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Biomedical subjects

A Barankay

Publications and source records attributed to A Barankay.

At least 19 recordsLinked to original sources

Cardiac surgery with deep hypothermic circulatory arrest produces less systemic inflammatory response than low-flow cardiopulmonary bypass in newborns.

OBJECTIVE: We sought to compare low-flow cardiopulmonary bypass with deep hypothermic circulatory arrest in respect to the influence on the systemic inflammatory response. METHODS: Twenty-three infants weighing less than 10 kg and scheduled for repair of congenital malformations were enrolled in a randomized, controlled study. Eleven patients underwent cardiac surgery with deep hypothermic circulatory arrest (the DHCA group). Low-flow cardiopulmonary bypass was used in another 12 patients (the LF group). Interleukin 6 and 8 and anaphylatoxin C3a levels were measured 6 times perioperatively. Also, perioperative weight gain and a radiologic soft-tissue index were compared. RESULTS: All patients had an uneventful clinical course. Duration of deep hypothermic circulatory arrest was 40 +/- 4 minutes; the bypass time was significantly shorter in the DHCA group (85 +/- 8 vs 130 +/- 19 minutes). However, the duration of the operation was similar in both groups (245 +/- 30 vs 246 +/- 30 minutes). During cardiopulmonary bypass (rewarming), the concentration of C3a (3751 +/- 388 vs 5761 +/- 1688 ng/mL, mean +/- SEM) was significantly lower in the DHCA group than in the LF group. The interleukin 8 level was significantly lower, and the interleukin 6 level had a tendency to be lower in the DHCA group compared with levels in the LF group. There was less weight gain on the first postoperative day in the DHCA group (65 +/- 61 vs 408 +/- 118 g). The soft-tissue index suggested reduced edema formation in the DHCA group. CONCLUSION: Deep hypothermic circulatory arrest produces less systemic inflammatory response than low-flow cardiopulmonary bypass. In addition, there is an indication of less fluid accumulation postoperatively.

Blood Pressure↗

Do not resuscitate orders in different countries.

Health care decision making in severely ill patients presents many difficult medical, ethical and legal problems. Physicians, including anaesthesiologists, are frequently confronted with dilemmas regarding the appropriateness of risky interventions and the balance of potential benefits versus risks. The risks include not only death and the pain and suffering that are related to the interventions, but also (and arguably more importantly) the burdens of lingering disability, loss of independence and poor quality of life. This review presents recent findings (focusing on papers published between 1999 and March 2001), and explores the background for the introduction of do not resuscitate policies and their use in clinical practice in different countries. Problems with auditing and implementing do not resuscitate policies are highlighted.

Journal Article↗

Evidence for inflammatory responses of the lungs during coronary artery bypass grafting with cardiopulmonary bypass.

OBJECTIVE: The occurrence of a systemic inflammatory reaction during cardiac surgery with cardiopulmonary bypass (CPB) has been well established, and the heart itself has been shown to release inflammatory mediators after ischemia. The hypothesis of the present study was that the lungs are also a site of inflammatory responses during early reperfusion. METHODS: In 20 consecutive patients undergoing coronary artery bypass grafting, blood was simultaneously drawn from the right atrium (RA) and the pulmonary vein (PV) before CPB and at 1 min, 10 min, and 20 min of reperfusion. The levels of interleukin (IL)-6, IL-8, IL-10, and tumor necrosis factor (TNF)-alpha were determined, as well as the adhesion molecules CD41 and CD62 on platelets and CD11b and CD41 on leukocytes. As a measure of the pulmonary release, ratios of PV and RA levels were calculated. RESULTS: Before CPB, the concentrations of cytokines tended to be lower in the PV compared with the RA. At 1 min of reperfusion, no significant concentration increases were found in the PV. At 10 min of reperfusion, the PV/RA ratio (mean +/- SEM) for IL-6 was 2.06 +/- 0.37 and 1.24 +/- 0.15 for IL-8 (p = 0.02 and p = 0.04, respectively, compared with the pre-CPB ratios of 0.89 +/- 0.4 and 0.99 +/- 0.2). At 20 min of reperfusion, PV/RA ratios for IL-6 (1.95 +/- 0.37) and IL-10 (0.99 +/- 0.4) were higher than before CPB (0.89 +/- 0.04, p = 0.05 and 0.85 +/- 0.06, p = 0.03, respectively). Adhesion molecule counts on platelets and polymorphonuclear neutrophils (PMNs) tended to be higher in the PV than in the RA before CPB. At 1 min of reperfusion, the PV/RA ratio of CD41 on monocytes (0.89 +/- 0.04) and of CD41 on PMNs (1.05 +/- 0.05) was less than before CPB (1.24 +/- 0.08, p = 0.0002 and 1.55 +/- 0.14, p = 0.0002). At 10 min and 20 min of reperfusion, similar changes were found. CONCLUSIONS: The observed changes indicate an inflammatory response of the lungs. Proinflammatory cytokines are increased in pulmonary venous blood. At the same time, activated blood cells are retained in the pulmonary circulation. This may contribute to pulmonary dysfunction almost routinely observed after CPB.

