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T Foitzik

Publications and source records attributed to T Foitzik.

At least 55 records · Page 3Linked to original sources

Alcohol selectively impairs oxygenation of the pancreas.

BACKGROUND: Alcohol predisposes to acute pancreatitis by an unknown mechanism and is known to reduce regional pancreatic blood flow. OBJECTIVE: To investigate whether increased blood alcohol causes functional impairment of pancreatic microperfusion as indicated by reduced tissue oxygenation. DESIGN: Prospective, randomized, controlled study. SETTING: University hospital laboratory. SUBJECTS: Forty adult female Wistar rats. INTERVENTIONS: Intravenous infusion of ethanol (2 g/kg) or saline over 60 minutes. Tissue hemoglobin oxygenation saturation and hemoglobin content were measured using reflectance spectroscopy in the pancreas, stomach, and kidney at baseline and at 10-minute intervals for 1 hour. RESULTS: Blood ethanol levels (mean +/- SEM) peaked at 1810 +/- 94 mg/L. Compared with saline controls, pancreatic hemoglobin oxygen saturation in ethanol-treated rats had significantly decreased by 40 minutes and remained depressed, while pancreatic hemoglobin content was unchanged. The magnitude of the depression was at least as great as that previously observed in acute experimental pancreatitis of moderate severity. Neither hemoglobin oxygen saturation nor hemoglobin content was affected in the stomach or kidney by ethanol. CONCLUSION: A raised blood ethanol level was associated with acutely decreased hemoglobin oxygen saturation in the pancreas but not in the stomach or kidney. This observation of provoked hypoxia provides a possible mechanism by which alcohol contributes to pancreatic injury.

Animals↗

Effect of microcirculatory perfusion on distribution of trypsinogen activation peptides in acute experimental pancreatitis.

Extraintestinal trypsinogen activation peptides (TAP) have been shown to correlate with severity of acute pancreatitis in humans as well as in various animal models. Ischemia superimposed on experimental pancreatitis, however, increases acinar cell injury without increasing TAP in plasma. We speculated that TAP generated in the pancreas might not reach the circulation in necrotizing pancreatitis due to decreased pancreatic perfusion. To test the hypothesis that generation of TAP in plasma is related to pancreatic perfusion and that plasma TAP may therefore underestimate acinar cell injury in necrotizing disease, we correlated TAP in pancreatic tissue and body fluids with capillary pancreatic blood flow in necrotizing and edematous pancreatitis. The ratio between necrosis and TAP in tissue was similar in both models; the ratio between TAP in plasma and tissue, however, was significantly lower in necrotizing pancreatitis, indicating that a certain amount of TAP generated in the pancreas did not reach the circulation. Decreased pancreatic perfusion found in necrotizing pancreatitis was consistent with this finding. Our data suggest that TAP in tissue is most reliable to indicate severity of acute pancreatitis, whereas plasma TAP may underestimate pancreatic injury in necrotizing disease due to decreased pancreatic perfusion.

Acute Disease↗

Isovolemic hemodilution with dextran prevents contrast medium induced impairment of pancreatic microcirculation in necrotizing pancreatitis of the rat.

BACKGROUND: Previous studies demonstrated that intravenous contrast medium (CM), as used in contrast enhanced computed tomography, aggravates the impairment of pancreatic microcirculation (PM) characteristic of severe pancreatitis and increases necrosis and mortality in necrotizing pancreatitis (NP) in rats. This study evaluates the use of isovolemic hemodilution, which can enhance the microcirculation in severe pancreatitis, for preventing CM-induced injury. METHODS: NP was induced in 30 dextran-tolerant Wistar rats by intraductal glycodeoxycholic acid and intravenous cerulein for 6 hours. PM was quantified by intravital microscopy using fluorescein isothiocyanate labeled erythrocytes. Based on previous results, areas with low blood flow (< 1.6 nL/min/cap) were identified and baseline recordings of capillary blood flow taken. A reduction of hematocrit to 75% of baseline was achieved by replacement of 5 mL/kg of blood with 25 mL/kg Ringer's lactate (RL) or by exchange of 8 mL/kg of blood for the same amount of dextran 70.6%. Thereafter, the nonionic CM iopamidol (Solutrast, Byk Gulden, Konstanz, Germany) was injected during 1 minute and PM measurements repeated after 30 and 60 minutes. RESULTS: Despite hemodilution with RL, pancreatic capillary perfusion was significantly decreased to 87% of baseline (0.83 +/- 0.04 mL/min/cap; n = 216) 60 minutes after CM infusion (P < 0.05). In contrast, capillary blood flow was significantly increased to 161% (1.56 +/- 0.05 nL/min/cap; n = 278) in the group treated with dextran. Moreover, the percentage of capillaries developing complete stasis was significantly lower in the dextran group (2.3 +/- 1.2%) compared to animals diluted with RL (22.3 +/- 4.8%) (P < 0.002). CONCLUSION: Isovolemic hemodilution with dextran prevents the additional impairment of pancreatic microcirculation induced by CM in NP.

