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Juergen Drewe

Publications and source records attributed to Juergen Drewe.

At least 19 recordsLinked to original sources

Role of free fatty acids in regulating gastric emptying and gallbladder contraction.

The limited effectiveness of orlistat, an inhibitor of gastrointestinal lipases, in inhibiting fat digestion is not completely understood. Therefore we studied the effect of orally and duodenally administered orlistat on gastric emptying, cholecystokinin (CCK) secretion, and gallbladder contraction. In healthy males, gastric emptying of solids and fat were quantified scintigraphically, gallbladder contraction by ultrasound and CCK release by radioimmunoassay. Three studies were performed: (1) oral and (2) duodenal orlistat with a fat-containing meal, and (3) duodenal orlistat with a fat-free meal. Gastric emptying rates of solids and fat (T50% accelerated by 16 and by 22%, p < 0.05, respectively) were significantly faster after duodenal perfusion of orlistat; gallbladder contraction and CCK release were reduced under these conditions (p < 0.005, respectively). With oral orlistat no significant effect was documented on these parameters. We conclude that fat hydrolysis is essential in the regulation of fat-induced gastric emptying and gallbladder contraction.

Adult↗

Decreased expression of breast cancer resistance protein in the duodenum in patients with obstructive cholestasis.

BACKGROUND/AIMS: The expression of transporters involved in bile acid homeostasis is differentially regulated during obstructive cholestasis. Since the drug efflux transporter breast cancer resistance protein (BCRP) is known to transport bile acids, we investigated whether duodenal BCRP expression could be altered during cholestasis. METHODS: Using real-time RT-PCR analysis we determined mRNA expression levels in duodenal tissue of 19 cholestatic patients. Expression levels were compared to 14 healthy subjects. BCRP protein staining was determined in biopsies of 6 cholestatic and 6 healthy subjects by immunohistochemistry. RESULTS: We found that in patients with obstructive cholestasis mean duodenal BCRP mRNA levels were significantly reduced to 53% and mean protein staining was reduced to 57%. CONCLUSIONS: BCRP, a transporter for bile acids and numerous drugs, appears to be down-regulated in the human duodenum during cholestasis. The clinical impact of these results has to be investigated in further studies.

ATP Binding Cassette Transporter, Subfamily G, Mem↗

Effect of CCK-1 receptor blockade on ghrelin and PYY secretion in men.

Cholecystokinin (CCK), peptide YY (PYY), and ghrelin have been proposed to act as satiety hormones. CCK and PYY are stimulated during meal intake by the presence of nutrients in the small intestine, especially fat, whereas ghrelin is inhibited by eating. The sequence of events (fat intake followed by fat hydrolysis and CCK release) suggests that this process is crucial for triggering the effects. The aim of this study was therefore to investigate whether CCK mediated the effect of intraduodenal (ID) fat on ghrelin secretion and PYY release via CCK-1 receptors. Thirty-six male volunteers were studied in three consecutive, randomized, double-blind, cross-over studies: 1) 12 subjects received an ID fat infusion with or without 120 mg orlistat, an irreversible inhibitor of gastrointestinal lipases, compared with vehicle; 2) 12 subjects received ID long-chain fatty acids (LCF), ID medium-chain fatty acids (MCF), or ID vehicle; and 3) 12 subjects received ID LCF with and without the CCK-1 receptor antagonist dexloxiglumide (Dexlox) or ID vehicle plus intravenous saline (placebo). ID infusions were given for 180 min. The effects of these treatments on ghrelin concentrations and PYY release were quantified. Plasma hormone concentrations were measured in regular intervals by specific RIA systems. We found the following results. 1) ID fat induced a significant inhibition in ghrelin levels (P < 0.01) and a significant increase in PYY concentrations (P < 0.004). Inhibition of fat hydrolysis by orlistat abolished both effects. 2) LCF significantly inhibited ghrelin levels (P < 0.02) and stimulated PYY release (P < 0.008), whereas MCF were ineffective compared with controls. 3) Dexlox administration abolished the effect of LCF on ghrelin and on PYY. ID fat or LCF significantly stimulated plasma CCK (P < 0.006 and P < 0.004) compared with saline. MCF did not stimulate plasma CCK release. In summary, fat hydrolysis is essential to induce effects on ghrelin and PYY through the generation of LCF, whereas MCF are ineffective. Furthermore, LCF stimulated plasma CCK release, suggesting that peripheral CCK is the mediator of these actions. The CCK-1 receptor antagonist Dexlox abolished the effect of ID LCF, on both ghrelin and PYY. Generation of LCF through hydrolysis of fat is a critical step for fat-induced inhibition of ghrelin and stimulation of PYY in humans; the signal is mediated via CCK release and CCK-1 receptors.

