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Ferda Cagavi

Publications and source records attributed to Ferda Cagavi.

3 recordsLinked to original sources

Neuroprotective effects of ebselen on experimental spinal cord injury in rats.

Spinal cord injury (SCI) results in rapid and significant oxidative stress. This study was aimed to investigate the possible beneficial effects of Ebselen in comparison with Methylprednisolone in experimental SCI. Thirty six Wistar albino rats (200-250 g) were divided in to six groups; A (control), B (only laminectomy), C (Trauma; laminectomy + spinal trauma), D (Placebo group; laminectomy + spinal trauma + serum physiologic), E (Methylprednisolone group; laminectomy + spinal trauma + Methylprednisolone treated), F (Ebselen group; laminectomy + spinal trauma + Ebselen treated), containing 6 rats each. Spinal cord injury (SCI) was performed by placement of an aneurysm clip, extradurally at the level of T11-12. After this application, group A, B and C were not treated with any drug. Group D received 1 ml serum physiologic. Group E received 30 mg/kg Methylprednisolone and, Group F received 10 mg/kg Ebselen intraperitoneally (i.p.). Rats were neurologically examined 24 h after trauma and spinal cord tissue samples had been harvested for both biochemical and histopathological evaluation. All rats were paraplegic after SCI except the ones in group A and B. Neurological scores were not different in traumatized rats than that of non-traumatized ones. SCI significantly increased spinal cord tissue malondialdehyde (MDA) and protein carbonyl (PC) levels and also decreased superoxide dismutase (SOD), glutathione peroxidase (GSH-Px), and catalase (CAT) enzyme activities compared to control. Methylprednisolone and Ebselen treatment decreased tissue MDA and PC levels and prevented inhibition of the enzymes SOD, GSH-Px and CAT in the tissues. However, the best results were obtained with Ebselen. In groups C and D, the neurons of the spinal cord tissue became extensively dark and degenerated with picnotic nuclei. The morphology of neurons in groups E and F were very well protected, but not as good as the control group. The number of neurons in the spinal cord tissues of the groups C and D were significantly less than the groups A, B, E and F. We concluded that the use of Ebselen treatment might have potential benefits in spinal cord tissue damage on clinical grounds.

Animals↗

A training model for lumbar discectomy.

Training models are becoming increasingly important for gaining surgical skills. We present an easy to prepare and cheap model using cadaver sheep spine appropriate to learn and practice various discectomy procedures.

Diskectomy↗

Effect of cerebrospinal fluid leakage on wound healing in flap surgery: histological evaluation.

The aim of this study was to find out the effect of CSF leakage on wound healing after flap surgery. Sixteen male Wistar rats were used. The superiorly based rectangular dorsal skin flap 3 x 3 cm was elevated at the interscapular region. Through this opening, paraspinal muscle dissection and three-level bilateral laminectomy were done. Finally, a dura defect with a diameter of 3-4 mm was created. In the control group, laminectomy was performed as in the study group but the dura was left intact. Persistent CSF leakage was confirmed using isotope cisternography. At the end of 2-week study period, there was no necrosis, infection, or dehiscence of the flap in either group. On necroscopy, cyst formation over the dura defect was detected in 4 animals of the study group. Another gross finding in this group was intensive vascularization of the undersurface of the flap and wound bed. With HE staining, the tissue sections from the study group revealed new vessel formation with small diameter, increase in the reactional mesenchymal tissue, granulation tissue, degeneration of the striated muscle fibers, dystrophic calcifications, fat necrosis, and coagulation necrosis (ischemic necrosis). In the control group, there was only minimal lymphocytic invasion of the subdermal plane. In this study, we have shown that CSF leakage itself has effects on wound healing in the absence of known causative factors.

Animals↗