Background: Cyclophosphamide (Cpd), a common immunosuppressive and chemotherapeutic drug, can cause hepatotoxicity by inducing inflammation and oxidative stress. Dapagliflozin (Dapa) and other sodium-glucose cotransporter-2 inhibitors (SGLT2i) have anti-inflammatory and antioxidant properties, and Silymarin is a natural compound extracted from the seeds of the milk thistle plant (Silybum marianum). It is best known for its antioxidant, anti-inflammatory, and hepatoprotective effects.Objective: By measuring oxidative stress, inflammation, and liver regeneration parameters, with an emphasis on the Nrf2/HO-1 pathway and hepatocyte nuclear factors (HNF4α and HNF6), Dapa's hepatoprotective effects in comparison to Sil on Cpd-induced liver injury will be evaluated. Methods: Five (5) groups of male rats ten rats each were created: control, vehicle (Na-CMC), Cpd (30mg/kg), Cpd + Dapa (3mg/kg), and Cpd + Sil (200mg/kg).. Rat liver tissue was examined for Nrf2, HO-1 (qRT-PCR), HNF4α (ELISA), and HNF6 (Western blot) levels after ten days. Results: Cpd significantly reduced Nrf2, HO-1, HNF4α, and HNF6 levels (*p < 0.0001). Dapa and Sil restored these markers, with Dapa showing superior upregulation of Nrf2 (2.182 ± 0.540 vs. Cpd 0.244 ± 0.096) and HO-1 (2.051 ± 0.533 vs. CP 0.487 ± 0.178) (*p< 0.0001). Dapa also significantly increased HNF4α (2135 ± 297.9 vs. CP 229.5 ± 50.21) and HNF6 (3.635 ± 0.610 vs. CP 0.515 ± 0.255) (*p< 0.001), outperforming Sil in enhancing HNF6 (*p < 0.05). Conclusion: Dapa ameliorates Cpd-induced hepatotoxicity by activating the Nrf2/HO-1 pathway and restoring HNF4α/HNF6 expression, demonstrating comparable or superior efficacy to Sil. These findings highlight Dapa’s potential as an adjunct therapy to mitigate chemotherapy-induced hepatotoxicity
Infrastructure projects, including buildings, bridges, and towers, in hilly or mountainous areas are frequently constructed on inclined landscapes. This work utilizes finite element limit analysis (FELA) to examine the effect of critical parameters on the ultimate bearing capacity (B.C.) of strip footings (S.F.) situated on slope faces. The analysis examines the impacts of Inclination of the Slope (β), Internal Friction Angle (ϕ), and embedment depth of footing (Df). As the slope angle (β) increased from 10° to 20°, the footing’s ultimate bearing capacity decreased by 55%. Furthermore, the embedded depth shows an important effect on the bearing capacity;
Background: Radiotherapy, is therapy using ionizing radiation in order to deliver an optimal dose of either particulate or electromagnetic radiation to a particular area of the body with minimal damage to normal tissues. The source of radiation may be outside the body of the patient (external beam irradiation) or it may be an isotope that has been implanted or instilled into abnormal tissue or a body cavity. Called also radiotherapy. The aim of work studies the relationship between the depth dose and the high photon xray energies (6MeV and 10MeV). Patients and methods: in our work, we studied the dose distribution in water phantom given at different depths (zero-18) cm deep at1cm intervals treated with different field size (5×5-,10×1
... Show MoreThis studies deals with investigated the potential of a Iraqi bentonite clay for the adsorption of bromo phenol red dye from contaminated water. Impulse adsorption experiments were performed. The contact time influence of initial dye concentration, temperature, pH, ionic strength, partical size adsorbent and adsorbent dosage on bromo phenol red adsorption are investigated in a series of batch adsorption experiments. Adsorption equilibrium data were analyzed and described by the Freundlich, Langmuir and temkin isotherms equations. Thermodynamic parameters inclusive the Gibbs free energy (∆G• ), enthalpy (∆H• ), and entropy (∆S• ), were also calculated. These parameters specified that adsorption of bromo phenol red onto bentonite
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