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Pancreatic duct and microvascular permeability to macromolecules. The relation to acute pancreatitis.

In a model of acute pancreatitis which requires that pancreatic enzymes leak from a permeable duct, we studied the role of intravenous enterokinase (195,000 daltons) in pancreatic enzyme activation. Anesthetized cats were given intravenous 16,16-dimethyl prostaglandin E2 to increase pancreatic blood flow and microvascular permeability. In some animals the permeability of the pancreatic duct was increased by perfusion of the duct with glycodeoxycholic acid (7.5 mM). Endogenous enzyme secretion was stimulated by IV CCK and secretin. Some cats also received enterokinase intravenously. Those animals that received PGE2, glycodeoxycholate, and enterokinase all developed pancreatitis. When any of these agents were not given the pancreases appeared normal. These findings were consistent with the hypothesis that intravenous enterokinase leaked from small pancreatic blood vessels into the pancreatic parenchyma and/or ducts where activation of pancreatic enzymes occurred. The development of pancreatitis appeared to require an increase in both microvascular and ductal permeability.

16,16-Dimethylprostaglandin E2↗

Bile salt toxicity to some bifidobacteria strains: role of conjugated bile salt hydrolase and pH.

The purpose of this work was to study some aspects of bile salt toxicity towards bifidobacteria. A strain (Bifidobacterium coryneforme ATCC 25911) was selected for its lack of conjugated bile salt hydrolase activity (CBSH-), and was used with three deconjugating strains (CBSH+), for study of their growth and viability in the presence of two dihydroxylated conjugated bile salts (tauro- and glyco-deoxycholic acids). The presence of the glycoconjugate induced a more significant growth inhibition for the four strains than the tauroconjugate. The viability of the strains was measured at several pH levels. Glycodeoxycholic acid, but not taurodeoxycholic acid, exerted a lethal effect, which increased at low pH. This phenomenon was more pronounced for the CBSH- strain. We explain some of these results using an hypothesis based on the consequence of dissociation of conjugated and deconjugated bile salts, and the value of their pKa.

Amidohydrolases↗

Effect of bile acids on the binding of drugs and dyes to human albumin.

Chenodeoxycholic, cholic, deoxycholic and taurodeoxycholic acids were found to inhibit the binding of 2-(4'-hydroxybenzeneazo)benzoic acid, methyl orange, sulphadimethoxine and warfarin to human albumin. In addition, glycodeoxycholic acid inhibited the binding of sulphadimethoxine and warfarin. In contrast, these bile acids did not inhibit the binding of phenylbutazone. The extent of displacement was in the rank order of: dihydroxy acids (chenodeoxycholic and deoxycholic) greater than trihydroxy acid (cholic) greater than conjugates (glycodeoxycholic and taurodeoxycholic). Thus the introduction of polar groups into the steroid nucleus of bile acids reduces their effectiveness as binding inhibitors. Displacement was usually accompanied by a decrease in the apparent association constant which suggests that the mechanism of displacement may be competitive.

Bile Acids and Salts↗

The effects of calcium channel blocker and thyrotropin releasing hormone on acute necrotizing pancreatitis in rats.

The main purpose of this study was to investigate the influence of nimodipine, a calcium channel blocker (CCB) and thyroid-releasing hormone (TRH) on acute necrotizing pancreatitis (ANP) induced by glycodeoxycholic acid in rats. CCB decreased blood pressure in rats in the control and pancreatitis groups. TRH corrected this decrease. CCB alone had no effect on PO2 serum amylase activity, calcium concentration, liver transaminases, lactate dehydrogenase or the degree of pancreatic damage, except for the serum concentration of creatinine. CCB+TRH reduced the concentrations of serum urea and creatinine, the degree of pancreatic damage, and increased PO2 and serum calcium concentration. CCB and CCB+TRH had no effect on pancreatic myeloperoxidase activity. CCB alone had no effect on the course of ANP, but CCB+TRH had beneficial effects on the course of the ANP and various systems.

Animals↗

Glutathione depletion with L-buthionine-(S,R)-sulfoximine demonstrates deleterious effects in acute pancreatitis of the rat.

