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Biomedical subjects

J Drewe

Publications and source records attributed to J Drewe.

At least 19 recordsLinked to original sources

Effects of budesonide on P-glycoprotein expression in intestinal cell lines.

BACKGROUND AND PURPOSE: P-glycoprotein (P-gp) is an important efflux transporter that supports the barrier function of the gut against invading antigens and against administered drugs. Since glucocorticoids, such as budesonide, are frequently used during inflammatory bowel disease we investigated how budesonide influences P-gp expression in different intestinal cell lines. EXPERIMENTAL APPROACH: LS180 and Caco-2 cells were incubated with budesonide and changes in P-gp expression were determined on mRNA, protein and functional level. The mRNA expression levels of glucocorticoid receptor (GR) and pregnane X receptor (PXR) were determined in these cell lines. PXR receptor was transiently transfected into Caco-2 cells. KEY RESULTS: Budesonide showed an induction of P-gp in LS180 cells and a down-regulation in Caco-2 cells. Expression levels of nuclear receptors revealed high expression of PXR only in LS180 cells and exclusive expression of GR in Caco-2 cells. Mifepristone, an anti-glucocorticoid, could not reverse the down-regulation of P-gp by budesonide in Caco-2 cells. In PXR-transfected Caco-2 cells the budesonide-mediated down-regulation of P-gp was abolished. Furthermore the expression of cytochrome P450 3A4 (CYP3A4), another PXR target gene, was induced in PXR-transfected Caco-2 cells after budesonide treatment. CONCLUSIONS AND IMPLICATIONS: Budesonide has the potential to influence MDR1 expression in vitro. In LS180 cells, the induction of MDR1 by budesonide probably is mediated via PXR. The mechanism of the down-regulation in Caco-2 cells still remains unclear, but GR does not seem to be involved. Further studies are required to evaluate how budesonide alters P-gp expression in vivo.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Green tea extract induces interleukin-8 (IL-8) mRNA and protein expression but specifically inhibits IL-8 secretion in caco-2 cells.

The chemokine interleukin (IL)-8 is a cytokine involved in neutrophil attraction and activation and elevated levels have been observed in intestinal inflammation. Anti-inflammatory activities have been attributed to green tea or its major constituent (-)-epigallocatechin gallate (EGCG). In this study, we investigated the effects of a defined green tea extract (GTE) or EGCG on basal or IL-1beta-induced IL-8 expression and secretion in the human gastrointestinal epithelial cell line Caco-2. mRNA expression levels were determined by quantitative RT-PCR. GTE significantly induced IL-8 mRNA expression, which was not mediated indirectly via an induction of IL-1beta mRNA expression. EGCG only exerted a weak although significant induction of IL-8 mRNA expression at the highest concentration. Intracellular and extracellular protein levels were analyzed by an enzyme-linked immunosorbent assay. GTE and EGCG significantly decreased secreted IL-8 concentrations. Determination of intracellular and secreted IL-8 concentrations after 24 h, 48 h, and 72 h of incubation suggested that GTE specifically inhibited IL-8 secretion while inducing DE NOVO synthesis of IL-8. The IL-1beta-mediated increase of IL-8 secretion was significantly inhibited by GTE in a dose-dependent manner. At the highest concentration, GTE inhibited IL-1beta-induced IL-8 secretion to a similar extent as found for brefeldin A, an inhibitor of vesicular transport. These results suggest that GTE may exert an anti-inflammatory activity in enterocytes, which may be useful for the treatment of intestinal inflammation.

Antioxidants↗

[Dosage and kinetics of MMC release of a collagen implant used as a delivery device in glaucoma surgery in the rabbit eye].