Adult↗

Primary porcine proximal tubular cells as a model for transepithelial drug transport in human kidney.

BACKGROUND: Kidney proximal tubular cells play a major role in the transport of endogenous and exogenous compounds. A multitude of different transporters are expressed starting with multidrug ABC transporters (e.g. abcb1, abcc1-6), slc22a6-8 (organic anion transporters) and slc22a1-3 (organic cation transporters). For transport studies of renal drug transport, cell lines like MDCK and LLC-PK1 are often used to overexpress and study one or two transporters, such as abcb1 or abcc1-6. However, the use is limited since under physiological conditions xenobiotics are transported through different transporters at the same time. Therefore, a primary in vitro model expressing functionally different transporters simultaneously, as it is the case in vivo, would be of great benefit. METHODS: Primary proximal tubular cells were isolated from porcine kidney. Cells were cultured under selective culturing conditions leading to specific growth of primary proximal tubular cells. Expression of important proximal transporters was checked at mRNA level with RT-PCR, at protein level with immunocytochemistry and functionally by transport and uptake assays. RESULTS: A model of primary proximal tubular cells was established expressing the most important transporters: abcb1, abcc1, abcc2, slc22a8, slco1a2, slc15a1, slc5a2 and slc4a4. In freshly isolated cells, slc22a1 and slc22a6 were expressed, but were down-regulated in culture. Abcb1, abcc1, abcc2 and slc4a4 were detected at protein level with immunostaining. Functional activity was confirmed for abcb1, abcc1/2, slc22a8, slc15a1/2 and slc5a1/2. The tightness of the monolayers of this model was better than in previously established in vitro models. CONCLUSION: This primary cell culture model might be an interesting tool to investigate proximal tubular transport and to predict toxicity and drug interactions since it expresses functionally several transporters simultaneously.

Animals↗

Lack of pharmacokinetic interaction between linezolid and antacid in healthy volunteers.

Several antibiotics show significant pharmacokinetic interactions when they are given orally concomitantly with antacids. The objective of this study was to evaluate the effects of antacid (containing magnesium) on the pharmacokinetics of linezolid. A single dose of 600 mg linezolid was given orally alone and 10 min after administration of the antacid Maalox 70mVal, which contains 600 mg magnesium hydroxide and 900 mg aluminum hydroxide, to nine healthy males and nine healthy females in a crossover and randomized study. Linezolid plasma concentrations were determined by high-performance liquid chromatography, and pharmacokinetic parameters were calculated for both treatments. Coadministration with antacids did not change the pharmacokinetics of linezolid. The ratios (90% confidence intervals) of the individual values of the area under the concentration-time curve and the maximum concentration in plasma (C(max)) (linezolid plus antacid versus linezolid alone) were 1.01 (0.99 to 1.02) and 0.99 (0.96 to 1.02), respectively. Likewise, no significant difference in any of the other pharmacokinetic parameters was observed between the treatment groups (the time to C(max), lag time, volume of distribution [V/F], and clearance [CL/F]). However, a significant sex difference was observed for AUC, C(max), V/F, and CL/F; and these differences could be almost completely explained by the differences in body weight between males and females. No clinically relevant adverse effects were detected under either condition. The coadministration of antacids had no effect on the pharmacokinetics of linezolid. This demonstrates that the oral absorption of linezolid was not affected by the presence of antacids containing magnesium hydroxide and aluminum hydroxide. Antacids can be safely administered together with linezolid.