A common pathway in the pathogenesis of acute pancreatitis is the generation of free oxygen radicals. The most important defense mechanisms are free radical scavengers, especially glutathione. This study evaluates the influence of the inhibition of glutathione synthesis with L-buthionine-(S,R)-sulfoximine (BSO) on the course of experimentally induced acute pancreatitis in rats and the effects on isolated pancreatic acini and their secretion pattern. Thus acute necrotizing pancreatitis was induced with intraductal infusion of low-dose glycodeoxycholic acid and subsequent hyperstimulation with cerulein with and without pretreatment with BSO. In vitro pancreatic acini were isolated and stimulated with different concentrations of cerulein with and without BSO. The BSO-treated group showed a significantly reduced survival, more necrosis, and a decreased secretion of amylase in vivo. No effect on secretion pattern in either groups was seen in vitro and BSO did not exert toxic effects. Based on the data presented, this study demonstrates deleterious effects of scavenger depletion on the course of experimental pancreatitis. This is due to the systemic effects of free oxygen radicals rather than to local effects.

Acute Disease↗

Effects of combined nutritional therapy on acute necrotizing pancreatitis in rats in the early phase of the disease.

The aim of this study was to investigate the influence of a small amount of enteral nutrition along with parenteral nutrition on acute necrotizing pancreatitis (ANP) induced by glycodeoxycholic acid in rats in the early phase of disease. The induction of ANP resulted in a significant increase in mortality rate, intestinal permeability, bacterial infection in the pancreas and extrapancreatic organs, pancreatic necrosis and serum activity of urea and amylase, and a significant decrease in concentrations of calcium, protein and albumin. But no difference was observed between the pancreatitis groups. Significant hyperglycemia and increased liver transaminase activity were observed in rats treated with combined nutritional therapy (CNT). CNT did not improve the course of acute pancreatitis, intestinal permeability, bacterial translocation, or reduce the extent of acinar cell injury in ANP and is therefore unlikely to be of benefit in patients with pancreatitis in the early period.

Animals↗

Pancreatic duct pressure, duct permeability and acute pancreatitis.

The relationship between pancreatic duct pressure, duct permeability to macromolecules and the development of acute pancreatitis was studied in a cat model. Perfusion of the pancreatic duct with 15 mM glycodeoxycholic acid, ethanol administration, or secretagogue-stimulated pancreatic secretion against greater than 50 per cent duct obstruction resulted in an increase in peak pancreatic duct pressure in all animals. Duct permeability to 20,000 molecular weight dextran molecules was increased in 22 of 29 experimental animals compared with two of 22 control animals (P less than 0.01). Perfusion of the pancreatic duct with activated pancreatic enzymes resulted in acute pancreatitis in 24 of 29 experimental animals compared with three of 22 control animals (P less than 0.01). These results suggest that pancreatic ductal hypertension, resulting in increased ductal permeability to large molecules, may be a common early event in gallstone and alcoholic pancreatitis.

Acute Disease↗

The generation of lysolecithin by enterokinase in trypsinogen prophospholipase A2 lecithin mixtures, and its relevance to the pathogenesis of acute necrotising pancreatitis.

The cascade enterokinase-trypsinogen-prophospholipase A2 lecithin, generating trypsin, phospholipase A2 and lysolecithin, respectively, was studied in vitro using a novel phospholipase A2 assay. The rate of enterokinase catalysed activation of trypsinogen was maximal at 4 mmol/1 glycodeoxycholic acid; higher concentrations of bile salt progressively inhibited enterokinase activity. Net phospholipase A2 activity in reaction mixtures was critically dependent on the trypsin/prophospholipase A2 molar ratio. Lecithin hydrolysis by phospholipase A2 was dependent on the bile salt/lecithin molar ratio and was optimal at 1.25 to 1. The addition of enterokinase to lecithin and bile salt mixtures, containing trypsinogen and prophospholipase A2 at presumed pathophysiological concentrations, resulted in the generation of concentrations of lysolecithin lytic for pancreatic acinar cells within 5 min. These findings would support the concept that the entry of bile containing active enterokinase into the pancreatic duct system in vivo may in some cases be involved in the initiation of necrotising acute pancreatitis in man.

Acute Disease↗

Late histopathologic changes and healing in an improved rodent model of acute necrotizing pancreatitis.

Studies of experimental pancreatitis have generally focussed on early time points rather than the stages of healing and resolution or scarring. We recently characterized a new pancreatitis model of moderate severity by combining intraductal infusion of very low concentrations of glycodeoxycholic acid with intravenous caerulein. This study evaluates late histopathologic changes and gross complications in this pancreatitis model compared to the traditionally used high-dose bile salt model in rats. After 14 days, histopathologic features of caerulein pancreatitis were not different from saline controls. High-dose intraductal bile salt infusion resulted in widespread chronic inflammation, acinar dilation and atrophy, marked reactive stromal proliferation, and ductular budding with periductal fibrosis. In contrast, animals receiving low-dose intraductal bile salt infusion combined with intravenous caerulein demonstrated a moderate degree of chronic inflammation and acinar atrophy along with an intermediate degree of periductal fibrosis and stromal reaction. We conclude that due to its moderate degree of injury, this model may be useful for the study of tissue injury and repair following acute pancreatitis.

