Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “ISOLATION PERFUSION”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 73 records · Page 4Linked to original sources

Prostaglandin release from perfused, isolated hind legs in normal and arteriosclerotic rats.

Intraarterial injection of 10 microgram noradrenaline (NA) produced a stronger increase of prostaglandin E-like material (PGE) in the outflow of isolated perfused hind legs of normal rats than of those of arteriosclerotic rats. The vasopressor effect of NA in normal rats was stronger than in arteriosclerotic rats, which could be explained on the basis of PGE release.

Animals↗

Nonlinear elimination kinetics of 5-fluoro-2'-deoxyuridine in isolated perfused rat liver and isolated hepatocytes.

The kinetic parameters of the cytostatic agent 5-fluoro-2'-deoxyluridine (FUDR) were studied in isolated rat hepatocytes and in the isolated perfused rat liver. In both experimental setups a dose dependency of the elimination parameters, half-life and clearance, was observed with a calculated turning point around 250 microM. In the medium of rat hepatocytes incubated at low (0.1 microM) to high (2000 microM) FUDR, the majority of the metabolites consisted of the catabolite alpha-fluoro-beta-alanine. The nucleobase metabolites, 5-fluorouracil and its primary product 5,6-dihydro-5-fluorouracil, approached apparent steady-state levels comprising 10 to 15% of the initial concentration. In the intracellular phase of hepatocytes incubated at 300 microM FUDR almost 90% of the FUDR-derived material was alpha-fluoro-beta-alanine, whereas essentially no unchanged FUDR could be detected. Similar results were obtained at extracellular FUDR concentrations exceeding 300 microM. In the isolated perfused rat liver, the clearance decreased to 15 to 20% of the corresponding values when the initial concentration was raised from 24 to 2400 microM. At the end of perfusion alpha-fluoro-beta-alanine comprised 90 to 95% of FUDR-derived total radioactivity in the tissue even at initially 2400 microM FUDR, although at this FUDR dosage 20% of the substrate remained unmetabolized in the medium. These results suggest that the limitation of hepatic FUDR elimination is not due to saturable hepatic metabolism but must be due to saturable uptake of these pyrimidine derivatives across the cellular membrane of parenchymal liver cells.

Animals↗

Interaction of formaldehyde with glutathione in the isolated/ventilated perfused lung and the isolated perfused liver.

The interaction of formaldehyde (CH2O) with reduced glutathione (GSH) was evaluated in aqueous solution and in isolated perfused lungs and livers. Addition of CH2O (0-4.9 mM) to a solution of 0.17 mM GSH in 2 mM EDTA, pH 7.4, resulted in a time- and concentration-dependent depletion of GSH. Perfusion of livers with fortified Krebs-Ringer bicarbonate buffer containing 0.3-4.9 mM CH2O resulted in a dose-dependent depletion of GSH. Perfusion of isolated ventilated lungs with perfusate containing 4.9 mM CH2O resulted in a depletion of GSH to 75% of controls. However, lower concentrations of CH2O in the lung perfusate did not result in depletion of GSH. These results demonstrate that exposure to CH2O in aqueous solution or in the perfused lung and liver is capable of depleting endogenous GSH. However, the concentrations of CH2O required to yield a significant depletion of endogenous GSH exceed those encountered in vivo. Thus, it is unlikely that depletion of GSH by CH2O is a causal factor in formaldehyde-induced toxicity.

Animals↗

Apparent kinetics of angiotensin converting enzyme: hydrolysis of [3H]benzoyl-phenylalanyl-alanyl-proline in the isolated perfused lung.

