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Cerulein-induced pancreatitis in the ex vivo isolated perfused canine pancreas.

Infusion of supramaximal doses of the cholecystokinin analog cerulein is well established as an in vivo technique for inducing experimental pancreatitis in small animals. An attempt was made to simulate this model and initiate pancreatitis in the ex vivo isolated perfused canine pancreas. Control preparations gained minimal weight (mean 8.3 +/- 5.1 gm), demonstrated no edema accumulation, and did not develop hyperamylasemia (mean 1342 +/- 790 units) after 4 hours of perfusion. Electron microscopy after 4 hours of perfusion remained normal. Intraarterial cerulein infusion produced significant weight gain (mean 27.6 +/- 12.3 gm; p less than 0.001), edema formation, and marked hyperamylasemia (mean 26,838 +/- 21,341 units; p less than 0.001) after 4 hours of perfusion. During the 4-hour perfusion, electron microscopy of cerulein preparations demonstrated depletion of zymogen granules, condensing vacuole formation, and basolateral exocytosis. Pretreatment of cerulein preparations with the free radical scavengers superoxide dismutase and catalase and the iron chelator deferoxamine did not modify the pancreatitis. Continuous infusion of the nonpeptide cholecystokinin antagonist L364,718 reduced cerulein-induced weight gain (4.3 +/- 3.4 gm; p less than 0.001) and hyperamylasemia (9392 +/- 6718 units; p less than 0.05). We conclude that cerulein pancreatitis in the ex vivo isolated perfused canine pancreatic preparation is identical physiologically, biochemically, and morphologically with that seen in intact animals.

Acid-Base Equilibrium↗

Mirex inhibits bile acid secretory function in vivo and in the isolated perfused rat liver.

The insecticides mirex and chlordecone suppress the biliary excretion of a wide variety of non-bile acid organic anions in vivo in the rat, and mirex inhibits the uptake of taurocholate (TC), a common bile acid, in isolated rat hepatocytes. We have therefore investigated the effects of mirex and chlordecone on bile acid secretory function (bile flow, bile acid concentration, bile acid secretory rate) in vivo and in the single-pass isolated perfused liver. Male Sprague-Dawley rats were orally dosed with corn oil, mirex (50 mg/kg), or chlordecone (18.75 mg/kg; in vivo studies only) for 3 consecutive days and experiments performed on Day 6. Mirex significantly increased liver weight from 12.2 +/- 0.8 to 20.8 +/- 1.3 g with no change in body weight whereas chlordecone had no significant effect on liver weight (11.9 +/- 0.7 g) or body weight. Mirex significantly decreased while chlordecone increased bile flow per gram liver in vivo; both compounds, however, increased bile flow when expressed per kilogram of body weight. Mirex and chlordecone significantly decreased the bile acid concentration in bile and the bile acid secretory rate (nmol/min/g liver and mumol/min/kg body weight). Studies in the isolated perfused liver were designed to determine the effect of mirex on the ability of the liver to extract increasing concentrations of [3H]TC from the perfusate and excrete it in the bile. Mirex treatment significantly decreased the TC extraction ratio by 40-89% and the hepatic intrinsic clearance by 85-95%. Mirex also significantly decreased the TC-induced choleresis, the concentration of TC in the bile, and the TC secretory rate. The data indicate that mirex treatment markedly inhibits the ability of the liver to extract TC from the blood/perfusate and concentrate it in the bile.

Animals↗

Metabolism of digitoxin in the isolated perfused rat liver. Effect of spironolactone pretreatment.

Livers from either control or spironolactone-treated rats were perfused for a 90-min period with 30% rat blood and 3H-digitoxin. At several time periods throughout perfusation, bile was collected and a sample of blood was removed from the perfusate. Extractions were performed on both blood and bile to determine amount of polar and nonpolar metabolites at 60 min. Polar metabolites were cleaved with beta-glucuronidase and high-pressure liquid chromatography was used to separate the resultant nonpolar metabolites from blood and bile cleaved with beta-glucuronidase. Biliary excretion and perfusate disappearance of 3H-digitoxin were significantly increased in livers taken from spironolactone-pretreated animals. Both polar and nonpolar metabolites in bile were significantly increased in pretreated animals. The majority of polar metabolites produced by livers from both treated and nontreated animals were readily cleaved with beta-glucuronidase. Both biliary excretion and metabolic pattern, obtained from these studies in an isolated perfused rat liver, mimic those seen in the intact rat. Thus, the isolated perfused rat liver can be used as a model for in vivo studies of cardiac glycoside metabolism.