Acute Disease↗

Intravenous contrast medium aggravates the impairment of pancreatic microcirculation in necrotizing pancreatitis in the rat.

BACKGROUND: Previous reports demonstrated that radiographic contrast medium, as used in contrast-enhanced computed tomography, increases acinar necrosis and mortality in experimental pancreatitis. The authors studied the possibility that these changes may be related to an additional impairment of pancreatic microcirculation. METHODS: Fifty Wistar rats had acute pancreatitis induced by intraductal glycodeoxycholic acid (10 mmol/L for 10 min) and intravenous cerulein (5 micrograms/kg/hr for 6 hrs). After rehydration (16 mL/kg), pancreatic capillary perfusion was quantified by means of intravital microscopy at baseline before intravenous infusion of contrast medium (n = 25) or saline (n = 25), and 30 and 60 minutes thereafter. In addition to total capillary flow, capillaries were categorized as high- or low-flow (> or < 1.6 nL/min). RESULTS: Pancreatic capillary flow did not change in either high- or low-flow capillaries after saline infusion. However, contrast medium infusion induced a significant decrease of total capillary flow (p < 0.001). Analysis according to the relative flow rate revealed that this was primarily because of a significant additional reduction of perfusion in low-flow capillaries (p < 0.0001). Furthermore, complete capillary stasis was observed in 15.9 +/- 3.4% after contrast medium as compared with 3.2 +/- 1.2% after saline infusion (p < 0.006). CONCLUSION: Radiographic contrast medium aggravates the impairment of pancreatic microcirculation in experimental necrotizing pancreatitis.

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Increased intrapancreatic trypsinogen activation in ischemia-induced experimental pancreatitis.

OBJECTIVE: The potential of pancreatic ischemia to cause acute pancreatitis as indicated by morphologic changes and ectopic trypsinogen activation was investigated. BACKGROUND: Experimental evidence has shown that pancreatic ischemia is important in the evolution of severe pancreatitis, but whether ischemia can initiate pancreatitis has been disputed. METHODS: Pancreatic ischemia was induced in rats by hemorrhagic hypotension (30 mm Hg for 30 min; n = 64). Changes of pancreatic microcirculatory perfusion were studied using diffuse reflectance spectroscopy. Serum amylase, trypsinogen activation peptide (TAP) in serum and pancreatic tissue, wet/dry weight ratio, and histology were determined over 24 hours and compared with sham-operated control subjects (n = 35). RESULTS: In control animals, serum amylase (47.9 +/- 2.1 units/L), serum (7.9 +/- 0.7 nmol/L) and tissue TAP (63.0 +/- 5.4 nmol/L x g), wet/dry weight ratio (2.8 +/- 0.1), and histology remained unchanged. Temporary hypotension markedly decreased pancreatic perfusion with incomplete recovery after reperfusion. Pancreatic isoamylase activity increased within 1 hour (110 +/- 5 units/L, p < 0.05) and further to 151 +/- 18 units/L at 24 hours. Tissue TAP was elevated at 1 hour (134 +/- 16 nmol/L x g, p < 0.05) and increased to 341 +/- 43 nmol/L x g (p < 0.001) after 24 hours, whereas serum TAP remained unchanged (8.3 +/- 0.5 nmol/L). Morphologic alterations included elevated wet/dry weight ratio (4.1 +/- 0.3, p < 0.01) and increased histologic scores for edema (p < 0.05) and acinar necrosis (p < 0.05) at 24 hours. Trypsinogen activation preceded the development of pancreatic necrosis. CONCLUSIONS: In addition to its potentiating role, severe pancreatic ischemia can play a pathogenetic role in the initiation of acute pancreatitis.