Isolated perfused rabbit lungs were used to study the hydrolysis of [3H]benzoyl-phenylalanyl-alanyl-proline [( 3H]BPAP), a synthetic substrate for angiotensin converting enzyme (ACE). Lungs were perfused, at constant flow rates, with physiologic medium containing added BPAP and the concentration of its metabolite, [3H]benzoyl-phenylalaline, was measured in lung effluent. Hydrolysis of BPAP (4.2 microM) was 64.1 +/- 3.3% at 37 degrees C and was significantly decreased (P less than .01) to 10.1 +/- 8.7% by the addition of the ACE inhibitor, MK422 (10(-6) M). Disappearance (i.e., hydrolysis) of immunoreactive angiotensin I was also inhibited by MK422. Hydrolysis of BPAP was saturable and calculated apparent kinetic constants were Km = 13 microM and Vmax = 50 nmol/sec/lung. When the perfusion medium temperature was 10 degrees C, apparent Km was unchanged, whereas Vmax was significantly (P less than .05) decreased. At BPAP concentrations sufficient to depress metabolism to less than 20%, perfusion pressure was unchanged. Hydrolysis of BPAP under first-order conditions was independent of flow over the range 10 to 50 ml/min. However, increase in flow rate to 100 ml/min/lung was associated with decreased BPAP metabolism. These data indicate that BPAP is a substrate for pulmonary ACE in vitro and substantiate its use in intact animals because: 1) it is without physiologic effect in high doses; and 2) calculated apparent kinetics in isolated lungs under these conditions of steady-state concentrations were similar to those obtained from earlier studies that utilized bolus injection techniques in intact animals.

Angiotensin I↗

Cisplatin nephrotoxicity: role of filtration and tubular transport of cisplatin in isolated perfused kidneys.

Isolated perfused rat kidneys were used to determine the contribution of filtration and tubular transport of cisplatin to its nephrotoxicity. Perfusion of kidneys with 0.5 mM cisplatin concomitantly reduced tubular reabsorption of electrolytes and glomerular filtration rate in a time-dependent manner. These renal functional changes were similar to those obtained following in vivo cisplatin treatment (10 mg/kg). In vitro exposure to cisplatin reduced the renal clearance of organic ions without reducing renal perfusate flow, suggesting that renal hemodynamic changes do not mediate cisplatin-induced proximal tubular dysfunction. Inhibition of organic ion transport also was observed in non-filtering perfused kidneys treated with 0.5 mM cisplatin, implying that filtration of cisplatin is not a prerequisite for induction of toxicity. These data also suggest that cisplatin transport from a basolateral site may be important in the development of acute nephrotoxicity.

Absorption↗

Angiotensinogen's role in ANG formation, renin release, and renal hemodynamics in isolated perfused kidney.

Isolated perfused rat kidneys were used to investigate the effects of the addition of pure angiotensinogen or renin-free plasma to the perfusate on angiotensin I (ANG I) and angiotensin II (ANG II) generation, renal hemodynamics, and renin release. When no angiotensinogen or plasma is added, a very small amount of angiotensinogen is initially detected in the perfusate. Whereas renin secreted by the kidney accumulates in the perfusate, angiotensinogen disappears during the perfusion and immunoreactive ANG II cannot be detected. The addition of angiotensinogen reactivates the renin-angiotensin system. ANG I, [des-Asp1] ANG I, ANG II, and [des-Asp1] ANG II are progressively generated in the perfusate. At a constant perfusion pressure, as well as at a variable perfusion pressure, a progressive fall in renal perfusate flow is observed that is significantly correlated to the level of immunoreactive ANG II. ANG II significantly blunts the rise in renin, and renin release in the perfusate is negatively correlated to immunoreactive ANG II levels. Comparison of the ANG I and ANG II levels in in vitro incubated perfusates and circulated perfusates shows that in plasma-injected perfusates the level of immunoreactive ANG II is dependent on both the production of ANG I and its conversion to ANG II by renal and perfusate converting-enzyme activity, and on ANG I and ANG II degradation by the kidney and the perfusate.

Angiotensin I↗

Effect of Brefeldin A on transcytotic vesicular pathway and bile secretion: a study on the isolated perfused rat liver and isolated rat hepatocyte couplets.

