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Öğe Alpha-lipoic acid prevents doxorubicin-induced acute hepatorenal toxicity in rats by reducing oxidative and inflammatory stress to suppress autophagy(Oxford Univ Press, 2025) Yeni, Yesim; Cicek, Betul; Hacimuftuoglu, Ahmet; Ozkaraca, Mustafa; Mokhtare, BehzadDoxorubicin (DOX) is a commonly used medicine in cancer therapy. This drug accumulation in healthy tissues causes harmful clinical outcomes. Strategies that reduce oxidative damage, including alpha-lipoic acid (ALA) treatment, have been proposed to diminish toxic effects on healthy cells by raising the therapeutical effect of DOX on cancer cells. In this study, the preventive effects of ALA, against DOX-induced hepatorenal harm in rats were researched biochemically, molecularly, histopathological, and immunohistochemical. The experiment was designed for 10 days and 4 groups of 8 rats were created. ALA was administered orally to rats at a dosage of 200 mg/kg for 10 days and DOX was administered intraperitoneally at an only dosage of 30 mg/kg on day 8. To define oxidative stress, SOD, GSH, MPO, MDA, GPx, and CAT levels were evaluated. Hepatorenal harm was detected both histopathologically and by serum creatinine, ALT, ALP, AST, and urea analyses To detect the effect of inflammation, NF-kappa B, IL-1 beta, TNF-alpha levels, were defined in the liver, and AQP-2 and NPHS1 levels in the kidney. In addition, APG5L, Beclin 1, and LC3B expressions were determined immunohistochemically. It was determined that DOX-induced oxidative harm reduced and hepatorenal function markers improved in ALA-applied groups. It was also determined that ALA pretreatment had a regulative effect on NF-kappa B, AQP-2, TNF-alpha, NPHS1, and IL-1 beta levels and prevented the rise in DOX-induced LC3B, Beclin 1, and APG5L expression. Histopathological analysis showed that it prevented hepatorenal harm. As a result, ALA demonstrated its protective potential against DOX-induced hepatorenal toxicity.Öğe Chlorogenic Acid Attenuates Doxorubicin-Induced Oxidative Stress and Markers of Apoptosis in Cardiomyocytes via Nrf2/HO-1 and Dityrosine Signaling(Mdpi, 2023) Cicek, Betul; Hacimuftuoglu, Ahmet; Yeni, Yesim; Danisman, Betul; Ozkaraca, Mustafa; Mokhtare, Behzad; Taghizadehghalehjoughi, Ali(1) Background: Doxorubicin (DOX) is extensively used for cancer treatments; however, its clinical application is limited because of its cardiotoxic adverse effects. A combination of DOX and agents with cardioprotective properties is an effective strategy to ameliorate DOX-related cardiotoxicity. Polyphenolic compounds are ideal for the investigation of novel cardioprotective agents. Chlorogenic acid (CGA), an essential dietary polyphenol found in plants, has been previously reported to exert antioxidant, cardioprotective, and antiapoptotic properties. The current research evaluated CGA's in vivo cardioprotective properties in DOX-induced cardiotoxicity and the probable mechanisms underlying this protection. (2) Methods: CGA's cardioprotective properties were investigated in rats that were treated with CGA (100 mg/kg, p.o.) for fourteen days. The experimental model of cardiotoxicity was induced with a single intraperitoneal (15 mg/kg i.p.) injection of DOX on the 10th day. (3) Results: Treatment with CGA significantly improved the DOX-caused altered cardiac damage markers (LDH, CK-MB, and cTn-T), and a marked improvement in cardiac histopathological features accompanied this. DOX downregulated the expression of Nrf2/HO-1 signaling pathways, and the CGA reversed this effect. Consistently, caspase-3, an apoptotic-related marker, and dityrosine expression were suppressed, while Nrf2 and HO-1 expressions were elevated in the cardiac tissues of DOX-treated rats after treatment with the CGA. Furthermore, the recovery was confirmed by the downregulation of 8-OHdG and dityrosine (DT) expressions in immunohistochemical findings. (4) Conclusions: CGA demonstrated a considerable cardioprotective effect against DOX-induced cardiotoxicity. One of the possible mechanisms for these protective properties was the upregulation of the Nrf2/HO-1-dependent pathway and the downregulation of DT, which may ameliorate oxidative stress and cardiomyocyte apoptosis. These findings suggest that CGA may be cardioprotective, particularly in patients receiving DOX-based chemotherapy.Öğe Panax Ginseng Protects Against Doxorubicin-Induced Testicular Injury in Male Rats by Modulating NF-κB/COX-2 and AR Pathways(Springer, 2025) Yeni, Yesim; Cicek, Betul; Hacimuftuoglu, Ahmet; Ozkaraca, Mustafa; Mokhtare, BehzadPanax ginseng (PG) is a medicinal plant used for many years to treat many diseases. The current study aimed to investigate the possible prophylactic and therapeutic effects of PG extract on doxorubicin (DOX)-induced testicular toxicity in rats. 32 adult male Sprague-Dawley rats (200-250 g) were used in the experiment. The experimental groups were designed as control (normal saline, intraperitoneal), DOX (18 mg/kg, intraperitoneal), PG (200 mg/kg, gavage), and PG + DOX (200 mg/kg, gavage). After treatment, serum levels of testosterone, interleukin-1 beta (IL-1 beta), glutathione (GSH), luteinizing hormone (LH), superoxide dismutase (SOD), lactate dehydrogenase (LDH), catalase (CAT), follicle stimulating hormone (FSH), tumor necrosis factor-alpha (TNF-alpha), and malondialdehyde (MDA) were measured. Then, gene expression, histopathological, and immunohistochemical analyses were performed on testicular tissues. Compared to DOX, treatment with PG + DOX showed a significant improvement in serum levels of FSH, testosterone, LH, TNF-alpha, IL-1 beta, MDA, SOD, LDH, GSH, and CAT. It was also observed that PG + DOX decreased nuclear factor-kappa B and cyclooxygenase-2 expression levels, increased androgen receptor expression, restored testicular histopathological structure, and significantly improved spermatogenesis. The results of the present study showed that PG may have an ameliorative effect against DOX-induced male reproductive toxicity, as DOX causes male reproductive toxicity. It can be concluded that PG is one of the effects that protect against DOX-induced testicular toxicity in rats by reducing lipid peroxidation and activating the antioxidant system. In light of this information, PG may be a useful agent to prevent the testicular toxicity observed in men receiving DOX treatment.