PURPOSE: To determine the absorption and the release of mitomycin-C from a collagen implant and tissue impregnation in the anterior structures of the rabbit eye. METHODS: Determining the quantity of mitomycin-C that a collagen implant can absorb with the difference between dry and soaked weight. Mitomycin-C release was measured in vitro using spectrophotometry. The measurement was repeated using a bioassay. Ocular tissue impregnation was determined in 12 eyes of six rabbits. Sclera, implant, aqueous, and ciliary body specimens were collected for concentration measurement using HPLC from 1 to 6 h after surgery. RESULTS: The mean mitomycin-C quantity absorbed in the implant was 3.22+/-0.2 microg. In vitro release was 0.13 mg/ml after 10 min and 0.05 microg/ml at 6 h. The bioassay showed almost no antifibrotic activity in sclera. In vivo release of mitomycin-C was high from the first to the sixth hour. CONCLUSION: After filtering surgery, mitomycin-C in the collagen implant is clearly released and ocular tissues are effectively impregnated.

Animals↗

Induction of CYP1A by green tea extract in human intestinal cell lines.

In this study the influence of green tea extract (GTE) or its component epigallocatechin gallate (EGCG) on the expression of different cytochrome P450 (CYP) isoenzymes was investigated in the human gastrointestinal epithelial cell lines LS-180 and Caco-2. Additionally, the effect of GTE or EGCG on functional activity of different CYP isoenzymes was investigated in vitro. mRNA expression levels were determined by quantitative RT-PCR and compared with protein levels. In LS-180 cells GTE, but not EGCG, significantly induced CYP1A2 mRNA expression, whereas neither CYP1A1 nor CYP3A4 mRNA expression was modulated by GTE or EGCG. In Caco-2 cells CYP1A1 as well as CYP1A2 mRNA expression was significantly increased in a dose-dependent manner by GTE and EGCG. However, EGCG alone was about 3-5-fold less effective than GTE. mRNA expression of CYP1A1 or CYP1A2 induced by the promutagen benzo[a]pyrene was significantly down-regulated by EGCG but not by GTE. CYP1A protein levels in response to GTE in Caco-2 and LS-180 cells confirmed the mRNA expression results. CYP activity was measured with CYP1A2 or CYP3A4 expressed in insect cell membranes using a luminescent method. GTE or EGCG significantly inhibited CYP1A2 and CYP3A4 function in a dose-dependent manner. Therefore, it appears that green tea moderately modulates the expression of drug-metabolizing enzymes but non-specifically inhibits the function of human CYPs. Since CYP enzymes play an important role in detoxification processes, these results might be of relevance for the prediction of the outcome of future clinical studies.

Caco-2 Cells↗

Adaptive regulation of the ileal apical sodium dependent bile acid transporter (ASBT) in patients with obstructive cholestasis.

BACKGROUND/AIMS: The apical sodium dependent bile acid transporter ASBT (SLC10A2) contributes substantially to the enterohepatic circulation of bile acids by their reabsorption from the intestine. In the rat, its adaptive regulation was observed in the kidneys, cholangiocytes, and terminal ileum after bile duct ligation. Whether adaptive regulation of the human intestinal ASBT exists during obstructive cholestasis is not known. METHODS: Human ASBT mRNA expression along the intestinal tract was analysed by real time polymerase chain reaction in biopsies of 14 control subjects undergoing both gastroscopy and colonoscopy. Their duodenal ASBT mRNA expression was compared with 20 patients with obstructive cholestasis. Additionally, in four patients with obstructive cholestasis, duodenal ASBT mRNA expression was measured after reconstitution of bile flow. RESULTS: Normalised ASBT expression in control subjects was highest (mean arbitrary units (SEM)) in the terminal ileum (1010 (330)). Low ASBT expression was found in colonic segments (8.3 (5), 4.9 (0.9), 4.8 (1.7), and 1.1 (0.2) in the ascending, transverse, descending, and sigmoid colon, respectively). Duodenal ASBT expression in control subjects (171.8 (20.3)) was found to be approximately fourfold higher compared with patients with obstructive cholestasis (37.9 (6.5); p<0.0001). Individual ASBT mRNA expression was inversely correlated with bile acid and bilirubin plasma concentrations. In four cholestatic patients, average ASBT mRNA increased from 76 (18) before to 113 (18) after relief of cholestasis (NS). Immunohistochemical assessment indicated that ASBT protein was expressed on the apical surface of duodenal epithelial cells. CONCLUSION: Obstructive cholestasis in humans leads to downregulation of ASBT mRNA expression in the distal part of the human duodenum.