Acetamides↗

Glucagon-like peptide-1 is involved in sodium and water homeostasis in humans.

UNLABELLED: In previous studies with glucagon-like peptide-1 (GLP-1) we have observed that this peptide modulates fluid intake and increases renal sodium excretion in healthy volunteers and in patients with diabetes mellitus type 2. The effect of GLP-1 on thirst, water intake and on osmoregulation has, however, not been examined in detail in humans. METHODS: Seventeen healthy male subjects were enrolled in two double-blind, placebo-controlled studies. In study part A, 8 volunteers participated in a protocol with an intravenous salt load of 26.7 +/- 0.9 g comparing the effect of an infusion of GLP-1 (1.5 pmol/kg x min) to isotonic saline (placebo). Sodium excretion and water intake were measured. In part B, 9 volunteers were challenged with an oral salt load of 27.7 +/- 0.5 g; sodium excretion and water intake were determined comparing an infusion of GLP-1 (1.5 pmol/kg x min) to isotonic saline (placebo). In part C, intestinal biopsies along the gastrointestinal tract were obtained from 14 healthy subjects. Expression of human GLP-1 receptor mRNA was measured by real-time polymerase chain reaction. RESULTS: In study part A, an increase in renal sodium excretion was demonstrated: FeNa rose from 1.6 +/- 0.3 (placebo) to 2.7 +/- 0.2% (GLP-1; p = 0.0005). There was no difference in water consumption between the two treatments: 1,291 +/- 69 (saline) vs. 1,228 +/- 74 ml (GLP-1; p = 0.49). In part B, an oral salt challenge of 27.7 +/- 0.5 g led to an increased renal excretion of sodium during GLP-1: FeNa increased from 1.6 +/- 0.2% (placebo) to 2.0 +/- 0.2% (GLP-1; p = 0.012). In contrast to part A, oral water intake was reduced by 36% under GLP-1 treatment: 1,848 +/- 331 ml (placebo) vs. 1,181 +/- 177 ml (GLP-1; p = 0.0414). Three subjects in part B did not finish treatment with GLP-1 because of diarrhea. Human GLP-1 receptor mRNA expression was highest in the proximal human small intestine compared to terminal ileum and colon (p < 0.02). CONCLUSIONS: GLP-1 acts on renal tissue reducing sodium absorption, probably via similar sodium transporters, which also may be localized in the gastrointestinal tract. This hypothesis needs to be confirmed by further studies.

Adult↗

Induction of cytochrome P450 3A4 and P-glycoprotein by the isoxazolyl-penicillin antibiotic flucloxacillin.

Clinical findings indicate that co-administration of the isoxazolyl-penicillin flucloxacillin with cyclosporine may reduce the plasma concentrations of cyclosporine. We have explored in the present study if induction of cytochrome P450 3A4 or P-glycoprotein may offer a mechanistic explanation of the observed effects. Flucloxacillin is neither an inhibitor nor a substrate of drug metabolizing cytochrome P450 isoenzymes (CYP3A4, 1A2, 2C9, 2C19 and 2D6) or P-glycoprotein as shown by an in vitro assay for CYP inhibition, a fluorescent indicator assay for P-glycoprotein inhibition and a functional P-glycoprotein ATPase assay. However, incubation of human LS 180 colorectal adenocarcinoma cells with flucloxacillin led to a dose-dependent induction of MDR1 as well as of CYP3A4 mRNA, which was also confirmed in primary human hepatocytes. At high concentrations, flucloxacillin activated the human Pregnane-X-Receptor, PXR, a ligand-dependent transcription factor that is the target of many drugs that induce CYP3A4, with consequences for the metabolism of other drugs. Liver microsomes from control rats or rats, which received for 3 consecutive days 100 mg/kg of oral flucloxacillin, were used to study the metabolism and metabolite pattern of midazolam, a model substrate of CYP 3A4. There was a trend towards a higher intrinsic microsomal clearance of midazolam using microsomes from flucloxacillin treated rats. In addition, there was a significant increase in the formation of the principal midazolam metabolites 1-hydroxy midazolam, 4-hydroxy midazolam and 1,4-dihydroxy midazolam as compared to controls. These findings indicate that flucloxacillin has the potential to induce expression of both CYP3A4 as well as P-glycoprotein, most likely through activation of the nuclear hormone receptor PXR. This would offer an explanation for the observed clinical drug-drug interactions between the antibiotic and cyclosporine.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Evaluation of the immortalized human brain capillary endothelial cell line BB19 as a human cell culture model for the blood-brain barrier.

