Search PubMed⌕ Search

Biomedical subjects

M Jochum

Publications and source records attributed to M Jochum.

At least 55 records · Page 3Linked to original sources

Delayed treatment with desulfato-hirudin prevents fibrin formation in lipopolysaccharide-induced shock.

Previous work has shown that pre-treatment with the thrombin inhibitor recombinant desulfato-hirudin prevented fibrin formation and respiratory dysfunction in porcine lipopolysaccharide shock. We examined the effects of delayed administration of recombinant desulfato-hirudin in bacterial lipopolysaccharide shock. Miniature pigs were studied under anaesthesia and ventilation, and received a bacterial lipopolysaccharide infusion (2 microg/kg/h) for 7 h; recombinant desulfato-hirudin was started 1 h after bacterial lipopolysaccharide in 10 animals (bolus 12.9 nmol/kg; continuous infusion 6.5 nmol/ kg/h); 10 randomised control animals received saline instead of recombinant desulfato-hirudin. Fibrin and thrombin-antithrombin complex levels in plasma were significantly lower in bacterial lipopolysaccharide+recombinant desulfato-hirudin animals than in controls. Both groups displayed a similar rise in pulmonary vascular resistance and other parameters of lung dysfunction; only lung tissue wet/dry ratio was lower in recombinant desulfato-hirudin-treated than in control animals. Both groups had similar circulatory alterations. Recombinant desulfato-hirudin interrupted coagulation activation during ongoing bacterial lipopolysaccharide-induced shock in pigs even when administered with a delay of one hour after start of the bacterial lipopolysaccharide infusion. A protective effect of delayed recombinant desulfato-hirudin administration on bacterial lipopolysaccharide-induced acute lung injury and alterations in the systemic circulation could not be demonstrated in this experiment.

Animals↗

Perioperative pattern of peritoneal interleukin 8, tumour necrosis factor-alpha, and granulocyte elastase release in human secondary peritonitis.

Cytokine levels during infection and sepsis have been extensively studied in the past. In contrast to the excellent data on tumour necrosis factor alpha (TNF-alpha), interleukin 8 (IL-8), and polymorphonuclear (PMN) granulocyte elastase (PMN-E) concentrations in blood, little is known about cytokine and PMN-E levels in tissue or local fluids like abdominal exudate in secondary, purulent peritonitis of man. Therefore, the authors studied perioperative intra-abdominal levels of TNF-alpha, IL-8 and PMN-E in 21 patients with severe purulent peritonitis. The average pre-operative levels of TNF-alpha were 694 +/- 239 pg/ml in exudate and 26 +/- 6 pg/ml in plasma, for IL-8 100 +/- 34 ng/ml and 0.7 +/- 0.5 ng/ml, and for PMN-E 68 +/- 14 microg/ml and 0.7 +/- 0.1 microg/ml, respectively. Standard surgical procedures reduced the intra-abdominal concentrations of cytokines and PMN-E to as low as one tenth of the pre-operative levels. Postoperatively, TNF-alpha and IL-8 levels recovered rapidly and pre-operative levels of IL-8 were reached again after 1 h and for TNF-alpha after 8 h. PMN-E concentration remained below the initial baseline within 8 h of observation. TNF-alpha concentration, but not IL-8 or PMN-E, depended on the microbiological load of the abdominal exudate (< or > 10(3) cfu/ml). There were no significant differences in the intra-abdominal or plasma levels of cytokines or PMN-E between survivors and non-survivors at any observation time.

APACHE↗

Tumor necrosis factor measurement and use of different anticoagulants: possible interference in plasma samples and supernatants from endotoxin-stimulated monocytes.