Animals↗

The influence of somatostatin on glucagon and pancreatic polypeptide secretion in the isolated perfused human pancreas.

The current study was undertaken to determine whether intraislet somatostatin regulates glucagon or pancreatic polypeptide (PP) secretion in the human pancreas. A high-affinity, high-specificity monoclonal somatostatin antibody (CURE.S6) was used to immunoneutralize somatostatin in the isolated, perfused human pancreas. Single-pass perfusion was performed in pancreata obtained from cadaveric organ donors using a modified Krebs media with either 3.9 or 12.9 mM glucose. Sequential test periods separated by basal periods were performed with infusion of either exogenous somatostatin-14 (SS-14), CURE.S6, or a combined infusion. Infusion of SS-14 did not significantly alter glucagon or PP secretion during low-glucose or high-glucose perfusion. Immunoneutralization of intraislet somatostatin with CURE.S6 resulted in a significant increase of glucagon secretion under low-glucose conditions (delta X = 15 +/- 3 pM) (p < 0.05), but did not significantly effect glucagon secretion under high-glucose conditions (delta X = -2 +/- 3 pM) (p = NS). PP secretion remained unchanged during CURE.S6 infusion. Combined infusion of SS-14 and CURE.S6 did not significantly alter glucagon or PP secretion. The data suggest that intraislet somatostatin may have an inhibitory role in the regulation of glucagon secretion during low-glucose conditions and that intraislet somatostatin does not regulate PP secretion in the isolated, perfused human pancreas.

Adolescent↗

Permeability characteristics of isolated perfused rat lungs.

We examined the factors that influence the permeability characteristics of isolated perfused rat lungs and compared the ex vivo permeability-surface area product (PS) with that obtained in vivo. In lungs perfused for 20 min with homologous blood or a physiological salt solution (PSS) containing 4 g/100 ml albumin, mean PS values, obtained by the single-sample method of Kern et al. [Am. J. Physiol. 245 (Heart Circ. Physiol. 14): H229-H236, 1983], were 9.9 +/- 0.6 (SE) and 6.8 +/- 0.3 cm3.min-1.g wet lung-1.10(-2), respectively. These values were similar to lung PS obtained in intact rats (7.7 +/- 0.4 cm3.min-1.g wet lung-1.10(-2). In perfused lungs, PS values were influenced by the perfusate albumin concentration, the length of perfusion time, and the degree of vascular recruitment. Twenty minutes after lung isolation, PS was 126% higher in lungs perfused with albumin-free PSS containing Ficoll than in lungs perfused with albumin-PSS. Moreover, PS in Ficoll-PSS-perfused lungs increased even higher after 2 h of perfusion, and this time-dependent increase in PS was attenuated by addition of 0.1 g/100 ml albumin to the perfusate. Two hours of ex vivo ventilation with hypoxic (0 or 3% 0(2)) or hyperoxic (95% 0(2)) gas mixture did not affect PS values in perfused lungs. However, PS was elevated in lungs perfused ex vivo with protamine, which causes endothelial cell injury, or in lungs from rats exposed in vivo to human recombinant tumor necrosis factor.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Beneficial effect of tetrahydrobiopterin on ischemia-reperfusion injury in isolated perfused rat hearts.

