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Biomedical subjects

C Yegen

Publications and source records attributed to C Yegen.

13 recordsLinked to original sources

Biliary decompression reduces the susceptibility to ethanol-induced ulcer in jaundiced rats.

We investigated the gastric response to an ulcerogenic irritant and the change in gastric functions in an experimental rat model of obstructive jaundice, with or without biliary drainage. After biliary obstruction for 14 days, rats with ligated bile duct (BDL) were randomly divided into three groups: BDL group without biliary drainage, BDL followed by choledochoduodenostomy (CD) or a choledochovesical fistula (CVF). The gastric functions were evaluated 2 weeks after the surgery. Gastric damage, induced by orogastric administration of ethanol, was evaluated 30 min later using a lesion index and microscopic scoring was then performed on fixed stomachs. Basal gastric acid secretion was measured by the pyloric ligation method. The lesion index and maximum lesion depth did not differ in the BDL and sham groups, while they were significantly reduced in the CD group. Gastric acid output and secretory volume were reduced in the BDL group compared to the sham group, while these reductions were abolished in the CD group. Afferent denervation with capsaicin further reduced the ulcer index in the later group. Our data suggest that gastric mucosal susceptibility to injury is dependent on the normal flow of bile into the duodenal lumen, which appears to be a requirement for adaptive gastric cytoprotection.

Adaptation, Physiological↗

Role of nitric oxide in gastric injury induced by hemorrhagic shock in rats.

The aim of this study was to investigate the effect of nitric oxide (NO) on the gastric injury induced by hemorrhagic shock. Hemorrhagic shock was created by withdrawing 3 ml blood/200 g body weight of the rats. Before the hemorrhage, N(G)-nitro-L-arginine methyl ester (L-NAME, 10 mg/kg i.v. bolus), D-NAME (10 mg/kg i.v. bolus), or L-arginine (100 mg/kg i.v. bolus and 10 mg/kg/min infusion) + L-NAME were administered. At the end of the 1-hour hypovolemic shock period, histological analysis, gastric ulcer index, gastric myeloperoxidase (MPO) activity, and gastric protein oxidation (PO) levels were determined. In histological analysis a destructive effect of L-NAME (NO synthase inhibitor) was demonstrated. L-NAME treatment increased gastric MPO activity, L-arginine reversed this effect and D-NAME had no effect. Tissue PO activity was found to be increased in L-NAME-treated rats; L-arginine treatment reversed this activity. It is concluded that gastric barrier function is altered after hemorrhagic shock, and L-arginine (NO precursor) can prevent mucosal injury in the stomach. This effect of NO may be on gastric blood flow and can be mediated by tissue neutrophils.

Analysis of Variance↗

Role of nitric oxide in indomethacin-induced gastric mucosal dysfunction in the rat.

The present study was undertaken to explore the role of nitric oxide (NO) in the pathogenesis of experimental non-steroidal anti-inflammatory drug (NSAID)-induced gastropathy. We assessed the role of NO inhibition and donation in indomethacin-induced gastric mucosal dysfunction. The stomach was perfused with vehicle (control) for 20 min, followed by indomethacin (10 mg ml-1 in 1 25 % sodium bicarbonate, pH 8 4) for 120 min. NG-nitro-L-arginine methyl ester (L-NAME, 5 and 10 mg kg-1, I.V. bolus), L-arginine, D-arginine (100 mg kg-1 I.V. bolus, 10 mg kg-1 h-1, 2 h infusion) and the NO donor glyceryl trinitrate (GTN) were given at the same time (20, 40 and 80 microg kg-1 min-1, 15 min infusion) as perfusion with indomethacin was started. Epithelial permeability was quantified by measuring blood-to-lumen clearance of 51Cr-labelled EDTA. Indomethacin caused a 20-fold increase in 51Cr-EDTA leakage compared with that of the control group. Treatment with L-NAME or L-arginine did not affect the indomethacin-induced alterations in mucosal permeability. Administration of GTN (20 microg kg-1 min-1) significantly reduced the indomethacin-induced mucosal dysfunction. By contrast, higher doses of GTN (80 microg kg-1 min-1) exacerbated epithelial dysfunction induced by indomethacin. Elevated levels of carbonyls and myeloperoxidase (MPO) observed after indomethacin administration were significantly reduced, to the control values, when GTN (20 microg kg-1 min-1) was administered along with indomethacin. These data suggest that NO from exogenous sources can exert a dual action on the integrity of the gastric mucosa challenged by indomethacin. Low doses of GTN can prevent mucosal dysfunction induced by indomethacin, while higher doses of GTN may exacerbate the increases in epithelial permeability.