Amylases↗

Pathogenesis and prevention of early pancreatic infection in experimental acute necrotizing pancreatitis.

OBJECTIVE: The authors test antibiotic strategies aimed at either mitigating bacterial translocation from the gut or delivering antibiotics specifically concentrated by the pancreas for prevention of early secondary infection after acute necrotizing pancreatitis. BACKGROUND: Infection currently is the principal cause of death after severe pancreatitis. The authors have shown that the risk of bacterial infection correlates directly with the degree of tissue injury in a rodent model of pancreatitis. Bacteria most likely arrive by translocation from the colon. METHODS: Severe acute necrotizing pancreatitis was induced in rats by a combination of low-dose controlled intraductal infusion of glycodeoxycholic acid superimposed on intravenous cerulein hyperstimulation. At 6 hours, animals were randomly allocated to five treatment groups: controls, selective gut decontamination (oral antibiotics and cefotaxime), oral antibiotics alone, cefotaxime alone, or imipenem. At 96 hours, surviving animals were killed for quantitative bacterial study of the cecum, pancreas, and kidney. RESULTS: The 96-hour mortality (35%) was unaffected by any treatment regimen. Cecal gram-negative bacteria were significantly reduced only by the oral antibiotics. Pancreatic infection was significantly reduced by full-gut decontamination and by imipenem, but not by oral antibiotics or by cefotaxime alone. Renal infection was reduced by both intravenous antibiotics. CONCLUSIONS: Early pancreatic infection after acute necrotizing pancreatitis can be reduced with a full-gut decontamination regimen or with an antibiotic concentrated by the pancreas (imipenem) but not by unconcentrated antibiotics of similar spectrum (cefotaxime) or by oral antibiotics alone. These findings suggest that 1) both direct bacterial translocation from the gut and hematogenous seeding interplay in pancreatic infection while hematogenous seeding is dominant at extrapancreatic sites and 2) imipenem may be useful in clinical pancreatitis.

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Improved survival in acute necrotizing pancreatitis despite limiting the indications for surgical debridement.

OBJECTIVE: To reassess our criteria for the stratification of attacks of acute pancreatitis, and indications for operation in patients with necrotising pancreatitis. DESIGN: Retrospective analysis of casenotes. SETTING: University Hospital, Germany. SUBJECT: 341 Consecutive patients who presented with a first attack of acute pancreatitis between December 1979 and January 1991. MAIN OUTCOME CRITERIA: Morbidity and mortality in relation to clinical (Ranson, Kümmerle, Goris) and radiological (Balthazar) criteria. RESULTS: 78 Patients developed necrotising pancreatitis judged radiologically. Mortality was 15/38 (39%) in the period 1980-85 and 6/40 (15%) in the period 1986-1990. During the first period patients were operated on if their unfavourable clinical signs did not start to resolve within 72 hours, whereas in the second period operation was restricted to those patients who developed signs of multiple organ failure. This policy resulted in the number of operations being reduced from 26/38 (68%) to 17/40 (42%), respectively (p = 0.03). CONCLUSION: Our data support the policy of restricting surgical debridement in necrotising pancreatitis to those patients who develop signs of multiple organ failure.

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[The Heidelberg Intensive Care Unit Score. Development of a computer-assisted scoring system for documentation of treatment course and assessment of prognosis in surgical intensive care patients].

