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Biomedical subjects

R Marcelle

Publications and source records attributed to R Marcelle.

At least 19 recordsLinked to original sources

Pressure-flow relationships of the pulmonary circulation during endotoxin infusion in intact dogs.

BACKGROUND AND METHODS: We aimed to characterize the effects of an endotoxin insult (Escherichia coli 0127:B8) on the relationships between pulmonary vascular pressure and flow in intact dogs. To achieve this goal, multipoint plots of total pressure gradient, arterial pressure gradient, and venous pressure gradient vs. flow were generated by graded inflation of a right atrial balloon, which was used to vary flow. The partitioning of the total pressure decrease across the pulmonary vasculature (total pressure gradient = pulmonary arterial pressure-pulmonary artery occlusion pressure [PAOP]) into gradients across pulmonary arterial (arterial pressure gradient = pulmonary arterial pressure--effective capillary pressure) and pulmonary venous (venous pressure gradient = effective capillary pressure--PAOP) regions was assessed by a waveform mathematical analysis of the pulmonary arterial pressure profile during arterial occlusion, with computation of both PAOP and effective pulmonary capillary pressures. Slopes and extrapolated pressure intercepts from linear regression fits to the pulmonary vascular pressure/flow plots were determined in seven dogs after a 2-hr endotoxic infusion interval and were compared with the corresponding values that characterized a similar group of sham-operated dogs. RESULTS: Under normal conditions, the extrapolated pressure intercept for pulmonary arterial pressure gradient was virtually 0 mm Hg; for total pulmonary arterial pressure gradient and pulmonary venous pressure gradient, the mean extrapolated pressure intercepts were substantially positive: 2.4 +/- 0.2 and 2.1 +/- 0.3 mm Hg, respectively. Endotoxin infusion at 0.25 micrograms/kg/min significantly increased the pressure intercepts from 2.4 to 8.7 and from 2.1 to 8.3 mm Hg of total pressure gradient and venous pressure gradient vs. flow, respectively. This infusion produced a minor, nonsignificant change in the intercept of arterial pressure gradient vs. flow, whereas it increased its slope significantly (p less than .05) from 0.036 to 0.081 mm Hg/mL/min/kg. CONCLUSIONS: These data suggest that endotoxin's effects on vascular resistance are exerted at two different loci such that these effects are additive. These endotoxin-induced effects consisted of increased vascular resistance of the arterial segment and appearance of a Starling resistor at the venous side of the pulmonary circulation, which acted as the relevant back-pressure to flow.

Animals

Effect of positive end-expiratory pressure on pulmonary vascular pressure-flow characteristics in canine endotoxin shock.

The vascular pulmonary pressure-flow (P-Q degree) relationships were studied in anesthetized dogs in order to characterize the distribution of total resistance in the pulmonary bed with respect to incremental resistance and critical closure prior to and after endotoxin insult. Incremental resistance was computed as the slope of the P-Q degree relation, whereas critical closure was referred to as the extrapolated pressure intercept at zero flow. P-Q degree coordinates were obtained by varying Q degree through graded inflation of right atrial balloon. The gradients across the arterial segment (Pa = Ppa - Pc) and across the venous segment (Pv = Pc - Pw) of the pulmonary vasculature were defined by the computation of effective capillary pressure (Pc) obtained from the analysis of the transient decay of pulmonary artery pressure (Ppa) toward wedge pressure (Pw) after arterial occlusion. Six group E dogs were infused with endotoxin at a rate of 0.25 microgram/kg min, while six additional animals served as control (group C). Endotoxin induced increases in flow resistance from 0.056 to 0.096 mm Hg/ml/min/kg due to arterial vasoconstriction and increases in critical closure from 2.3 to 8.4 mm Hg due to a venous waterfall. Before and after endotoxin insult, we assessed effects of each of three levels of static lung inflation (PEEP) on P-Q degree relationships.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Lung fluid dynamics and supply dependency of oxygen uptake during experimental endotoxic shock and volume resuscitation.

