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Biomedical subjects

Mehmet Ali Gülpinar

Publications and source records attributed to Mehmet Ali Gülpinar.

3 recordsLinked to original sources

Interactive lecturing for meaningful learning in large groups.

In order to enhance the quality of integration of physiological basic concepts with clinical sciences and to facilitate problem solving skills, a 'structured integrated interactive' two-hour block lecture on growth hormone physiology was implemented. A template showing the central regulation of growth hormone release and its peripheral effects was developed as an advanced organizer. Based on this template, new information was presented. Student feedback demonstrated that the lecture, based on the expository teaching model and enhanced by different forms of question and problem solving activities, was successful and interactive. It was also more motivating and was able to keep the attention of the students in relatively higher levels throughout the lecture. Furthermore, students felt that they had made important gains in transferable problem solving skills and this opinion was supported by their performance in clinical cases. These findings reinforced the idea that systematic incorporation of active learning strategies into lectures may minimize many of the weaknesses of traditional lectures.

Education, Medical, Undergraduate↗

Anti-inflammatory effect of acute stress on experimental colitis is mediated by cholecystokinin-B receptors.

We aimed to investigate the effects of electric shock (ES) on the course of experimental colitis and the involvement of possible central and peripheral mechanisms. In Sprague-Dawley rats (n = 190) colitis was induced by intracolonic administration 2,4,6-trinitrobenzenesulfonic acid (TNBS). The effects of ES (0.3-0.5 mA) or the central administration of corticotropin-releasing factor (CRF; astressin, 10 microg/kg) or cholecystokinin (CCKB; 20 microg/kg) receptor antagonists and peripheral glucocorticoid receptor (RU-486; 10 mg/kg) or ganglion (hexamethonium; 15 mg/kg) blockers on TNBS-induced colitis were studied by the assessment of macroscopic score, histological analysis and tissue myeloperoxidase activity. ES reduced all colonic damage scores (p < 0.05-0.01), while central CRF (p < 0.05-0.001) and CCKB receptor (p < 0.05-0.01) blockers or peripheral hexamethonium (p < 0.05-0.01) and RU-486 (p < 0.05) reversed stress-induced improvement. ES demonstrated an anti-inflammatory effect on colitis, which appears to be mediated by central CRF and CCK receptors with the participation of hypothalamo-pituitary-adrenal axis and the sympathetic nervous system.

Acute Disease↗

Enterogastric brake in rats with segmental bowel resection: role of capsaicin-sensitive nerves.

1. Unabsorbed nutrients in the distal gut inhibit upper gastrointestinal motility. 2. The aim of the present study was to investigate changes in gastric motility following segmental resections and to evaluate the role of capsaicin-sensitive afferent neurons that may be responsible for these changes. 3. Wistar albino rats of both sexes (200-250 g) were used. Under aseptic conditions and anaesthesia (100 mg/kg ketamine), a baby-feeding tube was placed distal to the resection in either the ileum or caecum for intraluminal perfusion of saline or 20 lipid. In one group of rats, capsaicin was perfused (0.6) for afferent denervation. One group of rats underwent jejunal and ileal resections with end-to-end anastomosis of the remaining segments and were cannulated distal to these anastomosis. Ten days after the surgery, the percentage gastric emptying of a solid meal was calculated. 4. Intra-ileal (18) and intracaecal (34) lipid perfusions delayed gastric emptying compared with groups perfused with saline (54 and 74, respectively; P< 0.001 and P< 0.01). The delay in gastric emptying by ileal perfusion was significantly greater than that following caecal perfusion (P< 0.05). With both resections, gastric emptying was delayed compared with sham groups (P< 0.05-0.01). Local administration of capsaicin abolished the inhibitory effect of lipid on gastric emptying in healthy intact rats and in the jejunal-resection group, whereas a partial reversal was seen in the ileal-resection group. 5. In conclusion, the present data demonstrate that in both healthy intact rat groups and in short bowel groups, capsaicin-sensitive extrinsic neurons participate in brake mechanisms of the distal gut.

Animals↗