Existing scoring systems have failed to reflect the pathophysiological changes during ICU therapy, and do not provide reliable criteria for the prediction of outcome in surgical patients. The aim of the present project was to establish a comprehensive scoring system for daily evaluation of physiological parameters and therapeutic interventions in a surgical intensive care unit, and to identify score patterns in the course of ICU treatment to be used for prospective clinical decisions. In a prospective study of 123 consecutive patients who required intensive care for more than two consecutive days we documented 10 physiological parameters and a set of 14 therapeutic interventions on a daily basis over a total of 1274 days. Evaluation of the new scoring system, called the Heidelberg Intensive Ward Score (HDWS), included comparison with APACHE II and a set of unfavorable HDWS-patterns at different time points during ICU treatment. All variables were implemented into a notebook computer to be used at bedside. Neither HDWS nor APACHE II obtained on admission differentiated between survivors and non-survivors. In contrast, scores of non survivors were significantly higher than scores of survivors at day 7. At that point, HDWS was superior to APACHE II with respect to the predictive power as assessed by receiver operator characteristic curves. No patient who fulfilled all four unfavorable HDWS-patterns during the first week of ICU treatment survived (but these were only two patients). We conclude that the limited power of scores obtained on admission to predict outcome in surgical patients may be improved by trend analysis of scores over time which also take into account the patients' response to therapy.(ABSTRACT TRUNCATED AT 250 WORDS)

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Intravenous contrast medium impairs oxygenation of the pancreas in acute necrotizing pancreatitis in the rat.

OBJECTIVE: Contrast-enhanced computed tomography is widely used to evaluate severe acute necrotizing pancreatitis (ANP) by demonstrating areas of malperfusion, which might indicate irreversible necrosis. Because of our prior finding that the intravenous contrast medium (CM) accentuates the severity of ANP by promoting further necrosis and higher mortality, we sought to investigate the mechanism by which this injury is mediated. DESIGN: Mild acute pancreatitis was induced in Sprague-Dawley rats with intravenous caerulein hyperstimulation; and severe ANP, with intravenous caerulein plus intraductal glycodeoxycholic acid. Control animals and rats with pancreatitis were randomized to be given intravenous CM or saline. MAIN OUTCOME MEASURE: Diffuse reflectance spectroscopy was used to measure the index of hemoglobin content and oxygen saturation in pancreatic tissues in vivo. RESULTS: Oxygen saturation of hemoglobin was increased in animals with mild acute pancreatitis (AP) (mean [+/- SEM], 58.7% +/- 1.2% vs 55.2% +/- 1.5% in control animals; P < .05) and was decreased in animals with ANP (51.2% +/- 1.2% vs 55.2% +/- 1.5%; P < .05). Fifteen minutes after the infusion of CM, oxygen saturation of hemoglobin significantly decreased further in animals with ANP (51.4% +/- 1.8% before infusion of CM vs 46.1% +/- 1.7% at 15 minutes; P < .05) and remained significantly below the comparable group receiving intravenous saline for the entire 60-minute test. This decrement was not observed in animals with ANP given saline or in animals with mild AP or in control animals after infusion of saline or CM. The index of hemoglobin content remained unchanged throughout the experiment in all groups. CONCLUSIONS: The prolonged reduction of oxygen saturation of hemoglobin in the pancreas following the administration of intravenous CM in rats with severe ANP indicates that CM impairs the pancreatic microcirculation in necrotizing forms of AP. This may explain our previous finding that CM increases pancreatic injury and mortality in rodents with ANP, and it underlines our concern that the use of contrast-enhanced computed tomography early in human AP may promote the evolution of pancreatic necrosis.

Acute Disease↗

Exocrine hyperstimulation but not pancreatic duct obstruction increases the susceptibility to alcohol-related pancreatic injury.