BACKGROUND AND METHODS: We studied the effect of volume resuscitation on lung fluid balance and systemic oxygen extraction during septic shock in eight anesthetized dogs. Sepsis was induced using a 2-hr continuous infusion of Escherichia coli endotoxin at 0.25 micrograms/min.kg. Relationships between oxygen uptake (VO2) and oxygen supply (DO2) were performed acutely during stepwise controlled decrements in cardiac output by progressive inflation of an intracardiac balloon. At each stage, DO2 and corresponding VO2 were measured independently and the individual critical DO2 level was referred to as the point below which the relationship held. The slope of such a constructed relationship was defined as the maximal oxygen extraction ratio. Lung fluid balance was assessed by measurements of extravascular lung water. All values were studied at baseline, after endotoxin insult, and after reversing hypotension by a 10% dextran infusion. RESULTS: Endotoxin infusion led to a shock state that associated hypotension (from 135 to 63 mm Hg) with increases in blood lactate (from 0.53 to 3.9 mmol/L). The mean critical DO2 and maximal oxygen extraction ratio were significantly altered from 7.9 to 17.8 mL/min.kg and from 0.81 to 0.38, respectively. After reversing hypotension by 28 mL/kg colloid infusion, the critical DO2 (11.4 mL/min.kg) and maximal oxygen extraction ratio (0.48) were significantly improved. However, restoration of normal values required a state of fluid overload by further dextran infusion (8 mL/kg). At the end of the fluid challenge, extravascular lung water significantly increased from 6.4 to 17.4 mL/kg. CONCLUSIONS: These data suggest that volume loading may reverse endotoxin-induced peripheral perfusion abnormalities. However, substantial pulmonary edema may occur, possibly jeopardizing the beneficial effects of fluid expansion.

Animals

Accuracy in early prediction of prognosis of patients with septic shock by analysis of simple indices: prospective study.

In 26 consecutive septic shock patients, we analyzed the clinical, hemodynamic, and metabolic data before and during volume infusion to test their circulatory reserve in response to fluid repletion. These patients were investigated to identify early variables that could predict outcome. There were 15 survivors (group A) and 11 nonsurvivors (group B). As a mean, group A patients were hemodynamically evaluated 2.3 h after onset of the sepsis syndrome, whereas group B patients underwent cardiac catheterization after a 12-h interval. At the initial evaluation, both groups demonstrated similarly decreased mean arterial pressure, mean heart rate, and mean cardiac filling pressure. Only group A patients evidenced elevated cardiac index (CI) (greater than 4 L/min.m2) associated with low systemic vascular resistance index (less than 7400 dyne.sec/cm5.m2), which is generally recognized as hyperdynamic cardiac state. However, none of the initial cardiovascular variables could serve as a predictor for survival. Fluid challenge increased left ventricular preload from 6 to 12.4 and from 7.8 to 12.7 mm Hg in group A and group B, respectively. The increases were associated with significant increases in CI from 4.4 to 6.9 and from 3 to 3.8 L/min.m2. However, at the end of fluid challenge, only group A patients exhibited normal cardiac response, as evidenced by the change in left ventricular stroke work index (LVSWI) for a given increase in the pulmonary capillary wedge pressure (WP) that was referred to as left cardiac preload.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Pathogenesis and management of acute pulmonary embolism.

Pulmonary embolism can produce severe cardiopulmonary dysfunction characterized by pulmonary artery hypertension, right ventricular failure, and hypoxemia. The search for the source of a pulmonary embolus, by exploration of the veins of the lower limbs and the inferior vena cava should be systematically carried out in all cases of pulmonary embolus which are not immediately life-threatening to the patient. The treatment of deep vein thrombosis associated with pulmonary embolism with thrombolytic agents has been proposed and utilized for approximately 20 years. Although superior results have been claimed with thrombolytic agents, the use of this type of treatment remains limited to massive or sub-massive pulmonary embolism. Fibrinolytic agents with high specificity for fibrin in the thrombi and little systemic activation of the fibrinolytic system have been developed and tested in preliminary clinical trials of patients with acute pulmonary embolism. The largest published experience available has been with recombinant tissue plasminogen activator (rtPA). The acylated streptokinase-plasminogen complex (APSAC) and pro-urokinase also gave promising results. All these agents were accompanied by unexpectedly high incidence of systemic activation of the fibrinolytic system and by hemorrhagic complications with frequencies similar to those that follows the use of first generation products (urokinase and streptokinase). Hence, their superior clinical efficacy must be clearly proven before they are substituted for a more widely available and less expensive drug, such as streptokinase.

Acute Disease

Contribution of peripheral blood pooling to central hemodynamic disturbances during endotoxin insult in intact dogs.