Adaptation, Physiological↗

Inhibitory activity of a green tea extract and some of its constituents on multidrug resistance-associated protein 2 functionality.

Green tea extracts (GTE) might modulate ABC transporter gene expression or function. This may be relevant in the treatment of cancer or in influencing intestinal drug permeability. To gain more insight on the influence of a GTE on secretory transport proteins we investigated the influence of GTE and several green tea components on the mRNA expression level of P-glycoprotein (P-gp) and multidrug resistance-associated protein 2 (MRP2) in human gastrointestinal epithelial LS-180 cells. Furthermore, the functional activity of MRP2, using glutathione methylfluorescein (GS-MF) or [3H]methotrexate (MTX) as substrate, was investigated in canine kidney cells stably overexpressing human MRP2 (MDCK-MRP2). GTE, at a concentration of 0.01 mg/mL, did not increase mRNA expression of P-gp or MRP2 in LS-180 cells. Functional assays in MDCK-MRP2 cells using GS-MF did not show any effect of 0.01 mg/mL GTE on MRP2 activity. In the same cell line the cellular accumulation of MTX (a specific substrate of MRP2) was significantly increased with the MRP-specific inhibitor MK-571 or with 1 mg/mL GTE, but not with 0.1 mg/mL. The green tea components (-)-epigallocatechin gallate, (-)-epigallocatechin, theanine, or caffeine, each in corresponding concentrations to the respective concentration of GTE, did not show any effect on MRP2 function. These data demonstrate that the mRNA expression patterns of P-gp and MRP2 in LS-180 cells are not altered by 0.01 mg/mL of GTE. However, MRP2 function was inhibited by 1 mg/mL GTE, whereas none of the green tea components tested were responsible for this effect.

Antineoplastic Agents, Phytogenic↗

In vitro release of mitomycin C from collagen implants.

PURPOSE: To study Mitomycin C Loaded Collagen Implant (CI) pharmacokinetics behaviour in vitro. METHODS: The CI were incubated for 15 minutes in different MMC loading solutions with the following concentrations: 0.03 mg/mL (n = 9), 0.3 mg/mL (n = 10) and 3.0 mg/mL (n = 10). The loaded CI were transferred in 100 micro L of 0.9% NaCl. Aqueous flow of 5 micro L/min was simulated. The MMC concentrations of the samples were determined by high performance liquid chromatography (HPLC). Dissolution kinetics were evaluated by a first-order process. The half-life of dissolution and the time of 95% dissolution were determined. RESULTS: The CI absorbed on average a MMC dose of 0.054, 0.530 and 6.090 micro g when incubated in the different MMC loading solutions containing 0.03 mg/mL, 0.3 mg/mL, 3.0 mg/mL of MMC, respectively. In the release experiments, the mean total dose delivered by CI was 0.0493, 0.585 and 5.291 micro g. A linear correlation between loading concentration and the estimated total dose released was demonstrated. The kinetic parameters showed a fast MMC dissolution. The half-life of the 3 series was 8.8, 10.1 and 10.5 min. CONCLUSIONS: Commercially available CI can be loaded with MMC, and could provide relatively slower release than sponge delivery of MMC. Clinical implications of these results warrants further studies.

Animals↗

Conscious sedation with propofol in elderly patients: a prospective evaluation.

AIM: To characterize the safety of endoscopic procedures and propofol use as administered by nurses in a cohort of elderly patients. METHODS: During 19 months all endoscopy patients > 70 years were eligible for this prospective observational study. Patients were assigned to group A (70-85 years) or group B (> 85 years). Records from all patients < 70 years treated during the same period served as controls. Specially trained nurses administered the propofol and monitored for complications (decrease in the peripheral oxygen saturation, mean arterial pressure or heart rate). RESULTS: There were 1435 endoscopic procedures in group A and 351 in group B. There was no procedure or sedation-related mortality, nor a significantly greater need for emergency intervention than in the control group. Two patients required short mask ventilation but recovered without sequelae. Compared with younger patients, there was a significant increase in risk for a short oxygen desaturation < 90% and a decrease in oxygen saturation > 5%. Arterial hypotension occurred significantly more often in the control group than among the aged patients. CONCLUSIONS: This present study documents that gastrointestinal endoscopic procedures are safe and well tolerated even in the very elderly. Nurse-administered propofol is a safe and reasonable sedation method in these patients.