OBJECTIVE AND DESIGN: Unfractionated heparin is frequently used as an anticoagulant during blood sampling and in cell culture experiments. In the present study we investigated whether heparin and other anticoagulants (citrate and EDTA) interfered with measurements of plasma tumor necrosis factor alpha (TNF alpha) concentrations or with TNF alpha release from endotoxin-stimulated monocytes. MATERIAL AND METHODS: TNF alpha was measured by a WEHI 164 bioassay in the plasma of 16 septic patients anticoagulated with heparin, citrate, or EDTA. Anticoagulants were incubated with the bioassay cell line and cell lysis was monitored. To exclude falsely low TNF alpha concentrations, anticoagulants were incubated in increasing amounts with human recombinant TNF alpha/saline solution, and rTNF alpha recovery was measured either with the WEHI 164 bioassay or an ELISA test. Further, anticoagulants were incubated with monocytes isolated from healthy volunteers and stimulated with endotoxin. Supernatants were analyzed for TNF alpha with both test systems. RESULTS: No biologically active TNF alpha was detected in the plasma with heparin anticoagulation, whereas with citrate, reproducible, TNF alpha-induced cytotoxicity was detectable in blood samples of 13 of the 16 patients. Anticoagulation with EDTA resulted in fairly high, variable and poorly reproducible TNF alpha values. Only EDTA produced falsely high values by unspecific lysis of WEHI cells. Only heparin at a concentration of 20 I.U./ml or more was found to produce falsely low values by interaction with the TNF alpha bioassay, but also with the ELISA test. In monocyte culture experiments, heparin significantly attenuated the stimulatory effect of endotoxin on TNF alpha release already at the lowest concentration tested (25 I.U./ml). CONCLUSIONS: Heparin and EDTA may have significant adverse effects on TNF alpha measurement when used for blood sampling. Citrate does not interfere with the TNF alpha bioassay or ELISA, and seems, therefore, to be the anticoagulant of choice. Due to intrinsic interactions with various cell systems (including the WEHI cell and monocytes), one should be careful in using heparin in cell culture studies in which effects of TNF alpha or of endotoxin are being studied.

Anticoagulants↗

Oxidative autoaggression by phagocytes in human peritonitis.

In 60 abdominal exudates from patients with the diagnosis of either acute or persistent (chronic) peritonitis, indicators of phagocyte-derived oxidative systems (myeloperoxidase, chemiluminescence) and proteases (elastase) were measured. These exudates reveal a picture of maximal inflammatory activation. Both types of exudates (30 each) showed a significant influx of inflammatory cells, with the mean leucocyte count being 73,000 microL and 32,000 microL-1 respectively. Local myeloperoxidase concentrations were approximately 1000-fold greater than that of normal plasma. Spontaneous and elicitable chemiluminescence--indicators of phagocyte respiratory burst activity--were dramatically increased. In addition, levels of extracellularly released elastase (from neutrophils) were found to be up to about 1000-fold that of normal plasma values. Although most of the elastase detected in the exudates was complexed with alpha 1-proteinase inhibitor (alpha 1 PI), enzymatically active elastase could be measured in approximately 60% of the samples being investigated. As there was an excess of immunoreactive alpha 1 PI in these exudates, the free elastase activity implies that much of the alpha 1 PI was inactive, presumably subjected to oxidative destruction. Moreover, a trypsin-inhibitory activity to antigen ratio below 1 (mean = 0.81) in 75% of the purulent exudates indicated also partial proteolytic degradation of alpha 1 PI. In contrast, 16 clear exudates (no bacteria, white cell count below 500 microL-1) taken from the non-infected peritoneal cavity of patients undergoing intra-abdominal surgery revealed a similar permeability increase of the peritoneum but did not show relevant oxidative and proteolytic activity or destruction of alpha 1 PI compared with purulent specimens. Thus, only the inflammatory process of peritonitis appears to result in an overwhelming local phagocytic activity that initiates and maintains protease inhibitor consumption and/or inactivation. The tremendous oxidative potential found in purulent exudates may cause destruction in a wide variety of defence systems.

Adolescent↗

Indicators of the posttraumatic inflammatory response correlate with organ failure in patients with multiple injuries.

