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http://hdl.handle.net/11189/10302| Title: | Sodium 3-phenylpropanoate alleviate oxidative stress and iron-induced testicular toxicity in Wistar rats | Authors: | Ogunlakin, Akingbolabo Daniel Ojo, Oluwafemi Adeleke Iyobhebhe, Matthew Ajisafe, Toluwanimi Lemuel Adeoye, Emmanuel Olatunbosun Ayokunle, Damilare Iyinkristi Sonibare, Mubo Adeola Ambali, Owoola Azeezat Adebodun, Great Oluwamayokun Ajayi-Odoko, Omolola Adenike Adetunji, Tomi Lois Oguntibeju, luwafemi Omoniyi |
Keywords: | Sodium 3-phenylpropanoate (KAD 1);Iron-induced testicular injury;ATPase;ENTPDase | Issue Date: | 2024 | Publisher: | Open Science Publishers LLP Inc. | Source: | Ogunlakin, A.D., et al. 2024. Sodium 3-phenylpropanoate alleviate oxidative stress and iron-induced testicular toxicity in Wistar rats. Journal of Applied Pharmaceutical Science, 14(03): 088-094. [http://doi.org/10.7324/JAPS.2024.143969] | Journal: | Journal of Applied Pharmaceutical Science | Abstract: | There are various derivatives of cinnamic acid with pharmacological significance. Sodium 3-phenylpropanoate (KAD 1), a derivative of cinnamic acid, has also been synthesized and it is important to investigate its effects on iron-induced testicular injury in an ex vivo study. Evaluations were done on KAD 1’s l, l-diphenyl-2-picrylhydrazyl (DPPH) free radical scavenging activity, ferric-reducing antioxidant power, and iron chelating potential. Through the ex vivo incubation of tissue supernatant and 0.1 mM FeSO4 for 30 minutes at 37°C and various concentrations of KAD 1, oxidative testicular damage induced was treated. The scavenging property of KAD 1 increases significantly (p < 0.05) as the concentration increases when compared with the standard quercetin. The malondialdehyde, catalase, ATPase, as well as ENTPDase activities, were reduced when testicular damage was induced (p < 0.05). A significant rise in glutathione level was observed. Therefore, KAD 1 has the potential to treat and protect against oxidative testicular toxicity, as revealed by its capacity to control nucleotide hydrolysis and reduce oxidative stress. Thus, KAD 1 may be a suitable potent modality, which can help treat testicular injury. | URI: | http://hdl.handle.net/11189/10302 | ISSN: | 2231-3354 (Online) | DOI: | http://doi.org/10.7324/JAPS.2024.143969 |
| Appears in Collections: | HWSci - Journal Articles (DHET subsidised) |
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| File | Description | Size | Format | |
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| Sodium_3_phenylpropanoate_alleviate_oxidative_stress.pdf | 1.22 MB | Adobe PDF | View/Open |
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