Aged↗

[Desired effects and adverse effects of cannabis use].

Although the use of cannabis shows no pronounced acute toxicity, acute psychological and psychomotor disturbances are observed occasionally after intake of single doses. Cannabis use can result in relevant impairment of driving ability. The risk is enhanced by concomitant use of alcohol. This augments the effect of cannabis significantly. After chronic use, significantly more psychotic symptoms become manifest, and there is a risk for developing psychological and physical dependence. Young age and pre-existing psychological disturbances increase the risk of these adverse effects. Chronic marijuana smoking is associated with increased toxicity and the risk of cancer of the respiratory tract. There is evidence of disturbance of the immune system and teratogenic effects of chronic cannabis use.

Adolescent↗

Effect of intravenous infusions of thiamine on the disposition kinetics of thiamine and its pyrophosphate.

BACKGROUND: Thiamine supplementation is necessary in patients with thiamine deficiency syndromes. Experimental evidence suggests that tissue uptake and the elimination of thiamine are dose-dependent. AIM: The aim of the present study was to investigate the effect of different i.v. infusion rates of thiamine on blood concentrations of thiamine and its active metabolite thiamine pyrophosphate (TPP) and on renal excretion of thiamine. METHODS: Twelve healthy subjects received in a two-period block randomized study 150 mg thiamine intravenously over either 1 or 24 h. RESULTS: The maximum blood concentrations (Cmax) of thiamine were significantly higher after the more rapid infusion (RI; 2300 ng/mL) than after the slower infusion (SI; 177 ng/mL). The AUC of thiamine was identical after both infusion protocols. There was a slightly (10%) increased AUC of TPP (P < 0.08) after SI, whereas C(max) values were comparable. Urinary excretion of thiamine was significantly decreased from 83.6% of the applied dose after RI to 57.6% after the SI. CONCLUSIONS: Our data suggest an increased tissue uptake of thiamine when it is given as an SI compared with a RI of the same dose. It is concluded, therefore, that an SI of thiamine may be superior to RI or bolus injections to treat severe deficiency syndromes.

Adult↗

Transport of amentoflavone across the blood-brain barrier in vitro.

The biflavone amentoflavone is an ingredient of Hypericum perforatum L. (Clusiaceae), a plant which is widely used for the treatment of mild to moderate depression. Amentoflavone inhibits the binding of flumazenil to the benzodiazepine binding site of the GABA A -receptor (IC(50) = 14.9 nM). Since it has to pass the blood-brain barrier (BBB) before reaching this receptor, the penetration of [(3)H]-amentoflavone through BBB was studied in an in vitro model consisting of primary cell cultures of porcine brain capillary endothelial cells (BCEC). Concentration-dependent uptake (37-2000 nM) was neither saturable nor temperature-sensitive indicating passive diffusion as the major uptake mechanism. This finding was confirmed by transport experiments through BCEC monolayers (> 2 % of applied dose was transported after 30 min). Co-administration of Hypericum extract increased amentoflavone transport significantly (amentoflavone alone: permeability coefficient P(app) = 4.59.10(-6) cm/s; co-administrated sucrose: P(app) = 3.22.10(-6)cm/s; amentoflavone together with hypericum: P(app) = 6.74.10(-6)cm/s, co-administrated sucrose P(app) = 5.49.10(-6)cm/s) indicating that Hypericum constituents enhance amentoflavone transport possibly by modulating paracellular permeability. Experiments with the P-glycoprotein (P-gp) overexpressing cell line P388-MDR showed that amentoflavone uptake was significantly enhanced by addition of the P-gp inhibitor verapamil, suggesting a P-gp mediated back-transport out of the cells. In conclusion, our findings show, that amentoflavone is able to pass the blood-brain barrier in vitro by passive diffusion.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

[St. John's wort: a pharmaceutical with potentially dangerous interactions].

