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Comparative Hepatoprotective Effects of Dapagliflozin and Silymarin Against Cyclophosphamide-Induced Liver Injury in Rats: Involvement of Nrf2/HO-1, HNF4α, and HNF6 Pathways
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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

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Publication Date
Sun Jun 23 2019
Journal Name
American Rock Mechanics Association
Using an Analytical Model to Predict Collapse Volume During Drilling: A Case Study from Southern Iraq
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Zubair Formation is one of the richest petroleum systems in Southern Iraq. This formation is composed mainly of sandstones interbedded with shale sequences, with minor streaks of limestone and siltstone. Borehole collapse is one of the most critical challenges that continuously appear in drilling and production operations. Problems associated with borehole collapse, such as tight hole while tripping, stuck pipe and logging tools, hole enlargement, poor log quality, and poor primary cement jobs, are the cause of the majority of the nonproductive time (NPT) in the Zubair reservoir developments. Several studies released models predicting the onset of borehole collapse and the amount of enlargement of the wellbore cross-section. However, assump

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