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Drew-Anderson technique attenuates systemic inflammatory response syndrome and improves respiratory function after coronary artery bypass grafting.

BACKGROUND: Cardiopulmonary bypass causes inflammatory reactions leading to organ dysfunction postoperatively. This study was undertaken to determine whether using patients' own lungs as oxygenator in a bilateral circuit (Drew-Anderson Technique) could reduce systemic inflammatory response to cardiopulmonary bypass, improving patients clinical outcome following coronary artery bypass grafting. METHODS: A prospective randomized controlled trial involving 30 patients, divided in two groups of 15 patients each, undergoing elective coronary artery bypass grafting, was undertaken. In the Drew-group bilateral extracorporeal circulation using patient's lung as oxygenator was performed. The other patients served as control group, where standard cardiopulmonary bypass procedure was used. RESULTS: Pro-inflammatory and anti-inflammatory mediators were measured. Peak concentrations of proinflammatory interleukin-6, interleukin-8, were significantly lower in 15 patients undergoing Drew-Anderson Technique compared with the concentrations measured in 15 patients treated with standard cardiopulmonary bypass technique. Differences in patient recovery were analyzed with respect to time of intubation, blood loss, intrapulmonary shunting, oxygenation, and respiratory index. In patients undergoing uncomplicated coronary artery bypass grafting procedures bilateral extracorporeal circulation using the patients' own lung as oxygenator provided significant biochemical and clinical benefit in comparison to the standard cardiopulmonary bypass procedure. CONCLUSIONS: This prospective randomized clinical study has demonstrated that exclusion of an artificial oxygenator from cardiopulmonary bypass circuit significantly decreases the activation of inflammatory reaction, and that interventions that attenuate this response may result in more favorable clinical outcome.

Aged↗

Sodium nitroprusside in patients with compromised left ventricular function undergoing coronary bypass: reduction of cardiac proinflammatory substances.

OBJECTIVE: The aim of the present study was to investigate whether the nitric oxide donor sodium nitroprusside can reduce the cardiac inflammatory response during coronary artery bypass grafting in patients with severely compromised left ventricular function. METHODS: Patients (n = 30) were assigned to receive placebo or sodium nitroprusside (0.5 microg. kg(-1). min(-1)) for the first 60 minutes of reperfusion. Interleukin 6, interleukin 8, and tumor necrosis factor alpha levels; platelet adhesion molecule CD41 and CD62 levels; and CD11b on leukocytes were determined in the radial artery and coronary sinus before cardiopulmonary bypass and during reperfusion (1, 5, 10, 35, and 75 minutes). RESULTS: At 1 minute of reperfusion, coronary venous levels of CD41-positive polymorphonuclear leukocytes were 8% lower than arterial levels in the placebo group and 18% higher in the sodium nitroprusside group (P =.021). At 5 minutes of reperfusion, the respective levels were 29% and 1% for interleukin 6 (P =.015), -5% and 20% for CD41-positive monocytes (P =.032), and -2% and 16% for CD11b-positive monocytes (P =.038). At 10 minutes of reperfusion, these levels were -14% and 21% for CD41-positive monocytes (P =.006). At 35 minutes of reperfusion, these levels were -13% and 7% for CD41-positive monocytes (P =.017), -41% and 23% for CD11b-positive monocytes (P =.001), and 7% and 25% for CD62-positive platelets (P =. 041). At 75 minutes of reperfusion, the levels were 15% and -7% for tumor necrosis factor alpha (P =.025) and -10% and 10% for CD62-positive platelets (P =.041). CONCLUSIONS: Transcardiac production of proinflammatory cytokines is reduced in patients undergoing coronary artery bypass grafting treated with the nitric oxide donor sodium nitroprusside. At the same time, less activated leukocytes and platelets are retained in the coronary circulation.