BACKGROUND: Most prognostic indices for severely injured patients are based on anatomical findings and the vital signs. The posttraumatic organ failure, however, is thought to be triggered by the initial inflammatory response. The objective of this study was to evaluate the correlation between the early activation of inflammation and the rate of organ failure and death. METHODS: Sixty-six patients with multiple injuries (Injury Severity Score > 18, age 18-70 years, admission within 6 hours after accident, survival > 48 hours) were included in this prospective study. During a 14-day observation period, serial blood samples were collected starting within 30 minutes after admission. Plasma levels of neutrophil elastase, lactate, antithrombin III, and interleukin-6 and -8 were determined. The clinical course and the degree of organ failure were recorded daily until death or transfer to a general ward. RESULTS: The 66 severely injured patients had a mean Injury Severity Score of 40 points. Eleven patients died from multiple organ failure (group 1), 38 subjects survived a single or multiple organ failure (group 2), and 17 patients had an uneventful recovery (group 3). The initial plasma concentrations for neutrophil elastase (650 vs. 355 ng/mL), lactate (5.0 vs. 3.1 mmol/L), antithrombin III (48 vs. 62% from normal), interleukin-6 (703 vs. 177 pg/mL), and interleukin-8 (1,101 vs. 301 pg/mL) were significantly different between groups 2 and 3 already in the initial posttraumatic period. Patients from group 1 presented with significantly higher levels of these parameters as early as 24 hours after trauma compared with group 2. Different patterns were identified with respect to early versus late posttraumatic organ failure. CONCLUSIONS: These data show that the degree of the initial inflammatory response corresponds with the development of posttraumatic organ failure. Besides anatomically and physiologically based trauma scores, these parameters might be used as indicators for the injury severity.

Adolescent↗

Antithrombin III supplementation in severe sepsis: beneficial effects on organ dysfunction.

Activation of thrombin and of the coagulation system plays an important role in the pathophysiology of sepsis-associated organ dysfunction. Antithrombin III (AT III) is a natural inhibitor of thrombin, a central procoagulatory factor with pleiotropic activities. Experimental supplementation of AT III improved coagulation parameters and ameliorated organ dysfunction. To determine whether long-term AT III supplementation has beneficial effects on organ function, we conducted a randomized, prospective study in surgical patients with severe sepsis. The study evaluated the long-term effect of AT III supplementation (duration of treatment: 14 days). After randomization (AT III vs. control group), AT III was infused continuously over 14 days to obtain plasma AT III activities > 120%. Forty consecutive patients were recruited (20 AT III/20 control group). Eleven patients had a rapid fatal course and did not met the criterion of a 14 day treatment period. From these 11 patients, 8 patients (5 AT III/3 control group) died within 72 h due to septic shock. The remaining 14 AT III patients and 15 controls survived 14 days and showed no differences in baseline parameters of organ function. AT III caused a disappearance of disseminated intravascular coagulation (DIC) in all patients with DIC, whereas in control patients, the frequency of DIC remained constant (p < .05). In AT III patients a progressive increase in oxygenation index (PaO2/FiO2 ratio) and a continuous decrease in pulmonary hypertension index (mean pulmonary artery pressure/mean arterial pressure (PAP/MAP) ratio) indicated an improvement of lung function (p < .05 vs. control). AT III prevented the continuous rise in total serum bilirubin concentration observed in control patients and diminished the frequency of artificial renal support therapy (p < .05). Long-term supplementation with AT III may improve lung function and prevent the development of septic liver and kidney failure in patients with severe sepsis.

Adult↗

Bradykinin stimulates interleukin-6 and interleukin-8 secretion of human decidua derived cells.

Cytokines are known to participate in the process of parturition within a paracrine network in fetal membranes. Bradykinin can also contribute to this process, increasing the release of eicosanoids from decidua cells. In this study, we present evidence for a cross-link between bradykinin and the cytokines. Short and long term cultures of human decidua cells were incubated for 4 h and 24 h with and without bradykinin. IL-6 and IL-8 were determined in the supernatants by ELISA. Results show a large interindividual variability in the basal secretion of IL-6 and IL-8 and a clear increase in the secretion of both ILs in response to bradykinin. By this amplifying effect on cytokine secretion, bradykinin can initiate local and systemic effects of amniochorionitis.

Bradykinin↗

Effect of hemofiltration on hemodynamics and systemic concentrations of anaphylatoxins and cytokines in human sepsis.

