consecutive patients who required > or = 48 h of MV. INTERVENTIONS: Patients were randomized at intubation time (day 1) to receive inspired gas conditioned either by a water-bath humidifier heated at 32 degrees C (HWBH) or by an HMEF (Hygroster; DAR; Mirandola, Italy). MEASUREMENTS AND MAIN RESULTS: The two study groups were comparable in terms of primary pathologic condition at the time of hospital admission, disease severity as measured by the Simplified Acute Physiology Score, and ICU mortality. They did not differ with respect to ventilator days per patient (mean +/- SD: HMEF, 7.6 +/- 6.5; HWBH, 7.8 +/- 5.8), incidence of endotracheal tube obstruction (HMEF, 0/59; HWBH, 1/56), and incidence of hypothermic episodes (HMEF, five; HWBH, two). In 41 patients receiving MV for > or = 5 days, the morphologic integrity of respiratory epithelium was evaluated on day 1 and day 5, using a cytologic examination of tracheal aspirate smears. The state of ciliated epithelium was scored on a scale from 0 (poorest integrity) to 1,200 (maximum integrity), according to a well-described method. In both patient groups, the scores slightly but significantly decreased from day 1 to day 5 (mean +/- SD: HWBH, from 787 +/- 104 to 745 +/- 88; HMEF, from 813 +/- 79 to 739 +/- 62; p < 0.01 for both groups); there were no statistically significant differences between groups. CONCLUSIONS: These data indicate acceptable safety of HMEFs of the type used in the present study for long-term mechanical ventilation.

Equipment Safety

Haemodynamic effects of ketanserin either alone or with oxygen in COPD patients with secondary pulmonary hypertension.

To indirectly test the hypothesis whether serotonin (5-HT) might have a role in the increase in pulmonary vascular resistance, we evaluated the haemodynamic and gas exchange response of intravenous ketanserin (K), a 5-HT receptor inhibitor, in eight severe but stable patients with chronic obstructive pulmonary disease with secondary pulmonary hypertension (mean pulmonary artery pressure (Ppa) 30.3 +/- 7.3 mmHg). Measurements were done at baseline, after oxygen breathing (2 L.min-1), K bolus (6-15 mg) and finally during oxygen breathing (2 L.min-1) added to K infusion (3-6 mg.h-1). K bolus induced a significant reduction of mean Ppa (p < 0.05), mean systemic arterial pressure (p < 0.01) and total systemic resistance (p < 0.01). Cardiac index (+7%), oxygen delivery (+7%) and pulmonary vascular resistance (magnitude of the reduction: -12%) did not change significantly. When oxygen was added to K infusion, the cardiac index significantly dropped when compared to K bolus (p < 0.05), but oxygen delivery remained stable because of the resulting increase in arterial oxygen concentration; against baseline, the mean Ppa showed the same magnitude of reduction as with oxygen breathing or K bolus alone (p < 0.05). Ventilation and gas exchange were not significantly influenced by K bolus. When we individually analysed the changes of pulmonary vascular resistances by plotting the driving pressure through the pulmonary circulation against the cardiac output, we observed that an active vasodilating effect on the pulmonary circulation occurred with K in only one patient, while in three other patients there was rather a recruitment effect of the pulmonary vessels due to the systemic effects of the drug. In conclusion, this study of a small number of patients with severe chronic obstructive pulmonary disease associated with pulmonary hypertension shows that the parenterally given serotonin antagonist ketanserin predominantly affects the systemic circulation. Our results do not support the hypothesis that in stable chronic obstructive pulmonary disease patients with pulmonary hypertension, serotonin might have a role in the increase of pulmonary vascular tone.

Female

[Permissive hypercapnia. From choice to unavoidable decision].

Experimental and clinical evidence has led to a revision of conventional techniques used for mechanical ventilation in the treatment of respiratory failure due to severe asthma and acute respiratory distress syndrome. A common feature in these two clinical situations is the heterogeneous nature of the lesions, causing mechanical alterations which vary from one region to another. Thus the tidal volume is not equally distributed throughout the lungs and can lead to overdistension in some regions or functional exclusion in others. Hyperinflation then exposes the patient to barotrauma, cardiocirculatory and/or alveolocapillary complications. Controlled hypoventilation-or permissive hypercapnia-is a new approach aimed at preventing complications by supplying adequate oxygen while accepting or provoking a certain degree of hypercapnia by alveolar hypoventilation. The technique is based on restricting tidal volume and respiratory rate as long as is necessary to recover more favorable mechanical conditions. Results obtained with this method have been convincing for the treatment of decompensated asthma but preliminary data obtained in acute respiratory distress syndrome remain to be validated.