Over-the-counter preparations of St. John's wort are widely used as 'natural' herbal medicine alternative to traditional antidepressants. The antidepressant effect has been shown in numerous placebo controlled studies. The mechanism of action is assumed to be at least in part, similar to conventional antidepressants, due to presynaptic serotonin reuptake inhibition as well as GABA-modulation and inhibition of monoaminoxidases. Because of its favorable safety profile compared to conventional antidepressants, the use of St. John's wort preparations has gained high acceptance with doctors and patients. However, any biologically active compound contains a certain risk of untoward effects and/or interactions which often are neither known nor recognised with the use of herbal remedies. Thus, doctors, pharmacists, and patients might feel themselves in false safety. Recently, a variety of case reports of potentially hazardous interactions due to drug combinations with St. John's wort have been published (e.g. cellular rejection of pancreas-, kidney- as well as heart transplants with ciclosporin therapy, rise of INR with oral anticoagulants, bleeding with oral contraceptives, reduction of plasma concentration of digoxin, indinavir, amitriptyline, and theophylline). We report a case of irregular bleeding with oral contraception and discuss these drug interactions and the mechanisms.

Adult↗

Design and synthesis of rhodamine 110 derivative and caspase-3 substrate for enzyme and cell-based fluorescent assay.

N-Octyloxycarbonyl-R110 (1), with enhanced cell penetration and retention properties, was prepared from rhodamine 110. The tetrapeptide substrate N-Ac-DEVD-N'-octyloxycarbonyl-R110 (3) was prepared and shown to be efficiently cleaved by human recombinant caspase-3 and by apoptotic HL-60 cells. This substrate should prove useful in cell-based assays for apoptosis inducers and inhibitors.

Apoptosis↗

The effect of cholecystokinin in controlling appetite and food intake in humans.

The present review of the satiating effect of cholecystokinin in humans has revealed that cholecystokinin is a physiological satiety factor in humans. The results demonstrate the efficacy of the satiating actions of exogenous and endogenous CCK in humans. The therapeutic potential of CCK analogues cannot be estimated until further studies are performed that demonstrate the efficacy of CCK analogues for decreasing body weight, and the safety of CCK when administered repetitively for prolonged periods.

Animals↗

HMG-CoA reductase inhibitors and P-glycoprotein modulation.

1. Five 3-hydroxy-3-methylglutaryl coenzyme A (HMG-CoA) reductase inhibitors (statins), (e.g. atorvastatin, fluvastatin, lovastatin, pravastatin and simvastatin), were investigated for their ability to reverse P-glycoprotein (P-gp) mediated rhodamine 123 (R123) transport in a murine monocytic leukaemia cell line that over-expresses the multi-drug resistance protein 1a/b (mdr1a/1b). 2. P-gp modulation was studied by a fluorimetric assay and confocal microscopy by means of R123 efflux and uptake experiments, respectively. 3. Atorvastatin acid, methyl ester and lactone, lovastatin lactone and simvastatin lactone inhibited R123 transport in a concentration-dependent manner. Lovastatin acid, simvastatin acid, fluvastatin and pravastatin did not show a significant inhibition of the R123 transport in our cell system. Atorvastatin methyl ester and lactone showed the highest affinities for P-gp and results were comparable for both methods. 4. In conclusion, monitoring of R123 transport in living cells by confocal microscopy in addition to fluorimetric assay is a sensitive tool to study P-gp affinity in drug screening that is especially useful for early phases of drug development.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Fish oil (Eicosapen) is less effective than metronidazole, in combination with pantoprazole and clarithromycin, for Helicobacter pylori eradication.