OBJECTIVE: To determine whether hemofiltration (HF) can eliminate cytokines and complement components and alter systemic hemodynamics in patients with severe sepsis. DESIGN: Prospective observation study. SETTING: Surgical intensive care unit of a university hospital. PATIENTS: 16 patients with severe sepsis. INTERVENTIONS: Continuous zero-balanced HF without dialysis (ultrafiltrate rate 2 l/h) was performed in addition to pulmonary artery catheterization, arterial cannulation, and standard intensive care treatment. MEASUREMENTS AND MAIN RESULTS: Plasma and ultrafiltrate concentrations of cytokines (the interleukins IL-1 beta, IL-6, IL-8, and tumor necrosis factor alpha) and of complement components (C3adesArg, C5adesArg) were measured after starting HF (t0) and 4 h (t4) and 12 h later (t12). Hemodynamic variables including mean arterial pressure (MAP), mean central venous pressure, mean pulmonary artery pressure, pulmonary capillary wedge pressure, and cardiac output were serially determined. During HF, cytokine plasma concentrations remained constant. However, C3adesArg and C5adesArg plasma concentrations showed a significant decline during 12-h HF (C3adesArg: t0 = 676.9 +/- 99.7 ng/ml vs t12 = 467.8 +/- 71, p < 0.01; C5adesArg: 26.6 +/- 4.7 ng/ml vs 17.6 +/- 6.2, p < 0.01). HF resulted in a significant increase over time in systemic vascular resistance (SVR) and MAP (SVR at t0: 669 +/- 85 dyne.s/cm5 vs SVR at t12: 864 +/- 75, p < 0.01; MAP at t0: 69.9 +/- 3.5 mmHg vs MAP at t12: 82.2 +/- 3.7, p < 0.01). CONCLUSIONS: HF effectively eliminated the anaphylatoxins C3adesArg and C5adesArg during sepsis. There was also a significant rise in SVR and MAP during high volume HF. Therefore, HF may represent a new modality for removal of anaphylatoxins and may, thereby, deserve clinical testing in patients with severe sepsis.

Adult↗

Posttraumatic inflammatory response, secondary operations, and late multiple organ failure.

The objective of this study was to determine the role of surgical procedures as secondary inflammatory insults in the development of late multiple organ dysfunction syndrome in patients with multiple trauma and to evaluate both specific and nonspecific indicators of the inflammatory response in their ability to indicate the risk of severely injured patients to develop organ failure after secondary operations. In a prospective study of 106 severely injured patients (ISS 40.6) who underwent secondary operations (> 3 days after trauma), we compared the level of preoperative inflammation with the sequelae of surgical trauma. The interventions included facial reconstructions; osteosynthesis of the pelvic girdle, long bones, and spine; and others. Group 1 consisted of 40 patients (38%) who developed respiratory, renal, or hepatic failure, or combinations thereof, within 2 days after the operation or whose preexisting organ dysfunction worsened by more than 20% from baseline. The remaining 66 patients (62%) with an uneventful recovery formed group 2. The preoperative levels of neutrophil elastase (92.2 vs. 61.3 ng/dL), C-reactive protein (12.4 vs. 7.6 mg/dL), and platelet count (118,000 vs. 236,000/microL) were significantly more abnormal in the patients of group 1. PO2/FiO2 ratio was also somewhat lower in group 1 patients (305.5 vs. 351), whereas other parameters (e.g., blood pressure, heart rate, bilirubin, creatinine, urinary output, lactate, pH, and coagulation) did not allow preoperative differentiation between groups 1 and 2. An increased state of inflammation (neutrophil elastase > 85 ng/mL, C-reactive protein > 11 mg/dL, platelet count < 180,000/microL) predicted postoperative organ failure with an accuracy of 79% (sensitivity, 73%; specificity, 83%). We conclude that secondary operations may act as a second insult and may precipitate late multiple organ dysfunction syndrome if they are performed in patients with multiple trauma while they still have an increased level of posttraumatic inflammation. However, future investigations have to show whether postponing surgery until inflammation has subsided or the use of less invasive surgical techniques will decrease the rate of postoperative organ failure in the trauma patient.

Adult↗

Aprotinin prevents the development of the trauma-induced multiple organ failure in a chronic sheep model.