Acute Disease↗

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.

Acute Disease↗

Effects of N-acetylcysteine on acute necrotizing pancreatitis in rats.

The aim of this study was to investigate the influence of N-acetylcysteine (NAC) on acute necrotizing pancreatitis (ANP) induced by glycodeoxycholic acid in rats. The induction of ANP resulted in significant increase in mortality rate, pancreatic necrosis and serum activity of amylase, alanine aspartate transferase (ALT), interleukin-6 (IL-6), lactate dehydrogenase (LDH) in bronchoalveolar lavage (BAL) fluid, serum concentration of urea, tissue activity of myeloperoxidase (MPO) and malondialdehyde (MDA) in the pancreas and lung, and significant decrease of concentrations of calcium, blood pressure, urine output and pO(2). The use of NAC inhibited the changes in urine output, pO(2), tissue activity of MPO and MDA in pancreas and lungs, and the serum activity of IL-6, ALT, and serum concentrations of urea and calcium. NAC reduced the mortality and pancreatic damage. The use of NAC has a beneficial effect on the course of ANP in rats. It may be used in the treatment of acute pancreatitis.

Acetylcysteine↗

Hyperbaric oxygen therapy attenuates pancreatic microcirculatory derangement and lung edema in an acute experimental pancreatitis model in rats.

This study was designed to investigate hyperbaric oxygen (HBO) therapy as a treatment for managing animals with induced acute pancreatitis. Forty-five anesthetized male Sprague-Dawley rats were studied. A severe acute pancreatitis model was established by combining an intravenous infusion of cerulein (15 microg/kg/h) and an intraductal injection of 0.1 ml of glycodeoxycholic acid (5 mM). Pathology, serum amylase level, pancreatic malondiadehyde levels and water content of the lungs and the pancreas were used to evaluate the severity of disease. Moreover, an in vivo microscopic technique was used to investigate microcirculatory derangement in the pancreas, i.e., flow velocity and leukocytes sticking in postcapillary venules. HBO was delivered in three regimens, i.e., 100% oxygen at 2.5 absolute atmospheric pressure (AAP), 40% oxygen at 2.5 AAP, and 100% oxygen at 1 AAP, 6 h after the initiation of induction of acute pancreatitis. All animals survived until the end of the experiments. HBO significantly improved the pathologic conditions and pancreatic malondiadehyde levels. Concomitantly, it also significantly lessened the severity of lung edema and improved the microcirculatory environment in the pancreas. Our results support the findings that HBO therapy has a beneficial effect on pancreatic microcirculation and lung edema during acute pancreatitis in rats.

3,4-Methylenedioxyamphetamine↗

Trypsin and activation of circulating trypsinogen contribute to pancreatitis-associated lung injury.

Pancreatic proteases are secreted in acute pancreatitis, but their contribution to associated lung injury is unclear. Applying models of mild edematous (intravenous caerulein) and severe necrotizing (intraductal glycodeoxycholic acid) pancreatitis in rats, we showed that both trypsinogen and trypsin concentrations in peripheral blood, as well as lung injury, correlate with the severity of the disease. To isolate the potential contribution of proteases to lung injury, trypsin or trypsinogen was injected into healthy rats or trypsinogen secreted in caerulein pancreatitis was activated by intravenous enterokinase. Pulmonary injury induced by protease infusions was dose dependent and was ameliorated by neutrophil depletion. Trypsinogen activation worsened lung injury in mild pancreatitis. In vitro incubation of leukocytes with trypsinogen showed that stimulated leukocytes can convert trypsinogen to trypsin. In conclusion, this study demonstrates that the occurrence and severity of pancreatitis-associated lung injury (PALI) corresponds to the levels of circulating trypsinogen and its activation to trypsin. Neutrophils are involved in both protease activation and development of pulmonary injury.

Acute Disease↗

The isolated perfused liver response to a 'second hit' of portal endotoxin during severe acute pancreatitis.