OBJECTIVE: To evaluate the factors thought to be involved in the pathogenesis of acute pancreatitis associated with alcohol. BACKGROUND: The mechanism of alcohol-induced pancreatitis is believed to involve synergistic effects of various pathogenetic factors. The present study was designed to evaluate the possible contribution of pancreatic duct obstruction, physiologic exocrine stimulation, or secretory hyperstimulation to alcohol-induced pancreatic injury. METHODS: Wistar rats were allocated randomly to a control group (group 1), or to a group with pancreatic duct obstruction (group 2), physiologic exocrine stimulation (group 3), ductal obstruction and exocrine stimulation (group 4), or exocrine hyperstimulation with the cholecystokinin analogue cerulein (group 5). Three hours after this pretreatment, animals in each experimental group were randomly divided into two subgroups for intragastric administration of either water (groups 1A through 5A) or beer (groups 1B through 5B). Test solutions were instilled over 9 hours (total amount of alcohol administered, 4.8 g/kg). Twenty-four hours after beginning the test infusion, animals were killed for histologic evaluation of pancreatic edema and determination of an acinar cell necrosis score. Serum amylase levels were determined at 3, 9, and 24 hours. RESULTS: No increase in amylase levels or significant morphologic changes were found in control animals (group 1A) or in animals subjected to physiologic exocrine stimulation (group 2A). Pancreatic duct obstruction, with or without physiologic exocrine hyperstimulation (groups 3A and 4A), and exocrine hyperstimulation (group 5A) induced pancreatitis of similar severity with minor acinar cell damage. Alcohol superimposed on exocrine hyperstimulation (group 5B) increased acinar cell injury (group 5A, 0.4 +/- 0.1 points vs 5B, 1.0 +/- 0.2 points; P < .05) and serum amylase levels at 24 hours (group 5a, 41 +/- 6 U/L vs group 5B, 72 +/- 11 U/L; P < .05), whereas no differences between subgroups A and B (water vs beer) were found in groups 1 through 4. CONCLUSION: Our findings suggest that the pathogenesis of acute alcoholic pancreatitis may require a state of exocrine hyperstimulation, perhaps via cholecystokinin, but do not support a role for constriction or obstruction of Oddi's sphincter.

Acute Disease↗

Impact of microcirculatory flow pattern changes on the development of acute edematous and necrotizing pancreatitis in rabbit pancreas.

Impairment of pancreatic microcirculation has often been advocated as one pathogenic mechanism in necrotizing pancreatitis. In contrast, data on pancreatic capillary perfusion in edematous pancreatitis are scarce. It was the aim of this experimental study to compare changes in pancreatic microcirculation in edematous and necrotizing pancreatitis. Twelve rabbits were allocated to two groups. Two different models of acute pancreatitis were used. Edematous pancreatitis was elicited by intravenous administration of cerulein (25 micrograms/kg/hr) (N = 6). Necrotizing pancreatitis of the biliary type was induced by pressure-controlled intraductal infusion of a mixture of taurocholate, trypsin, and blood (N = 6). Pancreatic microcirculation was quantified by means of intravital microscopy assessing functional capillary density, blood cell velocity, and distribution of the plasma marker FITC-dextran 70. Systemic hemodynamics were maintained at baseline values by fluid administration. Regardless of edema or necrosis, pronounced extravasation of FITC-dextran was recorded in the early stage of pancreatitis. In cerulein-induced pancreatitis, hyperemia developed as indicated by an increase in blood cell velocity in the presence of homogeneous capillary perfusion. In contrast, a progressive reduction of the number of perfused capillaries was detected in necrotizing pancreatitis. In conclusion, pancreatic microvascular perfusion may be regarded as an important pathogenetic factor for the determination of acute pancreatitis.

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Intravenous contrast medium accentuates the severity of acute necrotizing pancreatitis in the rat.

BACKGROUND/AIMS: Contrast-enhanced computed tomography (CECT) is used to show areas of decreased pancreatic perfusion in severe acute pancreatitis (AP). To evaluate possible adverse effects of the contrast medium (CM) on the course of AP, the impact of intravenous CM in AP of graded severity in the rat was studied. METHODS: Pancreatitis of three levels of severity was induced in Sprague-Dawley rats with intravenous cerulein hyperstimulation plus time- and pressure-controlled intraductal infusion of saline or glycodeoxycholic acid. At 7 hours, control and pancreatitis animals received intravenous ionic CM, nonionic CM, or saline. The principal outcome measures were 24-hour survival, trypsinogen activation peptides (TAP) in ascites, and histological acinar necrosis score. RESULTS: There was no measurable effect of CM on the index features in control animals or animals with mild or moderate AP. In severe AP, CM caused a significant increase in mortality, ascites TAP, and necrosis score. CONCLUSIONS: Intravenous CM increases pancreatic injury when administered early in the course of severe experimental AP. Because CM may convert borderline ischemia to irreversible necrosis, CECT performed early in pancreatitis to show poor perfusion and predict areas of necrosis may depict a self-fulfilling prophecy. Early CECT should be reconsidered and perhaps avoided.