Acute Disease

Beneficial effects of L-canavanine, a selective inhibitor of inducible nitric oxide synthase, during rodent endotoxaemia.

1. The cardiovascular failure in sepsis may result from increased nitric oxide biosynthesis, through the diffuse expression of an inducible nitric oxide synthase. In such conditions, nitric oxide synthase inhibitors might be of therapeutic value, but detrimental side effects have been reported with their use, possibly related to the blockade of constitutive nitric oxide synthase. Therefore, the use of selective inhibitors of inducible nitric oxide synthase might be more suitable. The aim of this study was to evaluate the effects of L-canavanine, a potentially selective inhibitor of inducible nitric oxide synthase, in an animal model of septic shock. 2. Anaesthetized rats were challenged with 10 mg/kg lipopolysaccharide intravenously. One hour later, they randomly received a 5 h infusion of either L-canavanine (20 mg h-1 kg-1, n = 15), nitro-L-arginine methyl ester (5 mg h-1 kg-1, n = 13) or 0.9% NaCl (2 ml h-1 kg-1, n = 21). Lipopolysaccharide induced a progressive fall in blood pressure and cardiac index, accompanied by a significant lactic acidosis and a marked rise in plasma nitrate. All these changes were significantly attenuated by L-canavanine, which also improved the tolerance of endotoxaemic animals to acute episodes of hypovolaemia. In addition, L-canavanine significantly increased survival of mice challenged with a lethal dose of lipopolysaccharide. In contrast to L-canavanine, nitro-L-arginine methyl ester increased blood pressure at the expense of a severe fall in cardiac index, while largely enhancing lactic acidosis. This agent did not improve survival of endotoxaemic mice. In additional experiments, we found that the pressor effect of L-canavanine in advanced endotoxaemia (4 h) was reversed by L-arginine, confirming that it was related to nitric oxide synthase inhibition. In contrast, L-canavanine did not exert any influence on blood pressure in the very early stage (first hour) of endotoxaemia or in the absence of lipopolysaccharide exposure, indicating a lack of constitutive nitric oxide synthase inhibition by this agent. 3. In conclusion, L-canavanine produced beneficial haemodynamic and metabolic effects and improved survival in rodent endotoxic shock. The actions of L-canavanine were associated with a selective inhibition of inducible nitric oxide synthase and were in marked contrast to the deleterious consequences of nitro-L-arginine methyl ester, a non-selective nitric oxide synthase inhibitor, in similar conditions.

Acidosis, Lactic

Oxidant-antioxidant balance in granulocytes during ARDS. Effect of N-acetylcysteine.

The production of cytotoxic oxygen radicals by activated granulocytes is a proposed mechanism of lung injury in ARDS. Protective effects of N-acetylcysteine (NAC) have been described in experimental and clinical ARDS. NAC could act in part by replenishing the intracellular stores of glutathione (GSH) in activated granulocytes, leading to detoxification of oxygen radicals produced by these cells. To test this hypothesis, 16 patients in the early phase of ARDS were randomized to receive either NAC (n = 8) or placebo (n = 8); granulocyte GSH, granulocyte oxygen radical production, and plasma levels of granulocyte elastase were measured in blood samples drawn sequentially within 8 h after the onset of ARDS (day 0), and then 24 (day 1), 72 (day 3), and 120 h (day 5) after the first sample; treatment with NAC or placebo was started immediately after day 0 and stopped just after day 3. Granulocyte GSH was significantly higher on days 1 and 3 when NAC was received by the patient. Unstimulated oxygen radical production, as measured ex vivo by luminol- and lucigenin-amplified chemiluminescence (CL), was higher in granulocytes from ARDS patients than from healthy control subjects, but was not influenced by NAC. The plasma levels of granulocyte elastase were five to eight times above the upper normal limit on day 0, decreased steadily until day 5, and were uninfluenced by NAC. In summary, parenteral NAC treatment started within 8 h of diagnosis increases the intracellular GSH in the granulocytes of ARDS patients without decreasing spontaneous oxidant production by these cells. The mechanisms of the protective effects of this drug previously reported in experimental and clinical ARDS remain to be established.

Acetylcysteine

Volemic status influences the response of plasma atrial natriuretic factor to positive airway pressure.