OBJECTIVE: It has recently been proposed that nitric oxide synthase, in the presence of suboptimal levels of tetrahydrobiopterin, an essential cofactor of this enzyme, might favor increased production of oxygen radicals. The aim of this study was to clarify whether supplement with tetrahydrobiopterin would exert a cardioprotective effect against ischemia-reperfusion injury. METHODS: Isolated perfused rat hearts were subjected to 30 minutes of global ischemia and 30 minutes of reperfusion at 37 degrees C. Hearts were treated with tetrahydrobiopterin or vehicle for 5 minutes just before ischemia and during the first 5 minutes of the reperfusion period. Effects of tetrahydrobiopterin on left ventricular function, myocardial contents of lipid peroxidation and high-energy phosphates, and levels of lactate dehydrogenase and nitrite plus nitrate in perfusate during ischemia and after reperfusion were estimated and further compared with those of superoxide dismutase plus catalase or L-ascorbic acid. RESULTS: Tetrahydrobiopterin and superoxide dismutase plus catalase both improved contractile and metabolic abnormalities in reperfused hearts. On the other hand, L-ascorbic acid at a dose having an equipotent radical scavenging activity with tetrahydrobiopterin did not significantly affect the postischemic changes. Although tetrahydrobiopterin and superoxide dismutase plus catalase significantly alleviated ischemic contracture during ischemia, diminished perfusate levels of nitrite plus nitrate after reperfusion were restored only with tetrahydrobiopterin. CONCLUSION: Results demonstrated that tetrahydrobiopterin lessens ischemia-reperfusion injury in isolated perfused rat hearts, probably independent of its intrinsic radical scavenging action. The cardioprotective effect of tetrahydrobiopterin implies that tetrahydrobiopterin could be a novel and effective therapeutic option in the treatment of ischemia-reperfusion injury.

Animals↗

Effect of calcitonin gene-related peptide (CGRP) on motility and on the release of substance P, neurokinin A, somatostatin and gastrin in the isolated perfused porcine antrum.

We studied the effect of porcine CGRP (pCGRP) in concentrations from 10(-10) to 10(-8) mol L(-1) on the motility and on the release of substance P, neurokinin A, somatostatin and gastrin in the antrum using the isolated perfused porcine antrum as experimental model. In addition, we studied the localization of CGRP by immunohistochemistry in the porcine antrum. CGRP-immunoreactive nerve fibres were found mainly in the submucous layer and in the external muscle coat, where they were seen in all layers, and in the ganglia of the myenteric nervous plexus. The frequency of contraction was significantly and dose-dependently increased from a basal level of 11.8 +/- 0.5 contractions per 5 min to 24.4 +/- 3.6 contractions per 5 min at pCGRP 10(-8) mol L(-1). At this dose, the release of substance P and neurokinin A was significantly increased to 470 +/- 149% and 217 +/- 26%, respectively, compared to basal release. The effect of pCGRP was unaffected by the addition of the nonpeptide antagonists for the NK-1 (CP-99994) and NK-2 receptors (SR48968), both at 10(-6) mol L(-1), whereas atropine (10(-6) mol L(-1)) completely abolished the motor effect of pCGRP. The release of somatostatin was significantly increased by 154 +/- 15% in response to CGRP at 10(-8) mol L(-1). The release of gastrin was unaffected by pCGRP. In conclusion, pCGRP increases contractile activity in the porcine antrum, an effect that involves cholinergic mechanisms but is independent of the release of substance P and neurokinin A. in addition, pCGRP increases the release of somatostatin but has no effect on gastrin release in the isolated perfused porcine antrum.

Animals↗

Morphological and physiological study of the effect of histamine on the isolated perfused rabbit lung.

Histamine causes interstitial pulmonary edema, but whether this is the result of an increased permeability of the pulmonary circulation or only of the bronchial circulation remains to be determined. In order to selectively study the effect of histamine on the pulmonary circulation, we used an isolated perfused rabbit lung preparation because in this species, the bronchial circulation is poorly developed. Edema formation was assessed by continuously monitoring the weight of the lung perfused at constant pressure. These studies were supplemented by electron microscopic observations using hemoglobin as an ultrastructural tracer for microvascular permeability. We found that histamine (8.0 microgram base/100 ml of perfusate) did not cause lung weight to increase. Ultrastructural studies showed that histamine, at this dosage, did not cause a greater leakage of hemoglobin that occurred in the control lungs. Thus, we have concluded that histamine does not increase the permeability of the pulmonary microcirculation in the isolated perfused rabbit lung.