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High-dose aprotinin modulates the balance between proinflammatory and anti-inflammatory responses during coronary artery bypass graft surgery.

OBJECTIVE: To rule out the effect of high-dose aprotinin in respect to the balance of proinflammatory and anti-inflammatory mediators induced by cardiopulmonary bypass (CPB). DESIGN: Randomized, double-blind, placebo-controlled study. SETTING: University-affiliated cardiac center. PARTICIPANTS: Twenty patients scheduled for coronary artery bypass graft surgery. INTERVENTIONS: In group A patients (n = 10), high-dose aprotinin was administered (2 x 106 KIU pre-CPB, 2 x 10(6) KIU in prime, 500,000 KIU/hr during CPB). In group C patients (n = 10), placebo was used instead. Proinflammatory interleukin (IL)-6, anti-inflammatory IL-1-receptor antagonist, and clinical parameters were measured 8 times perioperatively. The values are presented as mean +/- SEM. MEASUREMENTS AND MAIN RESULTS: Four hours after CPB, IL-6 concentration reached the maximum value, being significantly lower in group A patients as compared with group C patients (615 +/- 62 pg/mL v 1,409 +/- 253 pg/mL; p = 0.019). On the first postoperative day, the concentration of IL-6 in group A patients remained lower (219 +/- 24 pg/mL v 526 +/- 123 pg/mL; p = 0.015). In contrast, IL-1-receptor antagonist concentration was higher in group A patients as compared with group C patients after CPB (13,857 +/- 4,264 pg/mL v 5,675 +/- 1,832 pg/mL; p = 0.03). Total postoperative blood loss was lower in group A patients as compared with group C patients (648 +/- 64 mL v 1,284 +/- 183 mL; p = 0.002). CONCLUSIONS: High-dose aprotinin treatment reduced the inflammatory reaction and postoperative blood loss. The anti-inflammatory reaction was significantly enhanced in these patients, which suggests that the physiologic reaction of the organism to reduce the deleterious effects from CPB is more pronounced by using high-dose aprotinin.

Aprotinin↗

Significant leukocyte and platelet retention during pulmonary passage after declamping of the aorta in CABG patients.

During reperfusion of the heart and the lungs in patients undergoing coronary artery bypass grafting, these organs have been shown to release inflammatory mediators. The present study was performed to quantitatively determine cellular retention or washout during pulmonary passage in early reperfusion. In 14 consecutive patients undergoing coronary artery bypass grafting blood was simultaneously drawn from right atrium and pulmonary vein at 1, 10 and 20 min reperfusion. The counts for platelets, leukocytes and the leukocyte subsets polymorphonuclear neutrophils (PMN), lymphocytes and monocytes were determined. Pulmonary veno-right atrial (transpulmonary) differences are given in percent with respective right atrial values being considered as 100%. Before CPB leukocyte counts were 4.7 +/- 0.5 in right atrium and 4.2 +/- 0.4 in pulmonary vein, x10(9)/l, resp. (transpulmonary difference of -8 +/- 3%). During reperfusion, pulmonary retention was in the range of 20-23% (p <0.01 vs. right atrial value). The basal values for PMN were 2.4 +/- 0.3 in right atrium and 1.9 +/- 0.3 in pulmonary vein, x10(9)/l, resp. (transpulmonary difference -15 +/- 8%). Thereafter, retention was in the range of 25-30% (p <0.01 vs. right atrium). Basal values for lymphocytes were 1.5 +/- 0.2 in right atrium and 1.6+/-0.3 in pulmonary vein, x10(9)/l, resp. (transpulmonary difference +6 +/- 10%). A tendency towards a washout of lymphocytes at 1 min reperfusion (+1 +/- 12%) was followed by retention of these cells at 10 and 20 min reperfusion (-14 +/- 12% and -10 +/- 5%, p <0.05 vs right atrium). Before ischemia monocyte counts were 0.7 +/- 0.2 in right atrium and 0.6 +/- 0.2 in pulmonary vein, x10(9)/l, resp. (transpulmonary difference -10 +/- 4%) and -9 +/- 9%, -27 +/- 12% (p <0.05 vs right atrium) and -22 +/- 14% at 1, 10 and 20 min reperfusion. During early reperfusion of the lungs after declamping of the aorta, significant amounts of leukocytes, platelets and the leukocyte subsets are retained in the pulmonary vascular bed. These retained cells may be responsible for the previously described pulmonary release of cytokines.