Trauma-induced multiple organ failure in sheep was prevented by aprotinin therapy. Multiple organ failure was induced in 16 female merino sheep by initial haemorrhagic shock and intramedullary femoral nailing (day 0), and 12 hourly injections of 0.75 micrograms/kg Escherichia coli endotoxin +0.7 ml/kg zymosan-activated plasma (days 1-5). In addition, the aprotinin group (n = 6) received simultaneous injections of 5 mg/kg (35 695 KIU/kg) aprotinin, whereas ten animals did not receive aprotinin and served as the control group (n = 10). Organ functions were monitored for a total of 11 days by measuring haemodynamic, cardio-respiratory and biochemical quantities of blood, urine and epithelial lining fluid. During the subsequent eleven day period, aprotinin induced a significant (p < 0.05) reduction of the pathological changes (development of multiple organ failure) seen in the control group. Thus, aprotinin prevented an alteration of cardiac function (cardiac index for control/aprotinin groups at day 1: 6.5/6.2, and at day 10: 10.47/7.0 1/min x m2), an impairment of lung function (mean pulmonary arterial pressure at day 1: 2.26/1.86, and at day 10: 3.83/2.13 kPa; epithelial lining fluid/plasma ratio of albumin concentrations as a direct marker of lung capillary permeability damage at day 0: 0.18/0.16, and at day 10: 0.45/0.15), a deterioration of liver function (plasma sorbitol dehydrogenase at day 0: 7.9/7.6, and at day 10: 29.6/7.4 U/1), but not of renal function (creatinine clearance at day 1: 91.4/66.1, and at day 10: 53.1/59.2 ml/min). Urinary aprotinin excretion increased up to day 3, then decreased rapidly despite further aprotinin administration. As a non-specific marker of cell damage, plasma lactate dehydrogenase indicated an aprotinin-induced organ protection (day 0: 501/409, and at day 10: 719/329 U/1). The neutrophil count and the measured chemiluminescence of neutrophils from the blood and epithelial lining fluid showed that aprotinin reduced the in vivo neutrophil activation, the alveolar neutrophil invasion, the production of inflammatory mediators, and the production of reactive oxygen metabolites during the passage of the capillary-interstitial-alveolar space by neutrophils.

Animals↗

Cardiac release of cytokines and inflammatory responses in acute myocardial infarction.

BACKGROUND: In animal models of myocardial infarction (MI), inflammatory responses compromise microcirculation during reperfusion and restrict functional recovery. To investigate cardiac inflammatory responses in patients with acute MI, we examined the cardiac release of cytokines, the expression on neutrophils of the beta 2-integrin Mac-1 (CD11b/CD18) and L-selectin (CD62L), and the cardiac release of thrombomodulin as a marker of endothelial injury. METHODS AND RESULTS: In 12 patients with acute anterior MI, blood samples were obtained from the coronary sinus and from the aorta immediately before and after recanalization of the coronary occlusion by balloon angioplasty. Twelve patients undergoing elective balloon angioplasty served as control subjects. Plasma concentrations of interleukin (IL)-1 beta, IL-6, IL-8, tumor necrosis factor-alpha, and thrombomodulin were determined by immunoassay, and surface expression of CD11b and CD62L was assessed by flow cytometry. Differences in coronary sinus and arterial blood were found in IL-6 before (median, 6.3 ng/L, P = .01) and after (13.4 ng/L, P = .002) recanalization and in IL-8 after recanalization (10.7 ng/L, P = .02). The cardiac release of both cytokines significantly (P < or = .03) increased with reperfusion. Cytokine release after reperfusion was associated with significant transcardiac gradients in surface expression on neutrophils of CD11b (10.1 mean channel of fluorescence intensity [mean fl], P = .01) and CD62L (-87 mean fl, P = .007) and with a thrombomodulin release (4.5 micrograms/L, P = .004). Transcardiac gradients in IL-1 beta and tumor necrosis factor-alpha were not found. None of the changes found in MI were detectable in the control group. CONCLUSIONS: As evidence of cardiac inflammatory responses in reperfused acute MI, the study demonstrates cardiac neutrophil activation with signs of endothelial injury and a release of the proinflammatory cytokines IL-8 and IL-6. These findings may assist in the design of pharmacological interventions aimed at reducing microvascular reperfusion injury.

Adult↗

Hemofiltration in human sepsis: evidence for elimination of immunomodulatory substances.