In vitro models of the blood-brain barrier (BBB) play a major role in the study of BBB permeability of drug candidates. However, most established in vitro models use cells of non-human origin, which is not optimal for the prediction of brain permeability in humans. The aim of this study was to assess the human brain capillary endothelial cell line BB19 for its usefulness as an in vitro model of the human BBB. Restrictive tight junctions are a prerequisite for drug transport studies. Sucrose permeability of BB19 cells on different filters was compared to porcine brain capillary endothelial cells (BCEC). Tightness of BB19 cell monolayers still needs further optimization. Hardly any discrimination between Sucrose and Propranolol (P(app) = 1.30 x 10(-5) vs. 2.18 x 10(-5) cm/s) was seen. Cells showed an improvement towards a more primary BCEC morphology with C6 conditioned medium, dexamethasone, and 1,25-dihydroxyvitamin D3. The presence of P-glycoprotein (P-gp), MRP4 and BCRP, ABC-transporters located in the BBB, has been shown on mRNA level, by immunostaining, and western blot. MRP1, MRP2, MRP5, OAT3, and OAT4 were also detected by RT-PCR. Functional properties of the BBB were shown with uptake of propranolol, morphine, and sucrose. Uptake studies with daunomycin and the P-gp inhibitor verapamil showed functional activity of P-gp. We conclude that BB19 cells might be feasible as a human in vitro model of the BBB for drug uptake studies. However, for the assessment of transport studies, further improvements of this model are necessary.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Thalidomide does not interact with P-glycoprotein.

BACKGROUND: There is growing clinical interest in thalidomide for the treatment of various disorders due to its anti-inflammatory, immunomodulatory, and anti-angiogenic properties. In numerous clinical trials thalidomide is used as an adjunct to standard therapy. Therefore, clinicians should be aware of all possible drug-drug interactions that might occur with this drug. P-glycoprotein (P-gp), a drug efflux transporter that is expressed in many tissues, is the cause of several drug-drug interactions. P-gp induction or inhibition can lead to ineffective therapy or side-effects. In this study, we investigated thalidomide's potential to cause drug-drug interactions on the level of P-gp. METHODS: LS180 cells were incubated with thalidomide for 72 h in order to determine P-gp induction using real-time RT-PCR. A human leukaemia cell line over-expressing MDR1 (CCRF-CEM/MDR1) was used to measure uptake of rhodamine 123, a P-gp substrate, in the presence of thalidomide. Dose-dependent and bi-directional transport of thalidomide through Caco-2 cell monolayers was performed to assess site-directed permeability. Transport rates were determined using HPLC including chiral separation of the thalidomide enantiomers. RESULTS: Thalidomide did not induce P-gp expression in LS180 cells. The uptake of rhodamine 123 in CCRF cells over-expressing MDR1 was not influenced by co-incubation with thalidomide. The transport through Caco-2 monolayers was linear and the permeability was similar for both directions. No differences between the thalidomide enantiomers were observed. CONCLUSIONS: Our study indicates that thalidomide is neither a substrate, nor an inhibitor or an inducer of P-gp. Therefore, P-gp-related drug-drug interactions with thalidomide are not likely.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Distribution of breast cancer resistance protein (BCRP/ABCG2) mRNA expression along the human GI tract.