Animals↗

Effect of fasting on the uptake of bilirubin and sulfobromophthalein by the isolated perfused rat liver.

BACKGROUND & AIMS: Occurrence of hyperbilirubinemia after fasting has been recognized for many years. The pathogenesis of this syndrome is unclear. Although recent studies suggest that increased intestinal deconjugation and reabsorption of bilirubin may play a major role in establishment of hyperbilirubinemia during fasting, other studies have suggested that fasting down-regulates intrinsic hepatocyte transport of bilirubin. The present study was designed to examine this possibility in the isolated perfused rat liver. METHODS: Transport of 3H-bilirubin and 35S-sulfobromophthalein (BSP) was examined in isolated perfused livers from 48-hour fasted or control rats using a multiple indicator dilution technique. Data were analyzed to quantify single-pass extraction (model-independent analysis) and were also fit by computer to the model of Goresky to quantify unidirectional fluxes. RESULTS: Fasting for 48 hours resulted in an approximately 40% reduction in liver weight but had no effect on model-dependent or model-independent parameters of transport. Despite the fact that the liver was smaller, single-pass extraction of bilirubin and BSP by livers from fasted animals did not differ from control, indicating a greater efficiency at uptake of bilirubin and BSP. CONCLUSIONS: Enhanced enterohepatic circulation of bilirubin, not altered hepatic transport, is a major factor in the pathogenesis of fasting-induced hyperbilirubinemia.

Animals↗

Release of colony-stimulating activity from the isolated perfused rat liver.

1. Colony-stimulating activity appeared in the perfusate of the isolated rat liver during perfusions with either whole rat blood, rat plasma or an artificial perfusate of Eagle's medium and albumin. 2. Dialysable inhibitors of colony formation were also released during perfusions. 3. Colony-stimulating activity in artificial perfusate could be enhanced by the addition of rat plasma in vitro. Concentrations of cycloheximide that inhibited albumin synthesis by the liver did not inhibit the release of colony-stimulating activity.

Animals↗

[Release of endothelin from isolated perfused human umbilical vein. I: Effect of ionomycin].

Endothelin-like immunoreactivity (ET-LI) was directly measured in the perfusate from the isolated human umbilical vein perfused with Krebs-Ringer solution. The identity of the immunoreactive peptide was confirmed as ET-1 by high-performance liquid chromatography. The rate of release of ET-LI was 86.7 +/- 25.9 (SE) fmol during the first perfusion period of 30 min, and it remained stable at least for 4 hours. Calcium ionophore ionomycin, added to the perfusion medium (10(-7)-10(-6) M), stimulated the ET-LI release in a dose-dependent fashion; it increased the rate of release by 29.1% and 143.4% over the control at the concentrations of 10(-7) and 10(-6) M, respectively. These results taken together with previous observations of synthesis of ET in cultured vascular endothelium provide direct evidence for local generation and subsequent release of ET from vascular beds of human beings.

Calcium↗

Metabolism of the carcinogenic air pollutant 2-nitrofluorene in the isolated perfused rat lung and liver.

The metabolism of 2-nitrofluorene (NF), a model substance for nitrated polycyclic aromatic hydrocarbons, was studied in the isolated perfused rat lung and liver. NF has been identified in urban air and diesel exhaust and occurs in the gas, as well as in the particulate phase. Therefore, it is conceivable that the lung represents one point of entry of this compound into the body. The lung metabolizes NF to hydroxylated NFs, mainly 9-hydroxy-NF, independently of the route of administration (intravascular or intratracheal). After intratracheal administration, NF is rapidly excreted into the perfusate, indicating that other organs might be exposed to unmetabolized NF. The liver excretes NF metabolites as biliary glucuronides. Untreated bile is not mutagenic. However, after beta-glucuronidase treatment of bile, direct-acting mutagens were detected. The mutagenic metabolites in beta-glucuronidase-treated bile were the same as identified in the perfusate of the isolated lung. Since beta-glucuronidase is an enzyme found in the human intestinal microflora, inhalation of NF could result in the liberation of genotoxic metabolites in the colon.