Animals↗

Captopril prevents the oxidative damage to proteins after renal ischemia reperfusion injury: role of endothelin-1.

Ischemia reperfusion (I/R) injury is one of the leading cause of the transplanted organ loss. In this experimental study, we investigated the effect of captopril on endothelin and eicosanoid release in I/R injury of the kidney. Rats were subjected to 60 min ischemia and 60 min of reperfusion of the left kidney in control and captopril groups. Tissue protein oxidation products, PGE2 and LTB4 levels and plasma endothelin-1 (ET-1) like activity were determined in sham operated, control and captopril groups. There were no differences in the LTB4 levels among the groups. ET-1 and PGE2 levels and protein oxidation products increased in the control group when compared with the sham. Captopril further increased both PGE2 and ET-1 concentrations and prevented protein oxidation. The increased ET-1 concentrations in the captopril treated group may imply the protective role of endothelin as the significant increase in protein oxidation products was reversed by captopril infusion. This has led us to believe that captopril might be useful in preventing I/R injury of the kidney. Also the release of endothelin from the vascular endothelium is increased by captopril and may be mediated by PGE2.

Animals↗

The effect and timing of local anesthesia in laparoscopic cholecystectomy.

Although postoperative pain following laparoscopic cholecystectomy (LC) is less intense than that after open surgery, postoperative morbidity nonetheless increases with LC. The aim of this study was to investigate whether local anesthetic infiltration of trocar sites during LC decreased postoperative pain and, if so, to find the optimum timing for local anesthesia (LA). Seventy patients undergoing LC were randomized into three groups. In the first (control group, n = 25) 3 ml of 0.9% NaCl was subcutaneously infiltrated around each 5-mm trocar site, 4 ml around each 10-mm site. In the second group (n = 20), the same volume of local anesthetic was administered in the same manner prior to surgery, and in the third group (n = 25) an identical dose of local anesthetic was infiltrated at the end of surgery. A visual analog scale was given to all patients, who were asked to record their pain intensity at 1, 3, 5, 7, and 12 h postoperatively. Pethidine HCl 1 mg/kg i.m. was given to those whose pain intensities were greater than 5. The mean pain intensities were 7.6, 5.9, and 5.1 in the control, preoperative, and postoperative LA groups, respectively. In the preoperative LA group, 50% of patients and in the postoperative LA group 28% of patients required analgesics compared with 76% in the control group. The main pain intensities and analgesic requirements were significantly lower in the postoperative LA group compared with other groups. We conclude that local anesthesia during LC reduces postoperative pain and that infiltration of trocar sites following surgery offers better pain relief than local anesthetic given just before the incision.

Adult↗

Does PGE2 act as a mediator for endothelin release?

To investigate the effect of iloprost (ZK 36374) and thromboxane synthetase inhibitor UK 38485 on endothelin release by the intestinal vascular endothelium after ischemia/reperfusion (IR) injury, five experimental groups were formed. The groups consisted of sham, control, iloprost treated (ILO), UK 38485 treated (TSI), and iloprost + UK 38485 treated (ILO + TSI) groups. The last three groups received the corresponding agents and then the superior mesenteric artery was clamped for 30 min followed by 90 min reperfusion. Endothelin levels in the portal blood and malondialdehyde (MDA), prostaglandin E2 (PGE2) and leukotriene C4 (LTC4) levels in the intestinal tissue were determined. The MDA levels increased significantly in the control group and this increase was reversed in ILO, TSI, and ILO + TSI groups, the two drugs together showing a synergistic effect in preventing lipid peroxidation. The changes in the LTC4 levels were not significant among the groups. The increased endothelin levels in the control group were reversed in ILO and TSI groups but these two agents did not have a synergistic effect. Increased PGE2 levels were reversed with iloprost but neither UK 38485 nor the combination of the two agents was effective in decreasing PGE2 levels. It is concluded that endothelin release after mesenteric IR injury is relatively unrelated to lipid peroxidation and the lipoxygenase pathway. The cylooxygenase pathway has a direct effect on endothelin release and PGE2 may act as a mediator.