UNLABELLED: STUDY OBJECTIVE; To evaluate interactive effects of volemic status and positive end-expiratory pressure (PEEP) on the plasma levels of atrial natriuretic factor (ANF) in assist-controlled mechanical ventilation (MV). DESIGN: Three successive protocols applied in randomized order to each participant. SETTING: Clinical investigation laboratory. PARTICIPANTS: Twenty-one young, healthy adults. INTERVENTIONS: The three protocols were as follows: (1) MV+PEEP, normovolemia; (2) MV+PEEP, hypervolemia; and (3) spontaneous breathing (SB), hypervolemia. In protocols 1 and 2, a preliminary period of SB lasting 2 h was followed by MV alone (0.5 h), MV+20 cm H2O PEEP (1 h), and a recovery period of SB (1.5 h). Hypervolemia was induced by the continuous i.v. infusion of 3 L of 0.9% NaCl in 5 h (protocols 2 and 3). MEASUREMENTS AND RESULTS: Heart rate, BP, and the plasma levels of immunoreactive ANF and catecholamines were measured serially. During hypervolemia, ANF significantly decreased when PEEP was added to MV (protocol 2: from 31.1 +/- 2.7 to 20.7 +/- 1.5 fmol/mL; p < 0.01). This did not occur in normovolemia (protocol 1: from 20.0 +/- to 16.7 +/- 1.2 fmol/mL; p = NS). The different effects of MV+PEEP in normovolemia and hypervolemia were not related to differences in circulating catecholamine levels. CONCLUSIONS: These results demonstrate for the first time (to our knowledge) that volemic status modulates the response of plasma ANF to PEEP in humans. The role of ANF in the water and salt retention induced by MV with PEEP might be limited to hypervolemic conditions.

Adult

Endothelin-1 does not mediate the endothelium-dependent hypoxic contractions of small pulmonary arteries in rats.

Various pulmonary artery preparations in vitro demonstrate sustained endothelium-dependent contractions upon hypoxia. To determine whether endothelin-1 could mediate this phenomenon, we examined the effect of bosentan, a new antagonist of both the ETA and ETB subtypes of the endothelin receptor. Small (300 pm) pulmonary arteries from rats were mounted on a myograph, precontracted with prostaglandin F2 alpha and exposed to hypoxia (PO2, 10 to 15 mm Hg, measured on-line) for 45 min. Endothelium-intact control rings exhibited a biphasic response, with a transient initial vasoconstriction (phase 1) followed by a second slowly developing sustained contraction (phase 2). Expressed in percent of the maximal response to 80 mmol/L KCl, the amplitudes of phase 1 (peak tension) and 2 (tension after 45 min of hypoxia) averaged 37 +/- 12% and 17 +/- 14%, respectively (n = 11). In endothelium-denuded rings, phase 1 persisted while the amplitude of phase 2 was reduced to 2 +/- 12% (p < 0.05, n = 8), showing the endothelium dependence of this contraction. Neither phase was significantly decreased in rings treated with 10(-5) mmol/L bosentan (38 +/- 15% and 17 +/- 12%, respectively, n = 6). The PO2 threshold for onset of hypoxic contraction was not significantly different among these three groups and averaged 32 +/- 24 mm Hg. In a separate experiment, we assessed the inhibitory effect of 10(-5) mol/L bosentan on the response to 10(-8) mol/L endothelin-I. Rings treated for 45 min with 10(-8) mol/L endothelin-1 alone exhibited a maximal contraction of 75 +/- 27% (n = 6). This was reduced to 4 +/- 17% (p < 0.01, n = 6) in rings treated with both 10(-8) mol/L endothelin-1 and 10(-5) mol/L bosentan. We conclude that complete blockade of all endothelin receptor subtypes has no effect on either endothelium-dependent or -independent hypoxic contractions in this preparation. This suggests that endothelial factors other than endothelin-I mediate the acute hypoxic contractions of small pulmonary arteries in the rat.

Animals

[Controlled hypercapnia: a new strategy in the treatment of severe respiratory insufficiency].

Permissive hypercapnia (PHY) represents an interesting approach in critically ill ventilated patients, because it allows to ensure adequate gas exchange while avoiding the adverse effects related to excessive airway pressures. Its objective is to improve oxygenation while reducing the risk of barotrauma and circulatory impairment. This concept is all the more important when considering that in majority of lung diseases for which MV is applied, lung involvement is highly inhomogeneous, meaning that the functionally normal or near normal areas are the most exposed to the deleterious effects of overdistension. Undesired physiological effects of non massive respiratory acidosis (PaCO2 < or = 80 mmHg, arterial pH > or = 7.15) are reversible and mostly minor. This good tolerance legitimizes two strategies: firstly to accept hypercapnia in conditions such as acute severe asthma for which enforced normalization of PaCO2 would imply potentially lethal complications, and secondly to deliberately induce respiratory acidosis while using very low airway pressures and alveolar ventilation to limit or prevent overdistension lung damage in injured as well as in normal areas. When the cerebral vasodilation induced by CO2 might aggravate a preexisting intracranial disorder, PHY is obviously contraindicated.

Humans