The aim of the present study was to determine possible effects of Escherichia coli endotoxin on peripheral vascular compliance and relate them to concomitant central hemodynamic disturbances. Endotoxin was infused at 0.25 micrograms/kg.min during 2 h in six anesthetized dogs, while six additional animals served as controls. Vascular compliance of the systemic circulation was calculated in intact animals from the changes in CVP after known changes in systemic blood volume. In control dogs, vascular compliance averaged 2.3 ml/mm Hg.kg body weight. During slow endotoxin infusion, cardiovascular effects were measurable only after a certain period of time had elapsed from the start of endotoxin insult and consisted of hypotension associated with systemic vasodilation. Systemic BP decreased gradually from 124 to 68 mm Hg while vascular compliance was finally increased by 100%, when compared to control values. This latter rise was responsible for a reduction in the cardiac preloads. Pulmonary wedge pressure and CVP were decreased from 7.1 to 3.4 and from 4.5 to 2.6 mm Hg, respectively. However, parallel to the decrease in left ventricular preload, endotoxin induced a progressive decrease in left ventricular afterload. Because of the balance in ventricular loading, cardiac output remained almost unchanged. After volume loading (dextran 30 ml/kg), cardiac output was remarkably increased from 3.28 to 6.24 L/min.m2 while peripheral vasodilation was not affected by this maneuver. It is concluded that low dose endotoxin infusion induces in dogs a hemodynamic pattern similar to human sepsis. The left ventricular loading changes are related to an enhanced systemic vascular compliance from 2.3 to 4.5 ml/mm Hg.kg. High flow shock state is encountered provided peripheral blood pooling is compensated by adequate volume replacement.

Animals

Effects of intravascular volume expansion on lung fluid balance in a canine model of septic shock.

We tested the early effects of endotoxin on both the permeability of capillary membranes and microvascular pressure. One group of dogs (n = 8) were fluid loaded (30 ml/kg dextran-40) after having been subjected to a 2-h Escherichia coli endotoxin infusion (0.25 micrograms/kg X min). A second control group of animals (n = 6) was submitted to a similar (25 ml/kg) volume loading over an equivalent 30-min period. We estimated extravascular lung water (EVLW), calculated the effective pulmonary capillary pressure, and determined the alveolar-capillary filtration coefficient (Kf) after volume loading. Only the septic animals consistently showed elevated EVLW values consistent with pulmonary edema. The results showed, however, that the Kf calculated for the dogs that received endotoxin was no different from that of control group (Kf = 0.005 ml/kg X min X mm Hg). Instead, endotoxin constricted the pulmonary veins which led to a considerable rise in microvascular hydrostatic pressure above the level at which the lungs could not resist edema formation. We conclude that acute pulmonary edema that follows endotoxin insult and subsequent therapeutic volume replacement is due to an increased filtration force instead of an alteration in the microvascular permeability.

Animals

A comparison of Escherichia coli endotoxin single bolus injection with low-dose endotoxin infusion on pulmonary and systemic vascular changes.

The purpose of this study was to compare effects of single bolus endotoxin injection with sustained low-dose endotoxin infusion on systemic and pulmonary hemodynamics in anesthetized dogs. When administered as a bolus (.01 mg/kg), endotoxin induced systemic vascular changes whose evolution could be divided into two consecutive phases. In the early phase, marked hepatic venoconstriction caused a rise in portal pressure followed by abrupt decreases in both cardiac output and blood pressure. Mean pulmonary artery pressure remained unchanged. Because of lowered blood flow, both peripheral and pulmonary resistances increased. The rise in the latter was due to a prominent vasoconstriction of pulmonary arteries. Following a partial spontaneous recovery from shock, the late phase was characterized by a low-output state combined with high systemic vascular resistances. In contrast, when endotoxin was given at a slow infusion rate (250 ng/kg/min) over a 2-hour period of time, cardiovascular effects were basically different from the preceding ones, and they were measurable only after a certain period of time had elapsed from the start of endotoxin insult. First, blood pressure decreased gradually, while cardiac output remained almost unchanged. Therefore, peripheral resistance was decreased. Second, in the pulmonary circulation, the site of vasoconstriction was shifted from arteries to veins. We conclude that there is a fundamental difference in the response of the dog's systemic and pulmonary circulation as a function of endotoxin administration as either a bolus or slow infusion. This difference might be due to sudden elevated portal pressure responsible for an abrupt cardiovascular collapse in dogs subjected to bolus injection.

Animals

Pulmonary hydrostatic microvascular pressure changes and lung fluid balance during histamine infusion in intact dogs.