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Time course of bacterial infection of the pancreas and its relation to disease severity in a rodent model of acute necrotizing pancreatitis.

BACKGROUND: Bacterial infection of pancreatic necrosis is thought to be a major determinant of outcome in acute necrotizing pancreatitis. The determinants and possibilities for prophylaxis are unknown and difficult to study in humans. OBJECTIVE: The time course of bacterial infection of the pancreas in a rodent model of acute necrotizing pancreatitis was characterized. The authors ascertained if there is a correlation with the degree of necrosis. METHODS: Acute pancreatitis (AP) of graded severity was induced under sterile conditions by an intravenous infusion of cerulein (5 micrograms/kg/hr) for 6 hours (mild AP), or a combination of intravenous cerulein with an intraductal infusion of 10-mM glycodeoxycholic acid (0.2 mL for 2 min for moderate AP, 0.5 mL for 10 min for severe AP). Sham-operated animals (intravenous and intraductal NaCl 0.9%) served as controls. Ninety-six hours after induction, animals were killed for quantitative bacterial examination and histologic scoring of necrosis. In addition, groups of animals with severe AP were investigated at 12, 24, 48, 96, and 144 hours. RESULTS: No significant pancreatic necrosis was found in control animals (0.3 +/- 0.1) or animals with mild AP (0.6 +/- 0.1) killed at 96 hours. Necrosis scores were 1.1 +/- 0.2 for animals with moderate AP and 1.9 +/- 0.2 for animals with severe AP. Control animals did not develop significant bacterial infection of the pancreas (> or = 10(3) CFU/g). At 96 hours, the prevalence of infection was 37.5% in animals with mild AP and 50% in animals with moderate AP. In animals with severe AP, infection of the pancreas increased from 33% in the first 24 hours to 75% between 48 and 96 hours (p < 0.05). The bacterial counts and the number of different species increased with time and was maximal (> 10(11) CFU/g) at 96 hours. CONCLUSION: Bacterial infection of the pancreas in rodent AP increases during the first several days, and its likelihood correlates with the severity of the disease. This model, which closely mimics the features of human acute pancreatitis, provides a unique opportunity to study the pathogenesis of infected necrosis and test therapeutic strategies.

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Failure of pentoxifylline to ameliorate severe acute pancreatitis in the rat: results of a prospective, randomized, controlled study.

OBJECTIVE: To investigate the benefit of pentoxifylline in severe experimental pancreatitis. DESIGN: Prospective, randomized, controlled study. SETTING: Experimental animal laboratory in a University hospital. SUBJECTS: Forty-two adult male Sprague-Dawley rats. INTERVENTIONS: Acute pancreatitis was induced by supramaximal stimulation with cerulein plus a pressure and volume controlled 10 min intraductal infusion of 10-mM glycodeoxycholic acid. Thirty minutes after pancreatitis was induced, animals were randomized to receive pentoxifylline (60 mg/kg over 2.5 hrs), or saline. All animals received fluid resuscitation with lactated Ringer's solution (8 mL/kg/hr), and surviving animals were killed at 24 hrs. MEASUREMENTS AND MAIN RESULTS: There was a progressively significant decrease in mean arterial pressure after pancreatitis was induced, with no difference between pentoxifylline-treated rats and controls. Hematocrit increased significantly in both groups at 6 hrs, and returned to baseline values at 24 hrs. Ascites volume and levels of trypsinogen activation peptide in plasma and ascites were similar in both groups. Twenty-four hour mortality was 47% for the pentoxifylline group and 52% for the control group. Histologic scores for necrosis, edema, inflammation, and hemorrhage showed no significant differences between the two groups. CONCLUSION: Treatment with pentoxifylline failed to improve outcome in a model of severe acute pancreatitis in the rat.

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Impairment of pancreatic microcirculation correlates with the severity of acute experimental pancreatitis.