Air Pollutants↗

Formation of conjugates of 2-fluoro-beta-alanine and bile acids during the metabolism of 5-fluorouracil and 5-fluoro-2-deoxyuridine in the isolated perfused rat liver.

We have recently demonstrated that the major biliary metabolite of 5-fluorouracil (FUra) in cancer patients is a conjugate of the FUra catabolite 2-fluoro-beta-alanine (FBAL) and cholic acid (D.J. Sweeny, S. Barnes, G. Heggie, and R.B. Diasio. Proc. Natl. Acad. Sci. USA, 84:5439-5443, 1987). This finding prompted us to further examine the metabolism and biliary excretion of clinically relevant concentrations of the fluoropyrimidines FUra and 5-fluoro-2'-deoxyuridine (FdUrd) using the isolated perfused rat liver. During infusion of fluoropyrimidines, rates of appearance of metabolites in bile were similar with both 1 microM FUra and 1 microM FdUrd but were 9-fold higher with 25 microM FUra. Analysis by high performance liquid chromatography demonstrated that unmetabolized fluoropyrimidines and known catabolites (i.e., FBAL) accounted for less than 15% of the total metabolites in bile and that the majority of the biliary metabolites were eluted as three distinct nonpolar compounds. Fast atom bombardment-mass spectrometry demonstrated that these unique metabolites had molecular weights of 497 (peak 1), 497 (peak 2), and 481 (peak 3). These metabolites were hydrolyzed by cholylglycine hydrolase to FBAL and unconjugated bile acids that were identified by gas chromatography-mass spectrometry to be alpha-muricholic acid (peak 1), cholic acid (peak 2), and chenodeoxycholic acid (peak 3). Thus, the major biliary metabolites of FUra and FdUrd were identified as N-(bile acid)-FBAL conjugates. While the N-(bile acid)-FBAL conjugates were the major metabolites in bile, dihydroFUra was the major (greater than 70%) metabolite eliminated into perfusate. In summary, these results demonstrate that FUra and FdUrd undergo similar metabolism in the isolated perfused rat liver and, as was observed in humans, the major biliary fluoropyrimidine metabolites are conjugates of FBAL and bile acids.

Alanine↗

Myocardial kinetics of 99m technetium-Q agents: studies in isolated cardiac myocyte, isolated perfused rat heart, and canine regional myocardial ischemia models.

OBJECTIVE: Based on reports of high cellular uptake and low plasma binding of nonreducible mixed ligand Tc(III) cations (Q complexes) and high linear uptake versus blood flow of 99mTc-Q3 in canine hearts, the authors hypothesized that the two Q complexes, 99mTc-Q63 and 99mTc-Q64, would have high cell uptake and better differentiation between ischemic and nonischemic myocardium compared with other 99mTc-based compounds. METHODS: Uptake and retention kinetics of 99mTc-Q63 and 99mTc-Q64 were measured in isolated rat cardiac myocytes, isolated perfused rat hearts, and intact canines and compared with previously reported Q-based compounds, a clinically available 99mTc perfusion agent (sestamibi), and 201Tl. RESULTS: Uptake of Q63, Q64, and sestamibi by isolated cardiac myocytes was similar. Maximum extraction (Emax) of Q64 by isolated perfused rat hearts was greatest among the 99mTc agents (P < 0.02), but net extraction (Enet) of Q64 was not different from Q63 or sestamibi 3 minutes after tracer injection. By 15 minutes, 201Tl Enet was lower than Q63, Q64, and sestamibi (P < 0.05). Among 99mTc agents, the uptake versus flow of Q3, Q63, and Q64 by canine heart was superior to Q12 and sestamibi (P < 0.05). CONCLUSIONS: The activity of Q63 and Q64 in the myocardium is related to actual myocardial blood flow over a broad, clinically relevant range of flows. The ischemic-to-normal zone activity distributions of Q63 and Q64 approximate actual flow in a manner more like that of 201Tl than sestamibi or Q12. These results provide a rational foundation in support of further evaluation of Q63 and Q64 in humans.

