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Biomedical subjects

O Cetinkaya

Publications and source records attributed to O Cetinkaya.

9 recordsLinked to original sources

The effects of Rumex patientia extract on rat liver and erythrocyte antioxidant enzyme system.

The aqueous extract from the roots of Rumex patientia L. (Polygonaceae) (D-1) was investigated for its effects on rat liver and erythrocyte antioxidant enzyme systems and lipid peroxidation. Measurements of the GSH-Px, SOD and CAT activities, and MDA levels of liver and erythrocytes in D-1 administered animals showed that there was an increase in GSH-Px and SOD activities when compared to that of controls. No significant decrease was observed in catalase activity and no changes in malondialdehyde levels were observed.

Animals↗

Serum free carnitine and total triglycerid levels in children with iron deficiency anemia.

Iron deficiency anemia and hyperlipidemia are common public health problems in Turkey. The connection between iron and lipid metabolisms has not been clarified yet. The aim of the study was to determine the effect of iron deficiency on carnitine and lipid metabolism. Study group was consisted of 70 children (mean age 14.7 +/- 1.3 months) suffering from iron deficiency anemia and 20 healthy children (mean age 13.7 +/- 1.2 months) attended to outpatient clinics of Cumhuriyet University, Sivas were enrolled the study as the control group. Assessments of serum free carnitine concentrations, total triglyceride, total cholesterol and VLDL levels were made in both groups. The mean serum free carnitine concentration was significantly lower than the control group (18.9 +/- 0.43 nmol/ml and 45.9 +/- 1.47 nmol/ml respectively, t = 17.5 p < 0.01). Results of our study also indicated higher serum total triglyceride, total cholesterol and VLDL levels in iron deficient patients than the healthy controls. Regression analyses indicated a negative correlation between serum free carnitine and total triglyceride levels in iron deficient patients. This study confirms that iron deficiency anemia may be linked to the endogenous carnitine synthesis in pediatric age group, and thus hyperlipidemia appears to be a risk factor for premature cardiovascular diseases.

Anemia, Iron-Deficiency↗

Serum-free carnitine levels in children with heart failure.

The serum-free carnitine (SFC) levels of 91 children with heart failure (HF) and of a control group consisting of 30 healthy children were measured. Twenty-four of 91 children with HF were administered oral L-carnitine. The mean SFC level of children with HF (20.16 +/- 0.30 nmol/l) was significantly lower than that of the control group (38.98 +/- 0.79 nmol/ml) (p < 0.01). Mean SFC levels of 24 patients, after L-carnitine administration, increased significantly (p < 0.01). Patients administered L-carnitine displayed a marked difference in time taken for clinical improvement compared with those not given oral L-carnitine.

Administration, Oral↗

Serum free carnitine levels in children with recurrent pulmonary infections.

The serum free carnitine levels of 33 children with recurrent pulmonary infection and 30 healthy children were measured and found to be 26.12 +/- 0.98 nmol/mL and that of the control group 38.98 +/- 0.79 nmol/mL on the average. The mean free carnitine level was statistically determined to be significantly lower when compared with that of the control group (P < 0.01). The results indicate that oral L-carnitine therapy is recommended for pediatric patients with recurrent pulmonary infection.

Carnitine↗

Does vancomycine increase aminoglycoside nephrotoxicity?

Vancomycine and amikacin combined is an effective antibiotic combination used in the treatment of serious Gram-positive bacteremia in childhood. However, both drugs may have a potential nephrotoxic effect when used individually. The present study investigates whether the nephrotoxicity of these drugs that display a nephrotoxic effect when used separately increases when used in a combined manner. Ten 2-month-old rats were subjected to intraperitoneal injections of vancomycine (100 mg/kg) and amikacin (80 mg/kg) and ten other 2-month-old rats were administered amikacin (80 mg/kg) for a period of 15 days. The control group of animals consisting of five 2-month old rats were untreated. The renal tissues obtained by laparotomy were processed for both light and electron microscopy. Paraffin sections and ultrathin sections were evaluated in order to determine the renal structure of the control and the experimental groups. In addition, serum creatinine and blood, urea and nitrogen (BUN) levels were measured in blood samples obtained from the rats. In the amikacin and combined amikacin-vancomycine treatment groups, renal morphological changes were observed at the glomerular and tubular levels when compared to the control group, and the serum creatinine and BUN levels were also higher in these groups. Although both experimental groups were different from the control group, they had similar morphological and biochemical features. It was concluded that vancomycine did not influence the nephrotoxic effect of amikacin and both drugs could be used in a combined manner.

Amikacin↗