BACKGROUND: Altered microcirculatory perfusion may be an important factor in the pathogenesis of necrotizing pancreatitis. Diffuse reflectance spectroscopy (DRS) can measure dynamic alterations in the microcirculation over a larger area than intravital microscopy. STUDY DESIGN: We used DRS to characterize changes in the microcirculation during the evolution of pancreatitis of varying severity. Male Sprague Dawley rats (330 to 400 g) were randomly allocated to four groups: control (n = 18), mild pancreatitis (n = 18), moderate pancreatitis (n = 18), or severe pancreatitis (n = 34). Within each group, rats were studied 0.5, 3.0, or 6.0 hours after induction of pancreatitis to determine total hemoglobin content (IHb) and hemoglobin oxygenation (ISO2). RESULTS: Total hemoglobin content in the pancreas remained constant in all groups. Hemoglobin oxygenation increased significantly in rats in the control group and in rats with mild pancreatitis for the duration of the experiment, but not in rats with moderate or severe pancreatitis. Rats with severe pancreatitis had a significant decrease in ISO2 six hours after the induction of pancreatitis compared with baseline values (49.18 +/- 1.55 versus 52.01 +/- 0.19, p < 0.01) as well as rats in the control group that were studied after six hours (49.18 +/- 1.55 versus 55.92 +/- 1.07, p < 0.02). Furthermore, there was marked variability in IHb and ISO2 at different locations within the same pancreas in rats with severe pancreatitis, which was not observed in the control group or in the rats with mild or moderate pancreatitis. CONCLUSIONS: Impaired microcirculatory perfusion characterizes severe, but not mild, pancreatitis. The predominant early change is stasis rather than vasoconstriction. As the changes become more severe, necrosis occurs in a heterogeneous distribution.

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[Trypsinogen activation peptides in acute pancreatitis. Experimental data and clinical implications].

Trypsinogen activation peptides (TAP) can be found in patients with acute pancreatitis (AP) as well as in different models of experimental AP. First experience has suggested that early elevation of TAP indicates development of necrotizing AP and that the amount of TAP correlates with the extent of acinar cell necrosis and mortality. It is however unknown whether TAP similarly assess severity of AP in the later course of the disease. The present study monitores TAP in plasma, urine and ascites during the initial development of pancreatic injury and correlates the amount of TAP and the extent of pancreatic necrosis over 48 h in a rodent model of AP. While there was no elevation of TAP in control animals or animals with edemantous AP, significant amounts of TAP im plasma were found as early as 30 min following induction of severe necrotizing AP. Serum amylase returned to normal values within 24 h, TAP maintained at high levels until the end of the 48 h observation period. During the first 24 h TAP paralleled the development of acinar cell necrosis, but decreased thereafter despite further progression of pancreatic injury. Our results provide further evidence suggesting that TAP initially precede morphological changes in AP. Early in the course of the disease TAP parallel development of pancreatic injury.(ABSTRACT TRUNCATED AT 250 WORDS)

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Evidence for extraluminal trypsinogen activation in three different models of acute pancreatitis.

BACKGROUND: Inappropriate extraluminal activation of trypsin is assumed to play a part in the pathogenesis of acute pancreatitis (AP), but proof has been elusive because active trypsin is transient and difficult to measure. We have previously shown increased levels of trypsinogen activation peptides (TAP), a direct measure of trypsin activation, to correlate with severity of AP, tissue necrosis, and survival in a rodent model induced by cerulein hyperstimulation and bile salt infusion. The present study seeks to show that increased trypsinogen activation also characterizes three other models of experimental AP in rodents to give credence to the generality of the phenomenon and to its potential relevance to human AP. METHODS: Experimental AP was induced in mice by a choline-deficient diet supplemented with ethionine and in rats by creation of a closed duodenal loop or by ligation of the biliopancreatic duct plus physiologic stimulation. TAP were quantified by an immunoassay in tissue and plasma at various time points after onset of AP. RESULTS: In the group with choline-deficient diet supplemented with ethionine a significant increase in tissue and plasma TAP was found at 48 and 72 hours, respectively. In the group with closed duodenal loop significant TAP elevations were found in plasma as early as 6 hours and in the group with ligation of the biliopancreatic duct plus physiologic stimulation at 24 hours. CONCLUSIONS: These experiments provide further evidence that extraluminal protease activation is a pathophysiologic event common to the evolution of various models of experimental acute pancreatitis and therefore increase the likelihood that this phenomenon is important in the human disease as well.

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