Aged↗

Sodium nitroprusside during coronary artery bypass grafting: evidence for an antiinflammatory action.

BACKGROUND: It was the aim of the present study to investigate whether a nitric oxide donor can reduce systemic inflammation and the cardiac inflammatory response during coronary artery bypass grafting with cardiopulmonary bypass. METHODS: Patients undergoing elective coronary artery bypass grafting (n = 22) were randomly assigned to treatment with either sodium nitroprusside (0.5 microg x kg(-1) x min(-1)) or placebo (controls), both for the first 20 minutes of reperfusion. Interleukin-6 and interleukin-8 levels, the adhesion molecules CD41 and CD62 on platelets and CD41 on monocytes and PMN (as markers for coaggregate formation), CD11b on monocytes and PMN, as well as platelet and leukocyte counts were determined in radial artery and coronary sinus blood before cardiopulmonary bypass and during reperfusion (1, 5, 10, 25, and 35 minutes). RESULTS: A reduction of systemic interleukin-6 levels (15.4+/-3.5 pg/mL, 36.7+/-5.9 pg/mL, and 46.8+/-8.0 pg/mL versus 33.4+/-7.7 pg/mL, 76.7+/-13.2 pg/mL, and 106.0+/-26.5 pg/mL, respectively, at 1, 25, and 35 minutes of reperfusion) and interleukin-8 (29.6+/-4.5 pg/mL versus 54.0+/-9.4, pg/mL, resp., at 35 minutes of reperfusion) resulted from treatment with sodium nitroprusside. No intracardiac production of interleukin-8 in sodium nitroprusside-treated patients (-1.1+/-0.4 pg/mL and -2.8+/-2.2 pg/mL, resp., for the coronary sinus-radial artery difference at 5 and 25 minutes of reperfusion) was observed, whereas cardiac production of interleukin-8 was present in controls (2.5+/-1.5 pg/mL and 5.5+/-2.8 pg/mL, resp.). Retention of platelet/leukocyte coaggregates occurred during coronary passage in controls (coronary sinus-radial artery difference for CD41-positive monocytes at 1 and 10 minutes of reperfusion, -16.3%+/-8.5% and -8.8%+/-2.6%, resp.). This was reduced in sodium nitroprusside-treated patients (with 5.8%+/-5.2% and 0.0%+/-3.2%). Retention of platelets in controls (ratio of coronary sinus to radial artery platelet count at 5 and 10 minutes of reperfusion, 88%+/-6% and 91%+/-5%) was compared to washout in treated patients (108%+/-6% and 113%+/-7%). CONCLUSIONS: In patients undergoing routine coronary artery bypass grafting, administration of sodium nitroprusside during early reperfusion alleviates systemic inflammation and the cardiac inflammatory response.

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Does high-dose methylprednisolone in aprotinin-treated patients attenuate the systemic inflammatory response during coronary artery bypass grafting procedures?