Animals↗

The effect of iloprost and NDGA in ischemia reperfusion injury in rat liver.

In this study, the effects of iloprost (ZK 36374) and NDGA on warm ischemia and reperfusion injury in rat liver were investigated. Rats were given isotonic saline (control group), iloprost 25 micrograms/kg i.v. (group II) just before warm ischemia or NDGA 10 micrograms/kg i.v. (group III) 5 min before reperfusion or the same drugs were given together (group IV). Serum SGOT, SGPT, and LDH values and tissue malondialdehyde (MDA), glutathione (GSH), prostaglandin (PG)E2, and leukotriene (LT)C4 levels were determined after ischemia-reperfusion injury. Histopathologic examination of the liver was carried out under the light microscope. The serum SGOT, SGPT and LDH levels improved significantly in groups II, III, and IV when compared with the control group (p < 0.05). There was a significant decrease (p < 0.05) in tissue MDA levels and significant increase (p < 0.05) in tissue GSH levels in group I, when compared with group IV and the control groups. The values did not differ significantly in group IV when compared to controls. The LTC4/PGE2 ratio was low and histologic findings were worse in group III. In conclusion, iloprost was found to be beneficial in preventing the ischemia-reperfusion injury in the rat livers. NDGA, either by direct toxic effect or by shifting the arachidonic acid metabolism to the cyclooxygenase route, was not found to be as effective. Iloprost and NDGA did not exert a synergist effect.

Alanine Transaminase↗

Ischemia-reperfusion-induced delay in intestinal transit. Role of endothelins.

BACKGROUND/AIMS: To evaluate the involvement of ET-1 in ischemia-reperfusion (I/R) injury. METHODS: Superior artery occlusion was performed in Wistar albino rats for 30 min followed by 2-hour (early reperfusion; ER) or 24-hour (late reperfusion; LR) reperfusion periods. RESULTS: Intestinal transit was found to be reduced in the ER and LR groups (19.0 +/- 2.5%; p < 0.001 and 72.7 +/- 6.0%; p < 0.05, respectively) compared to the control group (85. 8 +/- 2.5%), while treatment with the ET receptor antagonist bosentan (BOS; 10 mg/kg i.v.) abolished this delay in LR. Myeloperoxidase activity showed a significant increase in ER (7.07 +/- 85.70 U/g; p < 0.001) compared to control (281.16 +/- 43.23 U/g), but BOS had no effect on this increase. The protein oxidation level was found to be higher in LR (5.92 +/- 0.77 nmol/mg protein; p < 0. 05) compared to the control (3.77 +/- 0.45 nmol/mg protein), and was reversed by BOS treatment. CONCLUSION: The results of the present study imply that I/R delays intestinal transit involving an endothelin-dependent mechanism.

Animals↗

Role of endothelins in trinitrobenzene sulfonic acid-induced colitis in rats.

To determine the role of endothelins (ET) on experimental colitis, following intracolonic trinitrobenzene sulfonic acid administration, rats were given orally either bosentan (BS), a nonselective ET receptor antagonist (100 mg/kg in 5% arabic gum), or arabic gum by gavage for 2 or 14 days. Macroscopic damage scores obtained in the vehicle (1.4+/-0.4), acute (4.8+/-0.6) and chronic (3.8+/-0.3) colitis groups were significantly higher than in the control group (0). BS treatment reduced the scores in both acute (3+/- 0.5) and chronic (2.3+/-0.5) colitis groups. Myeloperoxidase (MPO) activities of colonic tissues were elevated in acute and chronic colitis groups (325.1+/-44.9 and 431.8+/-54.6 U/g wet weight) as compared with the control group (73.6+/-11 U/g wet weight). Plasma protein oxidation levels were found to be significantly increased in the chronic colitis group (1,158.1+/-63.4 nmol/ml) compared with the control, ethanol and acute colitis groups (274.3+/-23.1, 490+/-52.2 and 422.2+/-50.5 nmol/ml). BS treatment significantly reduced both the protein oxidation level (375.5+/-46.9 nmol/ml) and MPO activity (167.5+/-35.8 U/g wet weight). The results of the present study suggest the involvement of ETs in the pathogenesis of colonic injury in this animal model of colitis.

Analysis of Variance↗