Continuous hemofiltration is widely used for renal replacement therapy in patients with acute renal failure. It has been suggested that hemofiltration may also eliminate toxic mediators thought to be important in the pathophysiology of sepsis. The present study examined whether hemofiltration can activate or eliminate inflammatory mediators in patients with sepsis, and whether ultrafiltrate can alter specific functions of peripheral blood mononuclear leukocytes (PBMC) in vitro. Veno-venous hemofiltration was performed in 16 patients and in 5 healthy volunteers. Pre-filter (afferent), post-filter (efferent) and ultrafiltrate concentrations of cytokines (IL-1 beta, IL-6, IL-8, TNF alpha) and of complement components (C3, C3adesArg, C5adesArg, terminal complement complex) were measured after the beginning of hemofiltration (t0), and 60 minutes later (t60). PBMC, and monocyte and lymphocyte subfractions were incubated with ultrafiltrate, and cytokines were determined in the supernatants. Hemofiltration did not induce significant mediator activation. There was no evidence for significant cytokine elimination. However, pre-filter C3adesArg concentration showed a significant decline during hemofiltration (patients: t0 = 676.9 +/- 99.7 ng/ml, t60 = 545.4 +/- 83.2, P < 0.001; volunteers: t0 = 54.8 +/- 13.3 ng/ml, t60 = 33.9 +/- 10.7, P < 0.001). Ultrafiltrate from septic patients significantly stimulated PBMC and monocyte TNF alpha release, but suppressed lymphocyte IL-2 and IL-6 production. Ultrafiltrate from volunteers was without effect. Hemofiltration effectively eliminates certain mediators such as C3adesArg. Ultrafiltrate contains compounds with significant immunomodulatory qualities. Therefore, hemofiltration may represent a new modality for removal of immunomodulatory mediators.

Adjuvants, Immunologic↗

Influence of high-dose aprotinin on anticoagulation, heparin requirement, and celite- and kaolin-activated clotting time in heparin-pretreated patients undergoing open-heart surgery. A double-blind, placebo-controlled study.

BACKGROUND: Aprotinin causes a prolongation of the celite-activated clotting time (CACT), but not of the kaolin-activated clotting time (KACT). Therefore, concern has been raised regarding the reliability of CACT to monitor anticoagulation in the presence of aprotinin. The current study was designed to test the efficacy of aprotinin to improve anticoagulation, and to investigate whether the prolongation of CACT reflects true anticoagulation or is an in vitro artifact. To elucidate this antithrombotic effect of aprotinin, this study was done in patients prone to reduced intraoperative heparin sensitivity. METHODS: In a prospective, randomized, double-blind clinical trial, 30 male patients scheduled for elective primary coronary revascularization and treated with heparin for at least 10 days preoperatively, received either high-dose aprotinin (group A) or placebo (group C). The CACT and KACT were determined, but only CACT was used to control anticoagulation with heparin. Parameters of coagulation that are indicators of thrombin generation and activity (F1+2 prothrombin fragments, thrombin-antithrombin III complex, and fibrin monomers), parameters of fibrinolysis (D-dimers), aprotinin, and heparin plasma concentrations were measured. Postoperative blood loss and allogeneic blood transfused were recorded. RESULTS: Total heparin administered was 36,200 units (95% confidence interval: 31,400-41,000; group C) compared with 27,700 (25,500-29,800) units (group A; P < 0.05). Hemostatic activation during cardiopulmonary bypass (CPB) was significantly reduced in group A compared with group C. After 60 min of CPB, all parameters were significantly different (P < 0.05) between the groups (group C vs. group A): F1+2 prothrombin fragments, 9.7 (8.9-11.7) ng/ml versus 7.5 (6.2-8.6) ng/ml; thrombin-anti-thrombin III complex (TAT), 53 (42-68) ng/ml versus 29 (23-38) ng/ml; and fibrin monomers, 23 (12-43) ng/ml versus 8 (3-17) ng/ml. Fibrinolysis was also attenuated; D-dimers at the end of operation were 656 (396-1,089) and 2,710 (1,811-4,055) ng/ml for groups A and C, respectively (P < 0.05). The CACT 5 min after the onset of CPB was 552 (485-627) versus 869 (793-955) s for groups C and A, respectively (P < 0.05), whereas the KACT showed no differences between the groups (569 [481-675] vs. 614 [541-697] s for groups C and A, respectively; P = NS). The 24-h blood loss was 1,496 (1,125-1,995) versus 597 (448-794) ml for groups C and A, respectively (P < 0.05). CONCLUSIONS: Aprotinin treatment in combination with heparin leads to less thrombin generation during CPB. Aprotinin has anticoagulant properties. Celite-activated ACT is reliable for monitoring anticoagulation in the presence of aprotinin, because the prolonged CACT in the aprotinin group reflects improved anticoagulation. Kaolin-activated ACT does not reflect this effect of aprotinin.

Adult↗