Acute Disease↗

Rapid degradation of endothelin-1 by an enzyme released by the rat isolated perfused mesentery.

1. In vivo the effects of endothelin-1 (ET-1) are limited by its rapid removal from the circulation and possibly by its metabolism by enzymes such as neutral endopeptidase 24.11, deamidase or carboxypeptidase A. Here, using as a model the isolated perfused mesenteric arterial bed of the rat, we have examined the involvements of these enzymatic activities in the vascular responses to ET-1. 2. Samples of Krebs buffer which had been recirculated through the mesenteric arterial bed for 30 min rapidly destroyed the activity of ET-1 as assessed either by bioassay on rings of rat thoracic aorta or by high performance liquid chromatography (h.p.l.c.). For instance, after 15 min incubation with the recirculated-Krebs solution (recirc-K) the contraction induced by 3 x 10(-9) M ET-1 was reduced by more than 90%. Contractions induced by sarafotoxin 6b (3 x 10(-9) M) were similarly suppressed by preincubation with recirc-K whereas those to Arg-vasopressin (3 x 10(-9) M) were unaffected. 3. The degradation of ET-1 by recirc-K was prevented by 1,10-phenanthroline (10(-3) M), abolished by heating the recirc-K solution to 90 degrees C for 15 min, and reduced by EGTA (5 x 10(-3) M) or ET-1(16-21) (10(-5) M). For instance, in the presence of ET-1(16-21) (n = 6) the contraction induced by ET-1 was reduced by only 40% after 15 min incubation with recirc-K buffer. Leupeptin (3 x 10-4 M), dichloroisocoumarin(5 x 10-5 M), phenylmethyl-sulphonyl fluoride (10-3 M), a combination of bacitracin (300 mg ml-1),bestatin (10-5 M), captopril (10-5 M), phosphoramidon (10-4 M) and thiorphan (10-4 M) or Polypep (aproprietary protein digest) did not inhibit the degradation of ET-1 by recirc-K.4. In experiments examining directly the vascular responses of the isolated perfused mesentery of the rat, the addition of cumulative concentrations of ET-1 to the recirculating Krebs solution caused small concentration-dependent increases in perfusion pressure. The inclusion of ET-1(16-2l), ET-1(17-21), or ET-1(18-21) (10-5M) greatly potentiated these responses, but not those to Arg-vasopressin or methoxamine.The effects of 1,10-phenanthroline or EGTA could not be examined in this system because these agents both depressed non-specifically the vasoconstrictor responses of the mesenteric vascular bed.5. Thus, the rat mesentery releases an enzyme that very rapidly destroys ET-1 or the very closely related peptide, sarafotoxin 6b but not Arg-vasopressin. This enzyme is most probably a metallopeptidase because of its sensitivity to inhibition by 1,10-phenanthroline or EGTA. It is particularly interesting that a simple vascular bed such as the mesentery produces such a powerful endothelin metabolising enzyme. It is tempting, therefore, to speculate that the endothelin degrading enzyme active at neutral pH that- we have found is important in the metabolism of ET-1 throughout the vasculature.

Animals↗

The beta adrenoceptor blocker tertatolol causes vasodilatation in the isolated perfused vasoconstricted rat kidney.