OBJECTIVE: To discover the possible effects of methylprednisolone on the systemic inflammatory response during aprotinin treatment. DESIGN: Randomized, double-blinded study. SETTING: University-affiliated heart center. PARTICIPANTS: Fifty-two patients scheduled for elective coronary artery bypass grafting. INTERVENTIONS: In the methylprednisolone group (n = 26), 1 g of methylprednisolone was administered 30 minutes before cardiopulmonary bypass (CPB). The 26 control patients received a placebo instead. High-dose aprotinin was administered to all participants. MEASUREMENTS AND MAIN RESULTS: After CPB, the concentration of the proinflammatory cytokines, interleukin-6 and interleukin-8, was significantly less in the methylprednisolone group. The anti-inflammatory interleukin-10 concentration was, in contrast, greater. After CPB, PaO2 was greater in the methylprednisolone group (245+/-17 v 195+/-16 mmHg). Dynamic pulmonary compliance was also greater, whereas the alveolar-arterial oxygen difference was less (376+/-17 v 428+/-16 mmHg). On arrival in the intensive care unit, the oxygen delivery index was greater in the methylprednisolone group (62+/-2.7 v 54+/-2.3 mL/min/m2) and the oxygen extraction rate was less (25%+/-0.02% v 30%+/-0.02%). After CPB, the cardiac index was significantly greater in the methylprednisolone group (4.1+/-0.2 v 3.6+/-0.2 L/min/m2). These patients had less blood loss postoperatively (616+/-52 v 833+/-71 mL; p = 0.017) and a greater urine output (8,015+/-542 v 6,417+/-423 mL/24 h; p = 0.024). CONCLUSION: The use of methylprednisolone attenuates the systemic inflammatory response during aprotinin treatment and improves clinical outcome parameters.

Anti-Inflammatory Agents↗

Influence of combined zero-balanced and modified ultrafiltration on the systemic inflammatory response during coronary artery bypass grafting.

OBJECTIVE: To evaluate whether combined zero-balanced and modified ultrafiltration affects the systemic inflammatory response in coronary artery bypass graft (CABG) patients. DESIGN: Randomized and controlled. SETTING: University-affiliated heart center. PARTICIPANTS: Forty-three patients scheduled for elective CABG. INTERVENTIONS: In the ultrafiltration group (UF group; n = 21), zero-balanced ultrafiltration was performed during rewarming and modified ultrafiltration immediately after the end of cardiopulmonary bypass (CPB). A control group of patients (n = 22) was treated identically to the treatment group except no ultrafiltration process was performed. MEASUREMENTS AND MAIN RESULTS: Immediately after CPB (ie, after zero-balanced ultrafiltration), and again after the modified ultrafiltration, the concentrations of interleukin-6 and interleukin-8 were significantly less (p < 0.05) in the UF group compared with the control group. Both proinflammatory cytokine levels peaked at 2 and 4 hours after CPB, at which time no difference between the two groups could be observed. The levels of measured anti-inflammatory mediators (interleukin-10 and interleukin-1 receptor antagonist) did not show any difference between the two groups. Intrapulmonary shunt fraction decreased in the course of the modified ultrafiltration from 31% +/- 1.2% to 25% +/- 1.3% (p < 0.01), whereas mean arterial pressure increased (69 +/- 1.8 to 80 +/- 2.8 mmHg; p < 0.01); neither parameter changed in the control group. Time to extubation was shorter in the UF group (6.1 +/- 0.5 v 8.6 +/- 0.7 hours; p < 0.05). CONCLUSION: It was concluded that the use of ultrafiltration diminished inflammatory response in a very limited time period immediately after CPB and, probably as a consequence, slightly improved clinical parameters.

Blood Pressure↗

Hemostatic activation during cardiopulmonary bypass with different aprotinin dosages in pediatric patients having cardiac operations.