Human breast cancer resistance protein (BCRP/ABCG2) is an ABC-transporter that is present on the luminal membrane of intestinal epithelial cells and restricts absorption of anticancer drugs such as methotrexate, topotecan, mitoxantrone, and doxorubicin. The exact anatomic distribution of BCRP along the gastrointestinal (GI) tract, however, has not been determined before. The aim of this study was, therefore to investigate BCRP mRNA expression pattern along the GI tract in 14 healthy subjects. Furthermore, BCRP duodenal mRNA expression was compared with MDR1/ABCB1 mRNA. Additionally, BCRP mRNA expression was investigated in two human intestinal cell lines (Caco-2 and LS180). Since previous animal studies have suggested sex specific differences in BCRP expression, we analyzed intestinal BCRP expression with respect to sex. Biopsies were taken from different gut segments (duodenum, terminal ileum and ascending, transverse, descending and sigmoid colon). Gene expression was assessed by quantitative real-time PCR (Taqman). BCRP mRNA expression was maximal in the duodenum and decreased continuously down to the rectum (terminal ileum 93.7%, ascending colon 75.8%, transverse colon 66.6%, descending colon 62.8%, and sigmoid colon 50.1% compared to duodenum, respectively). BCRP expression in the duodenum was comparable to MDR1/ABCB1 gene expression. Caco-2 cells showed a comparable expression of BCRP as human duodenal tissue. Gender specific differences in BCRP expression were not observed. These findings represent the first systematic site-specific analysis of BCRP expression along the GI tract. This information might be helpful to develop target strategies for orally administered anticancer drugs.

ATP Binding Cassette Transporter, Subfamily G, Mem↗

Epigallocatechin-3-gallate impairs chemokine production in human colon epithelial cell lines.

A major component in green tea, epigallocatechin-3-gallate (EGCG), is reported to interfere with different steps of a number of inflammatory pathways. After oral administration, EGCG is retained in the gastrointestinal tract, where it is thought to exert preventive functions against inflammatory bowel disease and colon cancer. In this study, the human colon adenocarcinoma cell lines HT29 and T84 were used to investigate the effect of EGCG on intestinal inflammation. HT29 and T84 cells were stimulated with tumor necrosis factor (TNF)-alpha to induce the inflammatory condition and to trigger the inflammatory cascade in vitro and treated with EGCG to study its effect on inflammatory processes. The secretion of the chemokines interleukin (IL)-8, macrophage inflammatory protein (MIP)-3alpha, and prostaglandin E2 (PGE2) was determined by enzyme-linked immunosorbent assay. The gene expression level was measured by quantitative real-time polymerase chain reaction. Treatment of TNF-alpha-stimulated HT29 cells with EGCG dose-dependently inhibited the synthesis of IL-8, MIP-3alpha, and PGE2. Treatment with EGCG also inhibited the production of IL-8 and MIP-3alpha in TNF-alpha-stimulated T84 cells. Gene expression analysis in both HT29 and T84 cells revealed that EGCG down-regulates genes involved in inflammatory pathways. This study shows that EGCG acts broadly on the production of chemokines and PGE2 in the chemokine and eicosanoid pathways of colon epithelial cells. Therefore, EGCG might prove useful for the prevention and/or attenuation of colonic disorders.

Antioxidants↗

P-glycoprotein and surfactants: effect on intestinal talinolol absorption.