The effects of histamine on systemic and pulmonary hemodynamics of dogs were studied in six intact animals. Histamine infusion resulted in an almost immediate, precipitous fall in blood pressure (BP), pulmonary capillary wedge pressure (PCWP), and right atrial pressure (RA) as well as an increase in heart rate. Partial recovery occurred about 5 minutes after infusion was stopped. Cardiac output did not change significantly. Consequently, the calculated peripheral resistance decreased afterwards. Hepatic portal pressure rose significantly after 2 minutes of histamine infusion with partial recovery in about 5 minutes. Suprahepatic venous pressure did not change significantly. Although pulmonary arterial pressure did not necessarily rise, total pulmonary vascular resistance increased in every dog. If the absolute level in pulmonary arterial resistance remained greater (Ra 105 mm Hg/liter-1 min X kg-1) than the level of venous resistance (Rv 70 mm Hg/liter-1 min X kg-1), the relative increase in venous resistance (100%) was higher than the increase in Ra (35%). On the other hand, effective capillary pulmonary pressure remained unchanged. Central blood volume and extravascular lung water increased upon histamine infusion and returned rapidly to baseline when histamine infusion was stopped. No significant changes occurred in either effective pulmonary compliance and arterial blood gas values. Our data lead us to conclude that histamine's major action occurs in the venous pulmonary segments; pulmonary and splanchnic blood pooling is responsible for a fall in cardiac preload; and an increase in extravascular lung water and central blood volume with unchanged effective pulmonary pressure might be explained by an increase in microvascular surface area.

Animals

Effects of Escherichia coli endotoxin on pulmonary vascular resistance in intact dogs.

The effects of endotoxin on pulmonary hemodynamics were studied in seven intact dogs. The distribution of pulmonary vascular resistance was estimated by the effective pulmonary capillary pressure, which was derived from the pressure transient recorded while the pulmonary artery catheter was rapidly wedged. After the injection of endotoxin, cardiac output and aortic pressure consistently fell. Pulmonary artery occlusion (wedge) pressure also decreased, but not significantly. Although pulmonary artery pressure did not necessarily rise, total pulmonary vascular resistance increased in every dog. The absolute increase in pulmonary artery resistance was greater (142 mm Hg/L X min/kg); than in venous resistance (111 mm Hg/L X min/kg); however, the relative increase in venous resistance was higher (410% for venous resistance vs. 220% for pulmonary artery resistance). As a result of venoconstriction, there was a consistent increase in effective pulmonary capillary pressure (from 2.5 to 6.3 mm Hg). Our data indicate that the pulmonary vascular response to endotoxin injection is characterized by constriction of both pulmonary arteries and pulmonary veins. The capillary wedge pressure did not reflect the pulmonary microvascular pressure, since it varied in the opposite direction to the effective capillary pressure.

Animals

Lack of defective cardiac oxidative metabolism in intact dogs subjected to a prolonged low-dose infusion of Escherichia coli endotoxin.

The aim of the present study was to determine possible direct adverse effects of a 2-hour Escherichia coli endotoxin infusion (50 ng kg-1 min-1) on myocardial oxidative carbohydrate metabolism. The experiments were performed in intact dogs to assay glucose and lactate cardiac uptake and relate them to oxygen consumption (MVO2), CO2 production, and myocardial hemodynamics. Coronary sinus blood flow (CSBF) was measured by thermodilution, and the arteriovenous differences in glucose, lactate, pyruvate, O2, and CO2 were determined by blood samples obtained simultaneously from the carotid artery and sinus coronary. The adequacy of CSBF in meeting cardiac oxygen needs was evaluated by calculating the percentage of anaerobic metabolic rate (% AMR). During endotoxin infusion, CSBF was significantly lowered by 33% while mean aortic blood pressure was decreased by 43%. Cardiac index exhibited a minimal reduction of 14%. Mean arterial blood glucose decreased 30% and arterial lactate increased 100%. Despite the progressively developing hypoglycemia, cardiac glucose uptake increased 140%. Although MVO2 was reduced to 70% of control value, lactate uptake increased 50%. Throughout the experimental period, the % AMR remained negative. Under endotoxin infusion, up to 78% of the cardiac CO2 production was derived from carbohydrate utilization, as compared to 40% prior to endotoxin infusion. Our findings suggest the absence of any toxic action by an endotoxin-sustained infusion on cardiac oxidative metabolism.

Animals

[Hemodynamic and respiratory effects of the perfusion of low-dose endotoxin in intact heparinized dogs].