This study investigated the effect of Brefeldin A (BFA) on the transcytotic vesicular pathway labeled with horseradish peroxidase (HRP) in both isolated rat hepatocyte couplets (IRHC) and the isolated perfused rat liver (IPRL). To evaluate the role of the transcytotic vesicular pathway on bile secretion, the effect of BFA on bile secretion in the IPRL was then investigated. In the basolateral area of IRHC, BFA showed no effect on the density and percentage of area of HRP-labeled vesicles. However, HRP-labeled vesicles tended to accumulate in the juxtanuclear area of BFA-treated hepatocytes (P < .001 vs. controls). In the pericanalicular area, on the other hand, HRP-labeled vesicles were depleted compared with controls (P < .001). In keeping with these findings, although the early peak remained unchanged, BFA inhibited as much as 50% of the late peak of HRP excretion in bile, after a pulse load of HRP in the IPRL. Bile flow and the biliary secretion of bile salts (BS) and phospholipids were not modified by BFA in isolated livers perfused without BS in the perfusate or with 1 mumol/min taurocholate (TCA). In BFA-treated livers, peak bile flow and BS output decreased by 20% (P < .05 vs. controls) only when a 5 mumol TCA bolus was administered. In conclusion, this study demonstrates that BFA inhibits the transcytotic vesicular pathway in the liver. However, BFA has no significant effect on bile secretion either in basal conditions or during perfusion with physiological amounts of BS. BFA slightly decreases bile flow and BS output only after an overload of BS, providing evidence against the physiological relevance of the transcytotic vesicular pathway in the process of bile formation.

Animals↗

Vasoconstrictive effects of endothelin-1, endothelin-3, and urotensin II in isolated perfused human lungs and isolated human pulmonary arteries.

BACKGROUND: Urotensin II (UII) has been identified as a ligand for the orphan receptor GPR14 through which it elicits potent vasoconstriction in humans and non-human primates. The pulmonary vasculature is particularly sensitive; human UII (hUII) exhibits a potency 28 times that of endothelin (ET)-1 in isolated pulmonary arteries obtained from cynomolgus monkeys. However, hUII induced vasoconstriction in isolated human intralobar pulmonary arteries is variable, possibly as a result of location dependent differences in receptor density or because it is only uncovered by disease dependent endothelial dysfunction. METHODS: The vasoactivity of both hUII and gobi UII (gUII) in comparison with ET-1 and ET-3 was studied in isolated perfused lung preparations (n = 14) and isolated intralobar pulmonary arteries (n = 40, mean diameter 548 (27) microm) obtained from 17 men of mean (SE) age 67 (2) years and eight women of mean (SE) age 65 (3) years with a variety of vascular diseases. RESULTS: ET-1 (10 pM-100 nM) and ET-3 (10 pM-30 nM) elicited vasoconstriction in the lung preparations, inducing comparable increases in pulmonary arterial pressure of 24.8 (4.5) mm Hg and 14.5 (4.9) mm Hg, respectively, at 30 nM (p = 0.13). Similarly, ET-1 (10 pM-300 nM) and ET-3 (10 pM-100 nM) caused marked vasoconstriction in isolated pulmonary arteries, inducing maximal changes in tension of 4.36 (0.26) mN/mm and 1.54 (0.44) mN/mm, respectively, generating -logEC(50) values of 7.67 (0.04) M and 8.08 (0.07) M, respectively (both p<0.05). However, neither hUII nor gUII (both 10 pM-1 micro M) had any vasoactive effect in either preparation. CONCLUSION: UII does not induce vasoconstriction in isolated human pulmonary arterial or lung preparations and is therefore unlikely to be involved in the control of pulmonary vascular tone.

Aged↗

Determination of antiviral nucleoside analogues AM365 and AM188 in perfusate and bile of the isolated perfused rat liver using HPLC.

Development, validation and application of an HPLC assay for new antiviral nucleoside analogues AM365 and AM188 in isolated perfused rat liver perfusate and bile were performed. An analytical column (Phenosphere-NEXT, 250 x 4.6 mm, C(18), 4 microm, Phenomenex) was used in tandem with a guard column (4 x 3 mm, C(18), Phenomenex) and operated at 25 degrees C. The mobile phase [methanol:10 mmol/L sodium orthophosphate buffer (pH 7.0), 15:85, v/v] was pumped at 1 mL/min. The signal from a diode array detector was collected from 190 to 300 nm. The chromatogram was processed at 220 and 252 nm for AM365 and AM188, respectively. The HPLC method was validated by six intraday and seven interday runs. Standard curves were linear in the range 0.125-8.00 microg/mL for AM365 and AM188, and the lower limit of quantification for AM365 and AM188 was 0.125 microg/mL. Mean interday precision and accuracy of IPL perfusate quality control samples were within 8.8%, and mean intraday precision and accuracy were within 13.1%. The assay has been successfully used in the study of metabolism and disposition of AM365 in the isolated perfused rat liver.