BACKGROUND AND OBJECTIVE: Surfactants used in pharmaceutical formulations can modulate drug absorption by multiple mechanisms including inhibition of intestinal P-glycoprotein (P-gp). Our objective was to analyze the effect of 2 surfactants with different affinity for P-gp in vitro on the intestinal absorption and bioavailability of the P-gp substrate talinolol in humans. METHODS: In vitro, the influence of surfactants on talinolol permeability was studied in Caco-2 cells. In vivo, an open-label 3-way crossover study with 9 healthy male volunteers was performed. Subjects were intubated with a 1-lumen nasogastrointestinal tube. The study solution, containing either talinolol (50 mg), talinolol and D-alpha-tocopheryl polyethylene glycol 1000 succinate (TPGS) (0.04%), or talinolol and Poloxamer 188 (0.8%), was administered through the tube. RESULTS: TPGS, but not Poloxamer 188, inhibited the P-gp-mediated talinolol transport in Caco-2 cells. In healthy volunteers TPGS increased the area under the plasma concentration-time curve with extrapolation to infinity (AUC 0-infinity ) of talinolol by 39% (90% confidence interval, 1.10-1.75) and the maximum plasma concentration (C max) by 100% (90% confidence interval, 1.39-2.88). Poloxamer 188 did not significantly alter the AUC 0-infinity or C max of talinolol. CONCLUSIONS: This in vivo intraduodenal perfusion study showed that low concentrations of TPGS, close to the concentrations that showed P-gp inhibition in vitro, significantly increased the bioavailability of talinolol. The study design excluded modulation of solubility by TPGS and unspecific surfactant-related effects. The latter was supported by the absence of modulation of the talinolol pharmacokinetics by Poloxamer 188, which does not modulate P-gp. Therefore we consider intestinal P-gp inhibition by TPGS as the major underlying mechanism for the increase in talinolol bioavailability.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Effect of peptide YY3-36 on food intake in humans.

BACKGROUND & AIMS: Studies in animals and humans suggest a role for peptide YY (PYY3-36) in regulating satiety. The physiologic role of PYY3-36, however, has not been investigated in detail. METHODS: The present study was designed to examine PYY release in response to 2 meals differing in their calorie content and to relate the plasma levels to those obtained after exogenous infusion. In a second step, the effect of graded intravenous doses (0, 0.2, 0.4, and 0.8 pmol.kg(-1).min(-1)) of synthetic human PYY3-36 on food intake was investigated in healthy male volunteers in a double-blind, placebo-controlled fashion. RESULTS: Plasma PYY concentrations increased in response to food intake reflecting the size of the calorie load. Graded PYY3-36 infusions resulted in a dose-dependent reduction in food intake (maximal inhibition, 35%; P < .001 vs control) and a similar reduction in calorie intake (32%; P < .001). Fluid ingestion was also reduced by PYY (18% reduction; P < .01). Nausea and fullness were the most common side effects produced by PYY, especially at the highest dose. Furthermore, subjects experienced less hunger and early fullness in the premeal period during PYY3-36 infusion at the highest dose (P < .05). CONCLUSIONS: This study shows that intravenous infusions of PYY3-36 decrease spontaneous food intake; the inhibition is, however, only significant at pharmacologic plasma concentrations. Whether PYY3-36 has a physiologic role in the regulation of satiety in humans remains to be defined.

Adult↗

Hepatotoxicity during rapid intravenous loading with amiodarone: Description of three cases and review of the literature.

OBJECTIVE: Atrial fibrillation is the most common arrhythmia after cardiac surgery. Amiodarone can effectively prevent and control postoperative atrial and ventricular fibrillation. Acute hepatic damage after intravenous amiodarone, which can be fatal, is not well recognized. We describe three cases of acute hepatocellular injury after intravenous amiodarone administration in critically ill patients. Another 25 published cases and six cases reported to the Swiss Pharmacovigilance Center (Swissmedic) are discussed. DESIGN: This study consisted of a series of three case reports and review of the literature. SETTING: : This study was conducted at an operative critical care unit at the University Hospital Basel, Switzerland. PATIENTS: Three hemodynamically compromised patients after open heart surgery developed significant increases of transaminases (up to more than 100-fold of the upper limit of normal) shortly after the introduction of intravenous amiodarone. INTERVENTIONS AND MEASUREMENT: Cessation of intravenous amiodarone and of other potentially hepatotoxic drugs. RESULTS: Liver parameters significantly improved or returned to normal in all three patients, even after start of oral amiodarone in two patients. CONCLUSIONS: Amiodarone is a highly effective antiarrhythmic agent for the treatment and prevention of atrial and ventricular arrhythmias. Acute liver damage after intravenous amiodarone, possibly induced by the solubilizer polysorbate 80, is rare but potentially harmful. Amiodarone loading should therefore be adapted to the necessity of an immediate effect of the drug, and liver function should be monitored closely in critically ill patients. Oral maintenance therapy with amiodarone is possible, even in patients who developed liver disease during intravenous loading.