In the anesthetized dog, a low dose perfusion of endotoxin (50 ng X kg-1 X min-1) produces hemodynamic and metabolic perturbations generally similar to those clinically found in man during the hemodynamic phase of septic shock. These modifications are observed after about 30 minutes following the beginning of the perfusion. They constitute: 1) an arterial vasodilatation responsible for a hypotension without a significant modification of the cardiac output; 2) a drop in the left ventricular filling pressure; 3) a progressive metabolic acidosis; 4) a moderate arterial hypoxia that is independent of an alveolar hypoventilation. To these perturbations is added the contemporary development of a leucopenia associated with a thrombopenia. This mode of endotoxin administration seems to us to constitute a satisfactory experimental model for studying the circulatory injuries due to hyperdynamic septic shock.

Animals

Hemodynamic effects of nifedipine on secondary pulmonary hypertension in man.

We evaluated the hemodynamic effects of the calcium antagonist nifedipine in 13 consecutive patients admitted to the intensive care unit with secondary pulmonary hypertension. Etiology of secondary pulmonary hypertension was: chronic obstructive pulmonary disease (n = 9), pulmonary emboli (n = 2), pulmonary fibrosis (n = 2). We obtained the resting hemodynamic parameters before, and 60, 120, 180 minutes after the sublingual administration of nifedipine 20 mg. All patients had normal pulmonary artery wedge pressure before nifedipine. After 60 minutes, systolic pulmonary artery pressure fell from 72.3 +/- 7 to 57.3 +/- 5.4 mm Hg (p less than 0.005) and mean pulmonary artery pressure from 44.6 +/- 4.0 to 33.6 +/- 3.2 mm Hg (p less than 0.001). Cardiac output rose from 6.36 +/- 0.56 to 7.65 +/- 0.64 l/min (p less than 0.005). The pulmonary vascular resistance fell from 431 +/- 58 to 238 +/- 36 dynes. sec. cm-5 (p less than 0.001). Heart rate, mean systemic arterial pressure, pulmonary artery wedge pressure, total systemic vascular resistance and arterial partial pressure of O2 (PaO2) remained unchanged. In this heterogenous population we were unable to reproduce the results of other authors, showing a correlation between PaO2 and fall of pulmonary vascular resistance. These findings confirm the pulmonary vasodilating effect of nifedipine in patients with secondary pulmonary hypertension.

Blood Pressure

The use of low doses of dopamine in intensive care medicine.

The dopamine alpha- and beta-adrenoceptor dose-response curves are investigated in four patients who are exempt from cardiovascular disease. A dose-related increase in CO, HR and SV is observed with infusion rates of up to 3 micrograms kg-1 min-1. With concentrations greater than 10 micrograms kg-1 min-1, both BP and SVR increase. Low-dose dopamine infusion less than 3 micrograms kg-1 min-1 is investigated in ten other patients. With this infusion rate, a selective renal vasodilation is induced without peripheral or cardiac beta-adrenoceptor activation. Dopamine is responsible for an increase in diuresis FENa, GFR and RBF. These properties are indicated in renal failure, and when haemodynamic support is required in cardiac failure, if an infusion rate of up to 10 micrograms kg-1 min-1 is able to reverse cardiac insufficiency.

Critical Care

[Reciprocal potentiation of the bronchoconstrictor activity of histamine and 5-hydroxytryptamine in the guinea pig].

Bronchoconstriction due to aerosolized histamine (H), 5-hydroxytryptamine (5-HT) and combined administration of both substances has been studied on 53 guinea-pigs. The results are consistant with: a major bronchoconstrictor effect obtained with H than with 5-HT; a potentiation of the individual effects of H and 5-HT in two thirds of the guinea-pigs, by the combined administration of the two drugs simultaneously; a more potent antagonistic effect of Ketanserin against 5-HT than against H; potentiation due to the combined administration of 5-HT and H is suppressed by Ketanserin; neither vagal reflexes nor cholinergic receptors seem to interfere with the bronchospastic response of the guinea-pig to H and 5-HT.

Animals

Pulmonary lymphangiomyomatosis.

Pulmonary lymphangiomyomatosis is a rare disease of smooth muscle proliferation in the walls of lymphatic vessels and in the interstitial areas of the lungs. It only affects women of reproductive age. The majority of patients die from respiratory failure within 10 years. A new observation of pulmonary lymphangiomyomatosis is reported in a woman of 36 years. The disease was discovered at an advanced stage of respiratory failure. Left-sided pleurectomy and treatment with medroxy-progesterone and tamoxifen did not improve the patient's condition.

Adult