Animals↗

Cytosolic and nuclear estrogen receptors in the isolated perfused rat liver.

The isolated perfused rat liver was investigated as a potential model to analyze binding of 17 beta-[3H]estradiol (E2) to cytosolic and nuclear estrogen receptors. Viability of the isolated perfused liver was monitored by measuring leakage of cytosolic enzymes into the perfusate. These studies indicated that the liver remained viable for at least a 90-min perfusion period although significant decreases in cytosolic estrogen receptor concentrations occurred during this perfusion period. Estrogen receptor loss was minimized by supplementing the red blood cell-free perfusion medium with 5 micrograms of insulin per ml. Uptake of [3H]E2 by hepatic cytosolic estrogen receptors of the isolated perfused liver was rapid as measured by partial purification of radiolabeled ligand receptor complexes after varying times of perfusion. Peak liver concentrations of receptor-bound E2 were achieved 15 min after the onset of perfusion when using livers from either male or female rats. After 15 min, radiolabeled cytosolic ligand receptor complexes decreased rapidly, reaching lowest concentrations at 60 min. Radiolabeled salt-extractable nuclear-binding sites increased up to 30 min and then decreased slightly between 30 and 90 min. Both 4S and 5S forms of nuclear binding sites were detected in the isolated perfused livers as evaluated by sedimentation analysis on 5 to 20% sucrose density gradients. Concentrations of radiolabeled cytosolic and nuclear receptors were greater in females than males at all perfusion periods examined when the initial concentration of [3H]E2 was 4 nm. Sex differences in receptor uptake were not as great when higher concentrations of [3H]E2 were added to the perfusion medium. These studies suggest that the isolated perfused liver is a suitable model to investigate short-term uptake of estrogens by cytosolic and nuclear receptors.

Animals↗

Effects of different perfusates on functional parameters of isolated perfused dog kidneys.

BACKGROUND: The isolated perfused canine kidney has been established as a valid model for conducting both renal physiology and transplantation research. This model is of particular importance for developing new strategies to improve graft function after renal transplantation. In the present study, a newly developed method using isolated haemoperfused porcine kidneys was adapted for use in canine kidneys. In contrast to haemoperfusion, synthetic perfusion media can be standardized and can prevent the initiation of blood-mediated reperfusion reactions. Thus, an additional aim was to determine whether blood could be replaced by synthetic cell-free perfusion solutions. METHODS: Canine kidneys (n = 30) were harvested from donors euthanized in veterinary practices for causes unrelated to the present study. The kidneys were isolated and perfused with autologous blood or cell-free synthetic electrolyte buffer (Tyrode solution). During perfusion, we monitored renal perfusate flow (RPF), glomerular filtration rate (GFR), electrolyte and glucose reabsorption, oxygen consumption and urine concentration. RESULTS: Changes in perfusion medium did not affect the RPF. In contrast, GFR, urine concentration and oxygen consumption were significantly higher, whereas fractional excretion of sodium and glucose were significantly lower in blood- than in Tyrode-perfused kidneys. CONCLUSIONS: This system offers a simple model for studying whole-organ functional alterations after acute renal ischaemia. Renal function indicators were below values reported during in vivo physiological conditions. These functions were better conserved when kidneys were perfused with autologous blood than with Tyrode.

Animals↗

Endothelin release during ischaemia and reperfusion of isolated perfused rat hearts.

