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Öğe Protective effect of Smilax excelsa L. pretreatment via antioxidant, anti-inflammatory effects, and activation of Nrf-2/HO-1 pathway in testicular torsion model(Wiley, 2022) Cellat, Mustafa; Isler, Cafer Tayer; Uyar, Ahmet; Kuzu, Muslum; Aydin, Tuba; Etyemez, Muhammed; Turk, ErdincThe protective effects of the ethanol extract of Smilax excelsa L. (SE) leaves were investigated on testicular tissue of rats with a torsion model in this study. The chemical composition of the extract was detected by means of liquid chromatography with tandem mass spectrometry (LC-MS/MS). SE extract was given for 21 days before torsion was created in the treatment group. The sperm parameters of the torsion group were impaired, and there was an increase in MDA level as well as a decrease in GSH level and GPx activity compared to the control group. TNF-alpha and NF-kappa B levels in the torsion group increased as compared to those in the control group. The expression levels of Nrf-2 and HO-1 were lower in the torsion group than those in the control group. The SE pretreatment group has improved sperm, oxidative stress, and inflammatory markers when compared to the torsion group, and the Nrf-2/HO-1 pathway was activated. Practical applications Smilax excelsa L. is a plant with economic value used in traditional medicine in the treatment of stomachache, bloating, and breast cancer in Northwest Anatolia. It has an antioxidant effect due to the flavonoids and anthocyanins it contains. The protective effect against ischemia-reperfusion-induced tissue and reproductive damage in testicular tissue were demonstrated with the study. When the histological examinations of the tissues were evaluated, it was found that morphological structure of the tissues was retained in the treatment group. The findings indicate that SE prevents tissue damage in the torsion model by antioxidant and anti-inflammatory effects and activating Nrf-2/HO-1 pathway.Öğe Tyrosol improves ovalbumin (OVA)-induced asthma in rat model through prevention of airway inflammation(Springer, 2021) Cellat, Mustafa; Kuzu, Muslum; Isler, Cafer Tayer; Etyemez, Muhammed; Dikmen, Nursel; Uyar, Ahmet; Gokcek, IshakAsthma is an inflammatory disease that affects many people around the world, especially persons at paediatric age group. The effectiveness of tyrosol, a natural phenolic compound, was examined in the asthma model induced by ovalbumin (OVA). For this purpose, four groups, each consisting of eight rats, were arranged. For 21 days, physiological saline solution was treated to the control group and OVA was treated to the groups of OVA, OVA + dexamethasone (Dexa) and OVA + tyrosol groups, intraperitoneally and through inhalation. Additionally, 0.25 mg/kg Dexa was treated to the OVA + Dexa group and 20 mg/kg tyrosol to the OVA + tyrosol group by oral gavage. Serum, blood, bronchoalveolar lavage fluid (BALF) and lung tissues of the rats were examined. It was observed that MDA level decreased, GSH level and GPx activity increased, and there was no change in CAT activity in lung tissues of the tyrosol treatment groups. It was also observed that NF-kappa B, TNF-alpha, IL-4, IL-5, IL-13, IFN-gamma and IgE levels decreased compared to the OVA group in lung tissue and serum samples except for serum NF-kappa B and IL-4. However, no effect on IL-1 beta level was observed. In addition, it was determined that tyrosol treatment increased the IL-10 level on both tissue samples. The results of the histopathological investigation of lung tissue showed that tyrosol significantly ameliorated OVA-induced histopathological lesions. Additionally, PAS staining showed that mucus hypersecretion was significantly reduced with the use of tyrosol. In addition, it was determined that the number of eosinophils decreased significantly in blood and BALF samples. The obtained results showed that tyrosol possessed antioxidant and anti-inflammatory features on OVA-induced rats and preserved tissue architecture.Öğe Tyrosol improves ovalbumin (OVA)-induced asthma in rat model through prevention of airway inflammation (Jul, 10.1007/s00210-021-02117-y, 2021)(Springer, 2021) Cellat, Mustafa; Kuzu, Muslum; Isler, Cafer Tayer; Etyemez, Muhammed; Dikmen, Nursel; Uyar, Ahmet; Gokcek, Ishak[No abstract available]