BACKGROUND/AIM: During severe acute pancreatitis (AP), the liver may show an exaggerated response to the inflammatory products of gut injury transported in the portal vein. Our aim was to explore liver proinflammatory mediator production after a 'second hit' of portal lipopolysaccharide (LPS) during AP. METHODS: Twenty-four rats underwent one of three 'first-hit' scenarios: (1) severe AP induced by intraductal glycodeoxycholic acid injection and intravenous caerulein infusion, (2) sham laparotomy, or (3) no first intervention. Eighteen hours later, all animals received a 'second hit' of portal LPS in an isolated liver perfusion system. Tumour necrosis factor-alpha (TNF-alpha), interleukin (IL)-1beta, and IL-6 concentrations were measured in portal and systemic serum, and in the perfusate 30 and 90 min after the 'second hit'. Neutrophil activation by the perfusate was assayed using dihydrorhodamine-123 fluorescence. RESULTS: We observed a six-fold increase in IL-6 concentration across the liver during AP. All livers produced TNF-alpha after the portal LPS challenge, but this was not exaggerated by AP. No differential neutrophil activation by the perfusate was seen. CONCLUSION: TNF-alpha, IL-1beta, IL-6 and neutrophil activator production by the isolated perfused liver, in response to a 'second hit' of portal LPS, does not appear to be enhanced during AP.

Amylases↗

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.

Acute Disease↗

Hyperoncotic dextran and systemic aprotinin in necrotizing rodent pancreatitis.

BACKGROUND: Dextrans improve pancreatic microcirculation in acute experimental pancreatitis. They could therefore facilitate the transport of a protease inhibitor to ischemic areas of tissue injury and be of additional benefit. METHODS: To compare the effects of dextrans with and without aprotinin, necrotizing pancreatitis was induced in 33 male dextran-resistant Wistar rats by intraductal infusion of low-dose glycodeoxycholic acid (10 mmol/l) followed by intravenous cerulein (5 micrograms/kg/h) for 6 h. Three and four hours after the start of the cerulein infusion the animals received infusions of either Ringer's lactate (RL) (12 ml/kg), 70,000 Da dextran (10%) (DEX-70) (4 ml/kg) alone, or DEX-70 (4 ml/kg) with aprotinin (5000 IU/kg) (DEX-70/A). RESULTS: The death rate was 60% within 9 h in the RL group (6 of 10) but only 10% in the DEX-70 group (1 of 10) (p < 0.03; Fisher's exact test) and 23% in the DEX-70/A group (3 of 13). Histomorphometry demonstrated a significant reduction of acinar necrosis in both treatment groups compared with control animals (p < 0.014; t test). Total amounts of trypsinogen activation peptides (TAP) in ascites were also significantly lower in these groups (p < 0.05; t test). CONCLUSIONS: DEX-70 given 3 h and 4 h after induction of pancreatitis significantly reduced the levels of TAP, limited acinar necrosis, and improved survival rate in acute necrotizing rodent pancreatitis. There was no additional benefit from the combination with aprotinin.

Acute Disease↗

Penetration of meropenem and cefepim into pancreatic tissue during the course of experimental acute pancreatitis.

INTRODUCTION: Recent data from experimental and clinical studies suggest that the antibiotics showing good penetration into the pancreas may reduce mortality by preventing pancreatic infection, which is the most important prognostic factor in acute pancreatitis. AIM: To determine and compare pancreatic tissue concentrations of meropenem and cefepime at different stages of acute necrotizing pancreatitis in an animal model that has been shown to closely mimic severe human pancreatitis. METHODOLOGY: Acute necrotizing pancreatitis was induced in rats by a standardized intraductal infusion of glycodeoxycholic acid and intravenous cerulein. Six hours (n = 30) and 48 hours (n = 30) after induction of pancreatitis, the rats were randomized to receive an intravenous 20 mg/kg injection of either meropenem or cefepime. Blood and the head of the pancreas were collected for determining antibiotic concentrations by high-performance liquid chromatography. RESULTS: Meropenem concentrations in the pancreas at 6 hours of acute pancreatitis increased significantly and decreased at 48 hours of the disease, but were still higher than that in controls. Concentrations of cefepime in necrotic pancreatic tissue were significantly low either during the initial or later phase, but lower in latter, in which the necrosis was more evident. Tissue/serum concentration ratios of meropenem were significantly higher than those of cefepime. However, tissue concentrations of both antibiotics are much higher than the minimum inhibitory concentration values for the common microorganisms involved in pancreatic infections. CONCLUSION: Although both antibiotics penetrate into the necrotic tissue in sufficient therapeutic concentrations, penetration of meropenem is much better than cefepime. However, good tissue penetration may not solely indicate efficacy of that antibiotic. Therefore, further experimental and clinical studies are needed to determine the therapeutic and prognostic efficacy of these agents.

Animals↗

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↗