The hypothesis tested was that release of endogenous endothelin plays a role in events associated with or leading to myocardial ischaemia and/or post-ischaemic reperfusion damage. Release of endogenous endothelin into the coronary perfusate of isolated perfused rat hearts during ischaemia and reperfusion was measured with a sensitive radioimmunoassay using a polyclonal antibody with 100% cross-reactivity for all three endothelin isomers. Basal endothelin release was 0.69 +/- 0.02 pg/min/g wet heart weight (n = 35) and was constant up to 180 min. During low-flow hypoxic ischaemia for 180 min (PO2 approximately 250 mmHg) and in the presence of 1% foetal calf serum, the release rate was reduced to below 10% of controls (P < 0.01) and increased four-fold on reperfusion (P = 0.05). The influence of endothelin on vascular and myocardial reperfusion damage was studied with exogenous endothelin-2. After 1 h of low-flow ischaemia, endothelin-2 increased the coronary perfusion pressure to a similar extent as in non-ischaemic hearts, but with a 30-times higher potency. The threshold dose for the constrictive effect was approximately 100 to 300 pg per heart, about ten times more than was recovered in the coronary effluent upon reperfusion. The influence of endothelin on myocardial reperfusion mechanical function (stunning) was assessed with 100 ng endothelin-2, a dose some 3500-fold higher than the amount released during 30 min reperfusion. This dose, given at the onset of reperfusion, improved post-ischaemic aortic output recovery during the first 20 min of reperfusion, but worsened it thereafter (up to 40 min). These data indicate that, in the isolated perfused rat heart model, (1) endothelin is released in measurable amounts into the coronary circulation, (2) the release is much reduced during ischaemia and increased on early reperfusion following prolonged ischaemia, (3) based on the amounts released and the post-ischaemic sensitization of the coronary vasculature to endothelin, the peptide could contribute to reperfusion vascular damage, and (4) endothelin is unlikely to influence stunning owing to the extremely high dose necessary to alter reperfusion mechanical function.

Animals↗

The effects of a cocarcinogen, ferric oxide, on the metabolism of benzo[a]pyrene in the isolated perfused lung.

An isolated perfused New Zealand rabbit lung preparation was used to investigate the effects of a cocarcinogen, ferric oxide (Fe2O3), on the metabolism of benzo[a]pyrene (BaP), a ubiquitous potent carcinogen that has been associated with the increased incidence of human bronchiogenic carcinoma in occupational and urban settings. [14C]-BaP was administered intratracheally to an isolated perfused lung (IPL) preparation with and without Fe2O3 after intraperitoneal pretreatment of the whole animal with BaP or intratracheal pretreatment of the whole animal with Fe2O3 and/or BaP. BaP and its metabolites were isolated from serial blood samples up to 180 min after administration of [14C]BaP to the IPL. BaP and its metabolites were also isolated from lung tissue, washout fluid, macrophage, and trachea bronchi at the end of the perfusion at 180 min. Patterns of BaP metabolites were determined by chromatographic techniques and liquid scintillation counting. Fe2O3 pretreatment to the whole animal or administration of Fe2O3 to the IPL altered BaP metabolism by the perfused lung. Fe2O3 pretreatment to the whole animal resulted in an increase in the total rate of appearance of metabolites of BaP in the blood (ng/g lung X h), while Fe2O3 administration to the IPL resulted in a decrease in the total rate of appearance of BaP metabolites in the blood and inhibited the effect of pretreatment. Administration of Fe2O3 with BaP to the IPL with or without Fe2O3 pretreatment to the whole animal, or BaP administration to the IPL preceded by Fe2O3 pretreatment to the whole animal, enhanced dihydrodiol formation and depressed formation of water-soluble metabolites. Since dihydrodiol formation is considered to be the active pathway of BaP metabolism, these data suggest that pulmonary exposure to a known cocarcinogen, Fe2O3, in the presence of BaP results in increased production of dihydrodiols of BaP, which may be further metabolized to the ultimate carcinogenic form(s) of BaP. Therefore, Fe2O3 can enhance the metabolic activation of BaP by the lung, as well as act as a carrier for penetration and retention of BaP in the lung.

7,8-Dihydro-7,8-dihydroxybenzo(a)pyrene 9,10-oxide↗

Pharmacokinetics and tissue uptake of mitomycin C in isolated perfusion of pancreas.

