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http://irepo.futminna.edu.ng:8080/jspui/handle/123456789/18362
Title: | Hypoglycaemic activity of biosynthesized copper oxide nanoparticles in alloxan-induced diabetic Wister rats |
Authors: | Umar, Maimuna Bello Daniel, Augustine Innalegwu Tijani, Jimoh Oladejo Akinleye, Rebecca Olufemi Smith, Enriquay Keyster, Marshall Klein, Ashwil |
Keywords: | Alloxan monohydrate, biosynthesis, copper oxide nanoparticles, diabetes mellitus, Histoarchitecture |
Issue Date: | 1-Apr-2023 |
Publisher: | Endocrinology, Diabetes & Metabolism published by John Wiley & Sons Ltd. |
Citation: | Umar MB, Daniel AI, Tijani JO, et al. Hypoglycaemic activity of biosynthesized copper oxide nanoparticles in alloxan-induced diabetic Wister rats. Endocrinol Diab Metab. 2023;00:e423. doi:10.1002/edm2.423 |
Series/Report no.: | ;e423. doi:10.1002/edm2.423 |
Abstract: | Abstract Background: Diabetes mellitus (DM) is a metabolic disorder that affects the body's ability to produce or use insulin. This study evaluated the hypoglycaemic activity of biosynthesized copper oxide nanoparticles (CuO-NPs) in alloxan-induced diabetic Wister rats. Methods: CuO-NPs were synthesized via the green route and characterized using different analytical tools. Diabetes was induced intraperitoneally using 90 mg/kg body weight of alloxan monohydrate in albino rats. Thirty (30) rats were randomly divided into 5 groups of 6 rats each and orally treated for 21 days. Groups I and II were treated with 300 mg/kg bwt Cereus hildmannianus extract and CuO-NPs, respectively. Groups III and IV received 5 mg/kg bwt of Glibenclamide and 2 mL of normal saline, respectively, while Group V was left untreated as the diabetic control. Blood glucose (BG) levels and body weight changes were monitored at 3-and 7-day intervals, respectively, throughout 21-day treatment period. Lipid profiles, enzyme assays and histopathological studies of the liver were also carried out. Results: Spheroidal tenorite phase of CuO-NPs with a crystallite size of 62.57 nm, surface area (20.64 m2/g) and a UV-maximum absorption at 214.27 nm was formed. The diabetic rats treated with 300 mg/kg bwt CuO-NPs had the highest BG lowering ability (from 482.75 ± 27.70 to 124.50 ± 2.50 mg/dL). A significant difference (p < 0.05) in weight gain and serum enzymes was also observed in the CuO-NPs treated group compared with other groups. The CuO-NPs- treated group had a significant increase (p < 0.05) in HDL-cholesterol and a decrease in total cholesterol, triglycerides, LDL-cholesterol and VLDL-cholesterol compared with other groups. Conclusion: The green synthesized CuO-NPs nanoparticles significantly reduced (p < 0.05) blood glucose levels in rats and other associated indices and could serve as drug lead in the treatment of diabetes. |
Description: | International Journal |
URI: | http://repository.futminna.edu.ng:8080/jspui/handle/123456789/18362 |
Appears in Collections: | Chemistry |
Files in This Item:
File | Description | Size | Format | |
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Maimuna et al 2023.pdf | 3.43 MB | Adobe PDF | View/Open |
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