The effect of high-dose aprotinin treatment on hemostatic activation during cardiopulmonary bypass in pediatric patients having cardiac operations was investigated. Sixty patients weighing less than 10 kg undergoing cardiac operations for different types of congenital heart diseases were studied: 20 patients were treated with aprotinin 2 x 15,000 KIU/kg, 20 patients with 2 x 30,000 KIU/kg, and 20 patients without aprotinin treatment served as the control group. Different split products of fibrinogen and/or fibrin and the fibrinolytic activity on fibrin plates were measured to assess fibrinolytic activation. F1/F2 prothrombin fragments, thrombin-antithrombin III-complex, and fibrin monomers were measured to estimate thrombin activation. There was a significant dose-dependent reduction in fibrin-fibrinogen split product formation during cardiopulmonary bypass: In the high-dose aprotinin group the concentration of the split products at the end of bypass was 1.5 +/- 0.6 micrograms/ml, compared with 3.4 +/- 3.0 micrograms/ml in the low-dose aprotinin group and 6.7 +/- 3.5 micrograms/ml in the control group (p < 00.5). Fibrinolytic activation on fibrin plates was also significantly reduced by aprotinin. Fibrin monomer formation was significantly diminished at the end of cardiopulmonary bypass in the high-dose group: 9.2 +/- 5.2 micrograms/ml compared with 21.6 +/- 14 micrograms/ml in the control group (p < 00.5). Elastase in complex with alpha 1-protease inhibitor at the end of bypass was increased to the same amount in the three groups: 784 +/- 278 ng/mL (control group), 693 +/- 189 ng/ml (low-dose aprotinin), and 719 +/- 270 ng/mL (high dose aprotinin) (no significant difference). Blood loss 6 hours postoperatively was significantly (p < 00.5) less in the high-dose group (99 +/- 32 ml/m2) than in the control group (164 +/- 87 ml/m2; low-dose group: 160 +/- 106 ml/m2). These observations suggest an attenuation of hemostatic activation during cardiopulmonary bypass with less plasmin formation and, because of inhibition of contact activation, less thrombin generation with aprotinin treatment. Thus the thrombotic-thrombolytic equilibrium is kept more balanced after cardiopulmonary bypass. High-dose aprotinin treatment is recommended for pediatric patients undergoing cardiac operations.

Antithrombin III↗

Central venous catheterization in infants and children with congenital heart diseases: experiences with 500 consecutive catheter placements.

In a prospective study results of central venous catheter (CVC) placements in a consecutive group of 500 patients with less than 20 kg body weight undergoing cardiac surgery were evaluated. The incidence of previous cardiac surgery was 21% and the incidence of factors preventing the primary puncture of the right jugular or innominate vein was 13.4%. The anesthesiologists were free to select the catheterization technique, site of puncture, and catheter type. All CVC insertions were performed prior to surgery under continuous circulatory monitoring and optimal positioning of the anesthetized patient. Ninety-six percent of all catheterizations were successful, 81% of them on the first attempt. In the 4% of cases where catheterization failed, a CVC had to be placed by the surgeon. Of all catheters, 66% were positioned via the right internal jugular (IJV) or innominate vein (IV), 8% via the left, 16% via an external jugular vein (EJV), and 5% via other veins. Seventy-six percent of CVC insertions were performed with the Seldinger technique. Of the four catheter types used in this study, double lumen catheters were most frequently selected (38%). Placement of 22-ga single lumen catheters was preferred in infants with less than 5 kg body weight, in spite of their tendency to kink. Observed complications (10% arterial puncture, 4% hematoma, and 1% intrathoracic bleeding) never required immediate surgical intervention. Careful selection of appropriate catheters, as well as extensive experience and knowledge of the anatomical structures involved in special heart defects, helped to keep the risk of complications low.

Body Weight↗

Effects of the serotonin-antagonist ketanserin on the function of ischaemic and normally perfused myocardium and modification by beta-1-blockade in anaesthetized normotensive dogs.

The 5-HT-2 antagonist ketanserin (KAS) has been successfully used to treat acute hypertension in coronary bypass surgery. The present study was performed to investigate the effect of KAS on ischaemic myocardium. In 11 anaesthetized (piritramide) dogs, systolic contraction (sdL) and end-diastolic length (edL) of myocardium supplied by the left descending coronary artery (LAD) and the left circumflex coronary artery (LCX) were measured by sonomicrometry simultaneously with aortic pressure (AoP), left ventricular dP/dtmax and end-diastolic pressure (LVedP), heart rate (HR), stroke volume, and LAD flow (QLAD). Regional ischaemia to decrease sdLLAD (-48%) was achieved by LAD stenosis (QLAD -47%). Concomitantly, edLLAD increased by 8%. However, the other variables did not change. Then KAS was given i.v. (0.15 + 0.15 + 0.30 + 0.6 mg/kg) at 15-min intervals. Following KAS, prestenotic sdLLAD recovered in a dose-dependent manner. LVedP and edLLAD decreased, sdLLCX increased, and the other variables were not affected. This functional recovery of ischaemic myocardium was attenuated by pretreatment with metoprolol (MET, 1 mg/kg) prior to LAD stenosis. The ischaemic area was not irreversibly damaged, however, as proven by the recovery of prestenotic sdLLAD values after release of the stenosis. The improved systolic shortening of ischaemic myocardium following KAS did not result from restored QLAD due to post-stenotic vasodilation or break up of platelet aggregates (QLAD did not increase) or from reduced afterload (AoP did not decrease). Obviously, it was mediated by beta-1-receptors, as shown by the attenuation of the beneficial effect of KAS by pretreatment with MET.