Aged↗

Mapping of multidrug resistance gene 1 and multidrug resistance-associated protein isoform 1 to 5 mRNA expression along the human intestinal tract.

Efflux transporters such as P-glycoprotein and multidrug resistance-associated proteins (MRPs) in the intestinal wall restrict intestinal drug transport. To overcome this limitation for enteral drug absorption, galenical targeting approaches have been proposed for site-specific luminal drug release in segments of the gut, where expression of the respective absorption-limiting transporter is minimal. Therefore, expression of multidrug resistance gene 1 (MDR1) and MRP1-5 was systematically investigated in 10 healthy subjects. Biopsies were taken from different segments of the gastrointestinal tract (from duodenum and terminal ileum, as well as ascending, transverse, descending, and sigmoid colon). Gene expression was investigated by quantitative real-time PCR (TaqMan). MRP3 appeared to be the most abundantly expressed transporter in investigated parts of the human intestine, except for the terminal ileum, where MDR1 showed the highest expression. The ranking of transporter gene expression in the duodenum was MRP3 >> MDR1 > MRP2 > MRP5 > MRP4 > MRP1. In the terminal ileum, the ranking order was as follows: MDR1 > MRP3 >> MRP1 approximately MRP5 approximately MRP4 > MRP2. In all segments of the colon (ascending, transverse, descending, and sigmoid colon), the transporter gene expression showed the following order: MRP3 >> MDR1 > MRP4 approximately MRP5 > MRP1 >> MRP2. We have shown, for the first time, systematic site-specific expression of MDR1 and MRP mRNA along the gastrointestinal tract in humans. All transporters showed alterations in their expression levels from the duodenum to sigmoid colon. The most pronounced changes were observed for MRP2, with high levels in the small intestine and hardly any expression in colonic segments. This knowledge may be useful to develop new targeting strategies for enteral drug delivery.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Lanreotide effect on splanchnic blood flow in healthy subjects: effect of the rate of infusion.

BACKGROUND: Somatostatin is a naturally occurring peptide advocated for the management of hemodynamic complications of chronic liver diseases. The route of administration (bolus application or constant infusion) has been a question of debate. AIM: Our aim was to explore the effects of the somatostatin analog lanreotide, given as a bolus injection or continuous infusion, on food-stimulated hemodynamics in humans. METHODS: Twelve healthy subjects (6 men and 6 women) were studied in a double-blind, double-dummy, randomized, crossover study. After a baseline period of 60 minutes, each subject received either a placebo bolus injection and an intravenous infusion of 100 microg/h lanreotide over a period of 8 hours or a placebo infusion over a period of 8 hours and an 800-microg lanreotide bolus injection. Simultaneously, a liquid test meal (Ensure Plus, 6.3 kJ/mL; Abbott Laboratories, Abbott Park, Ill) was perfused intraduodenally at 3 mL/min over a period of 8 hours. Diastolic blood pressure, heart rate, and superior mesenteric arterial and portal venous volume flows were measured at regular intervals by use of echo-Doppler technology. Plasma lanreotide levels were determined at defined intervals. RESULTS: Lanreotide as a 100-microg/h infusion for 8 hours was bioequivalent with lanreotide as an 800-microg bolus injection (mean area under the plasma concentration-time curve [AUC] extrapolated to infinity [AUC( infinity )], 1844.3 ng.min/L versus 1971.0 ng.min/L; AUC(infinity) ratios, 0.99; confidence interval, 0.95-1.02), and clearance was identical (479.2 mL/min versus 413.4 mL/min, P >.05). As expected, significant differences were observed in maximum plasma concentrations (75.58 ng/mL versus 4.85 ng/mL, P <.001) after infusion and bolus injections, respectively. Lanreotide at 100 microg/h over a period of 8 hours was well tolerated and abolished food-stimulated splanchnic hyperemia in both the superior mesenteric artery and the portal vein (mean AUC above baseline values [AUC(ab)], 37.25 L/min.min and 0.51 L/min.min, respectively). In contrast, the same dose of lanreotide given as a bolus injection only temporarily blunted postprandial hyperemia (mean AUC(ab) for superior mesenteric artery, 251.4 L/min.min, P <.001; mean AUC(ab) for portal vein, 194.95 L/min.min, P <.001), and subjects had significantly more side effects. CONCLUSION: On the basis of tolerability and hemodynamic effects, an intravenous infusion of lanreotide seems superior to a bolus injection of the same dose.