Isolated perfusion of organs or anatomic sites with chemotherapeutic agents offers a pharmacokinetic advantage of increasing drug bioavailability to target tissues which may result in a greater magnitude of biologic effect (pharmacologic or toxic) without systemic toxicity. Using a previously developed animal model, isolated perfusion (IP) of the canine pancreas-duodenum with incremental doses of mitomycin C (MMC) had shown a dose of 0.25 mg/kg body weight to be the maximum tolerable dose. The current study was designed to compare the pharmacologic advantage of drug delivery by IP by directly measuring tissue drug levels of radiolabeled MMC and comparing them with tissue levels attained by selective intraarterial (IA) and intravenous (IV) routes using identical doses of drug (n = 4 each). IP of pancreas-duodenum was performed for 45 min with a perfusate-to-systemic drug leak rate of less than 5%. IP was accomplished by using extracorporeal pump oxygenator at 39 degrees C and flow initiated at 110-120 ml/min, with a mean pressure of 90 mm Hg. Vascular inflow and outflow was isolated to the cannulated superior pancreaticoduodenal artery and vein. In the IA group drug was infused over 45 min through same artery as IP. IV group underwent identical dosing through the jugular vein. Direct measurement of drug in harvested pancreas and duodenum for each individual was done by tissue solubilization and scintillation assay. A 6-fold greater tissue level of drug in IP over IA and a 15-fold increase in IP over IV methods of delivery were found (P less than 0.01).

Animals↗

Acute and chronic toxicity of aromatic amines studied in the isolated perfused rat liver.

Isolated perfused livers from male Wistar rats were used to study acute and chronic toxic effects of carcinogenic aromatic amines. We investigated the hypothesis that aromatic amines can generate reactive oxygen species as part of their metabolism. Concentrations of 200-400 microM of 2-acetylaminofluorene (AAF), N-hydroxy-AAF, trans-4-acetylaminostilbene (AAS), N-hydroxy-AAS, and N-hydroxy-2-acetylaminophenanthrene in the recirculating perfusate were not toxic in a 2-hr exposure time as assessed by LDH efflux into the perfusate, glutathione excretion into bile, and changes of the beta-hydroxybutyrate/acetoacetate ratio in the perfusate. N-Acetoxy-AAF, however, was severely toxic. Menadione served as a positive control. It is concluded that exposures likely to occur in carcinogenicity studies with these aromatic amines will not be acutely toxic. In additional experiments the isolated perfused liver system was used to demonstrate chronic effects generated by feeding the carcinogenic dose of 0.02% AAF for up to 12 weeks. The following alterations were observed in livers from AAF-fed animals. excretion of glutathione into bile is drastically reduced after 5 or more weeks, increasingly less glucose is released into the perfusate, and oxygen consumption is constantly increased by 20% after 3 and more weeks of AAF feeding. Whereas the total glutathione level increased with time in homogenates of such livers, it decreased in the mitochondrial fraction. The results are interpreted as adaptive responses to chronic toxic effects of AAF which may be related to the promoting properties of this carcinogen.

2-Acetylaminofluorene↗

Pharmacokinetics of theophylline in the newborn and adult rabbit. In vivo and isolated perfused liver approaches.

The isolated perfused liver technique is the in vitro system most nearly comparable to the intact liver for experimental investigations on drug metabolism. The model currently used employs liver from different species, but only adults. For the first time, we have set up an experimental investigation involving perfusion of the liver of newborn animals. Using theophylline (TH) as tool drug, an in vivo/in vitro and adult/newborn disposition study was made in the rabbit. After a 10 mg/kg dose iv to adult rabbits and ip to rabbits at birth, the pharmacokinetic profile of TH was analyzed during liver perfusion at comparable TH concentrations in the medium. A few biochemical variables were recorded. No age-related differences were observed in the release of glutamic-oxalacetic transaminase and lactate dehydrogenase over the perfusion time. O2 consumption was higher in adults than in newborns, in accordance with the lower metabolic capacity of the neonatal liver, supported by the lower values of cytochrome P-450, cytochrome c, and glutathione. In vivo and in vitro values were close in adults and newborns for half-life (average 5.2 vs. 5.4 and 27 vs. 35 hr, respectively) and intrinsic clearance of TH (13 vs. 11 and 0.032 vs. 0.021 ml/min). The qualitative and quantitative TH metabolic patterns in the medium and in vivo also were close in adult animals. Only unchanged TH was detected in newborn perfusate. The isolated perfused liver technique appears to offer a reliable model for studying the in vitro ontogeny of drug metabolism, and for making in vitro and in vivo physiological and pharmacological comparisons.

Aging↗