BACKGROUND: In vitro omega-3-fatty acids (Eicosapen) are bacteriostatic to Helicobacter pylori and have a variety of immuno-modulating effects. AIM: To investigate the efficacy and tolerability of eicosapen (E) as an antibiotic-sparing component of a triple H. pylori eradication regimen in non-ulcer dyspepsia patients in a randomized, double-blind trial. METHODS: Non-ulcer dyspepsia patients (n=199), with a normal upper endoscopy and a positive (13)C-urea breath test (UBT) were randomly assigned to either pantoprazole, clarithromycin and metronidazole (PCM) or pantoprazole, clarithromycin and eicosapen (PCE) for 7 days. Four weeks after treatment, H. pylori eradication was determined by UBT. Symptoms were followed up to 16 months. RESULTS: In the intention-to-treat population, PCM eradicated infection in 78% but PCE was successful in only 34% (P < 0.001). Symptomatic improvement occurred in both groups, and was not related to H. pylori eradication. CONCLUSION: Eicosapen is unlikely to be useful in H. pylori eradication regimens.

2-Pyridinylmethylsulfinylbenzimidazoles↗

Effect of ischemia on intestinal permeability of lipopolysaccharides.

The enteral absorption of endotoxin (lipopolysaccharide, LPS) was studied in vitro and in vivo. The absorption of fluorescence (FITC) labelled LPS was investigated by uptake studies with rabbit jejunal brush-border membrane vesicles (BBMV), the human intestinal cell line Caco-2 and in rats. FITC-LPS from Salmonella typhimurium was taken up into BBMV in a dose-dependent manner. Uptake was neither pH- nor Na+-dependent, nor could it be inhibited by unlabelled LPS. 74.5% of vesicle-associated fluorescence was due to adhesion to the vesicular membranes, 25.5% was taken up into an osmotically-sensitive space. Transport of LPS across Caco-2 cell monolayers was dose-dependent. The permeation rate increased significantly under ischemic conditions, i.e. when the cells were incubated under oxygen-depleted conditions. However, no significant differences in transepithelial electrical resistances were observed between oxygen depleted and control cells. The release of lactate dehydrogenase was only marginally different from control cells, indicating cell integrity. In situ, after gut ischemia, a significantly increased uptake of fluorescent LPS was observed by fluorescence laser scanning microscopy. Conclusion LPS is taken up by the intestinal mucosa, predominantly by passive transcellular diffusion. Under ischemic conditions, the permeability of LPS is increased mainly by an enhanced paracellular permeability and epithelial destruction. The findings partly explain the clinically observed development of multiorgan system failure after temporary malperfusion of the gut during major vascular surgery or thromboembolism.

Animals↗

Role of gender upon basal and postprandial systemic and splanchnic haemodynamics in humans.

BACKGROUND: Food intake, accompanied by systemic and splanchnic haemodynamic changes, has only been studied in males. The extent to which splanchnic postprandial hyperaemia shows gender differences is unknown. METHODS: We tested 1) the splanchnic hyperaemic response to food in females and 2) whether postprandial haemodynamic changes show gender differences. Twenty-four healthy women (aged 20-35 years) and 20 healthy men (aged 21-34 years) participated in the study. A liquid test meal (Ensure plus, 1.5 kcal/ml) was perfused intraduodenally for 75 min through an enteral feeding tube at a rate of 3 ml/min after a 45-min basal period. Blood flow parameters were measured using Echo-Doppler technology. RESULTS: Basal diastolic arterial blood pressure was significantly (P < 0.05) lower in females (66+/-2 versus 72+/-2 mmHg), whereas heart rate was the same (58+/-2 b/min, ns). Postprandially, diastolic blood pressure fell, but reached significance only in males (-10+/-3 mmHg; P < 0.05). Mean velocity in the superior mesenteric artery (SMA) was significantly (P < 0.05) higher in females compared to males at baseline (47+/-3 versus 39+/-2 cm/s), whereas maximal postprandial changes were similar (64+/-6 versus 56+/-6 cm/s, ns). Volume flow in the portal vein (PV) at baseline was 656+/-29 and 716+/-35 ml/min females and males, respectively (ns between gender). Maximal postprandial changes amounted to 808+/-86 and 884+/-107 ml/min, respectively (ns). CONCLUSIONS: 1) Perfusion of a liquid test meal induces significant increases in flow parameters in the SMA and PV in both genders. 2) These changes are partly paralleled by alterations in systemic haemodynamics. 3) Postprandial splanchnic flow parameters are qualitatively and quantitatively not different between genders.

Adult↗