The activity of the beta adrenoceptor antagonist tertatolol on renal vasoconstrictions was investigated. Infusion of increasing concentrations of tertatolol (10(-8) to 10(-5) M) progressively inhibited the constrictor responses to bolus injections of norepinephrine and to electrical stimulation in isolated perfused kidneys of both normotensive and spontaneously hypertensive rats. Also, in kidneys of normotensive rats the vasoconstrictions caused by serotonin and barium chloride were inhibited by tertatolol. During sustained vasoconstrictions induced by infusion of norepinephrine (6 X 10(-7) M) increasing doses of tertatolol (2.5 X 10(-7) g to 2 X 10(-5) g) caused rapid, reversible dilatations in the rat kidneys. The inhibitory responses caused by tertatolol were not antagonized by propranolol, atropine, hexamethonium, SCH23390, metoclopramide, mepyramine, cimetidine, naloxone, cocaine or indomethacin. During constrictions caused by norepinephrine, methylene blue significantly inhibited the renal vasodilatations caused by tertatolol, acetylcholine, papaverine and nitroglycerin but not those caused by atrial natriuretic factor. Unlike the other vasodilators, tertatolol did not inhibit the constrictions induced by prostaglandin F2 alpha (5 X 10(-6) M) in the rat kidneys. In canine renal arteries with endothelium, tertatolol (10(-9) to 10(-5) M) did not cause relaxations during contractions induced by norepinephrine, electrical stimulation or prostaglandin F2 alpha. Our data illustrate that tertatolol has potent vasodilator properties in the isolated perfused vasoconstricted rat kidney. The dilator response to the beta blocker cannot be inhibited by a variety of classical receptor blockers but ultimately seems to depend on the formation of cyclic GMP.

Adrenergic beta-Antagonists↗

Pharmacokinetics and hepatic disposition of bis[1-(ethoxycarbonyl)propyl]5-acetylamino-2,4,6-triiodoisophthalate in rats and isolated perfused rat livers.

Bis[1-(Ethoxycarbonyl)propyl]5-acetylamino-2,4,6- triiodoisophthalate+ (NC 68183) was designed as a new computed tomography imaging agent. The purpose of this study was to determine the pharmacokinetics and metabolism of NC 68183 in conscious rats and in the isolated perfused rat liver. Animals were i.v. dosed at 69 and 690 mg of iodine/kg. Blood samples were collected at 5, 15, 30, and 60 min, and 7 days after dosing. Tissue samples (liver, kidney, and spleen) were taken at 60 min and 7 days after dosing. NC 68183 was cleared from blood in first order kinetics following an i.v. administration of 69 mg I/kg. The volume of distribution (Vss) at steady state and elimination half-life (t(1/2)) were estimated as 24 ml and 11 min. The clearance of NC 68183 from blood was changed to zero-order kinetics following administration of 690 mg/kg, and its elimination rate was 16 microg I/ml.min. The liver and spleen were the only tissues to have the nanoparticle residue at day 7 following administration. NC 68183 (75 mg of agent, 35 mg of I) was injected into the isolated perfused rat liver system. Bile flow increased from 1.0 to 1.3 microl/min/g liver following administration. The biliary excretion rate maximum was estimated as 11 microg/min/g liver. The metabolite was identified using liquid chromatography/mass spectrometry as a monocarboxylic acid product, which exclusively excreted into the bile in a soluble iodinated metabolite. Pharmacokinetics data suggested that NC 68183 primarily resides in the blood pool following an i.v. administration with a plasma half-life appropriate for blood pool imaging.

Animals↗

Alterations of the renal function in the isolated perfused rat kidney system after in vivo and in vitro application of S-(1,2-dichlorovinyl)-L-cysteine and S-(2,2-dichlorovinyl)-L-cysteine.

The nephrotoxic effects of the two isomers S-(1,2-dichlorovinyl)-L-cysteine (1,2-DCVC) and S-(2,2-dichlorovinyl)-L-cysteine (2,2-DCVC) were investigated comparatively in the isolated perfused rat kidney with two different treatment regimens. In the first approach, the kidneys were exposed to the test compounds dissolved in the perfusion media after removal from the animal. In the second approach the test compounds were administered to rats in vivo and the nephrotoxicity was assessed in the isolated perfused kidney 6 h and 18 h post-treatment. The vicinal isomer 1,2-DCVC produced concentration- and time-dependent nephrotoxicity with both treatment regimens, as indicated by the impairment of glucose reabsorption, the increase of protein excretion and of gamma-glutamyltransferase and alkaline phosphatase activities in urine. In contrast to the marked toxicity observed after in vivo and in vitro administration of 1,2-DCVC, the geminal isomer, 2,2-DCVC, was not nephrotoxic at all concentrations (0.5 and 2.5 mM in vitro, 40 and 70 mg/kg in vivo) investigated.

Animals↗