Adult↗

Patient-controlled versus nurse-administered sedation with propofol during colonoscopy. A prospective randomized trial.

OBJECTIVES: Patient-controlled sedation (PCS) with propofol, is well tolerated and reduces recovery time and staff required during endoscopic interventions. "Who" administers the drug proves economically crucial. With the aim of maintaining safety, medical quality, and patient satisfaction, this study investigates PCS versus nurse-administered propofol sedation (NAPS) in a cohort of consecutive patients. METHODS: One hundred and fourteen patients, aged 22-90 yr, undergoing only colonoscopy participated in this prospective randomized trial. Patients were randomly assigned to either PCS or NAPS. If patients declined randomization for different reasons of reluctance to PCS they were assigned to a standard nurse-sedated control group. All patients received pethidine presedation for analgesia. Visual analogue scales followed patient anxiety level, tolerability, pain, and satisfaction, and endoscopist's assessment of the procedure. RESULTS: Given the choice, 35% of the patients who were rather younger and more anxious declined randomization to PCS. The mean total dose of propofol needed in this group was higher, but the patients had a tendency to rate the global tolerance and the pain of the examination as less comfortable compared to the two randomized groups. Self-administration of propofol created a significantly different drug profile and higher medication costs. With regard to the safety parameters there was no difference between PCS and NAPS. In their global assessments, the patients and endoscopists tended to prefer NAPS. CONCLUSIONS: Individual patient characteristics and attitudes toward self-control are crucial for PCS. While being a viable option for patients who are able and willing to handle, this technique is not applicable in a considerable portion of everyday patients.

Adult↗

Vasospastic persons exhibit differential expression of ABC-transport proteins.

PURPOSE: To quantify the gene expression levels of the ABC-proteins MDR1 (P-glycoprotein) and MRP (multidrug resistance-associated protein) isoforms in isolated mononuclear cells of vasospastic persons with increased Endothelin-1 plasma levels. METHODS: Quantitative real-time RT-PCR was performed to determine the expression levels of the MDR1 (P-glycoprotein) gene and MRP1 to MRP5 genes as well as the expression of the ETA and ETB receptor in mononuclear cells derived from 11 vasospastic subjects compared to 10 healthy controls. RESULTS: Mononuclear cells of vasospastic subjects showed a significant decrease in the expression of MDR1 (P-glycoprotein) gene (p=0.029), MRP2 gene (p=0.003), and MRP5 gene (p=0.013) when compared to healthy controls. These effects were poorly correlated with ET-1 plasma levels. No significant ETA and ETB receptor expression was observed in both groups. CONCLUSIONS: Vasospastic persons differ in their expression pattern of MDR proteins from healthy controls. This might be an indirect effect of elevated ET-1 levels.

ATP Binding Cassette Transporter, Subfamily B, Mem↗