Adrenergic beta-Antagonists↗

High-dose aprotinin in cardiac surgery: three years' experience in 1,784 patients.

The effect of the proteinase-inhibitor aprotinin on blood loss and homologous blood requirement in cardiac surgery was investigated. In a prospective study, 902 adult patients were treated with high-dose aprotinin (total greater than 5 x 10(6) kallikrein inactivator units [KIU]; group A), while 882 patients without aprotinin administration served as the controls (group C). Both groups were operated on between January 1987 and October 1989, and included patients with primary coronary artery bypass grafting (n = 525 group C, n = 560 group A), valve replacement (n = 292 group C, n = 264 group A), or combined procedures (n = 65 group C, n = 78 group A), as well as cardiac reoperations (n = 91 group C, n = 110 group A). The average blood loss 36 hours postoperatively in the aprotinin group was 679 +/- 419 mL, compared with 1,038 +/- 671 mL in the control group (P less than 0.05). Total homologous blood requirement was also significantly less in group A (942 +/- 1,630 mL) compared with group C (1,999 +/- 2,283 mL) (P less than 0.05), a reduction of 53%. Serum creatinine concentrations did not show intergroup differences on the first postoperative day (group A, 1.2 +/- 0.7; group C, 1.3 +/- 0.5 mg/dL) or on discharge from the intensive care unit (ICU). Thus, impairment of renal function as a consequence of aprotinin treatment was not observed. Three patients developed signs of mild circulatory depression after injection of aprotinin, which responded promptly to vasopressor therapy.(ABSTRACT TRUNCATED AT 250 WORDS)

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Total intravenous anesthesia for infants and children undergoing correction of tetralogy of Fallot: sufentanil versus sufentanil-flunitrazepam technique.

The effects of two total intravenous anesthetic techniques were compared in 20 infants and children undergoing primary correction of tetralogy of Fallot (TOF). All patients (mean body weight, 11.4 +/- 4.2 kg; range, 6 to 20 kg; mean age, 32 +/- 21 months, range, 7 to 85 months) were premedicated with atropine, 0.02, mg/kg, morphine, 0.2, mg/kg, and flunitrazepam, 0.04 mg/kg, intramuscularly, 1 hour preoperatively. Anesthesia was induced with 1 microgram/kg of sufentanil (S) and pancuronium, 0.1 mg/kg, intravenously. Patients were ventilated with 100% oxygen. Hemodynamic parameters, heart rate (HR), systolic (SBP), diastolic (DBP) and mean arterial blood pressure (MAP), central venous pressure (CVP), and peripheral arterial blood oxygen saturation (SaO2) were recorded. Plasma concentrations of S, epinephrine (E), norepinephrine (NE), and blood gases were determined. To obtain a further depth of anesthesia, 10 patients (SM group) received 4 micrograms/kg of S and 10 patients (SF group) received 4 micrograms/kg of S in combination with flunitrazepam, 40 micrograms/kg, in a randomized manner. Measurements were made before and after induction of anesthesia, before and after anesthetic loading, 2 minutes after sternotomy, 15 minutes after initiation of extracorporeal circulation (ECC), and at sternal closure. Peak values for plasma S concentrations of 3.14 +/- 1.13 (SM group) and 3.45 +/- 97 ng/mL (SF group) were found before sternotomy. Following intubation HR, SBP, DBP, and MAP remained close to values measured before induction, but SaO2 increased significantly (P less than 0.01) in all patients. HR, SBP, and MAP decreased during anesthetic loading in both groups. Hemodynamics and plasma E and NE remained essentially unchanged after sternotomy in the SF group.(ABSTRACT TRUNCATED AT 250 WORDS)

Anesthesia, Intravenous↗