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International Journal of Development
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Volume Volume 13 (2024)
Volume Volume 12 (2023)
Volume Volume 11 (2022)
Volume Volume 10 (2021)
Issue Issue 1
Volume Volume 9 (2020)
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Volume Volume 5 (2016)
Youssef, A., Mekewi, M., Elsayed, H., Ahmed, M., Abd El Messih, M. (2021). A new stratagem for the synthesis of novel ZnO-Insulin nanoparticles for controlled release of glucose in blood. International Journal of Development, 10(1), 1-11. doi: 10.21608/idj.2021.191212
Asmaa Mahmoud Saeid Youssef; Mohamed A Mekewi; Howaida A Elsayed; Mohamed A Ahmed; Michel F Abd El Messih. "A new stratagem for the synthesis of novel ZnO-Insulin nanoparticles for controlled release of glucose in blood". International Journal of Development, 10, 1, 2021, 1-11. doi: 10.21608/idj.2021.191212
Youssef, A., Mekewi, M., Elsayed, H., Ahmed, M., Abd El Messih, M. (2021). 'A new stratagem for the synthesis of novel ZnO-Insulin nanoparticles for controlled release of glucose in blood', International Journal of Development, 10(1), pp. 1-11. doi: 10.21608/idj.2021.191212
Youssef, A., Mekewi, M., Elsayed, H., Ahmed, M., Abd El Messih, M. A new stratagem for the synthesis of novel ZnO-Insulin nanoparticles for controlled release of glucose in blood. International Journal of Development, 2021; 10(1): 1-11. doi: 10.21608/idj.2021.191212

A new stratagem for the synthesis of novel ZnO-Insulin nanoparticles for controlled release of glucose in blood

Article 1, Volume 10, Issue 1, 2021, Page 1-11  XML PDF (604.91 K)
Document Type: Original Article
DOI: 10.21608/idj.2021.191212
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Authors
Asmaa Mahmoud Saeid Youssef email 1; Mohamed A Mekewi2; Howaida A Elsayed1; Mohamed A Ahmed2; Michel F Abd El Messih2
1National Nutrition Institute
2Chemistry Department, Faculty of Science, Ain Shams University
Abstract
In this novel research, ZnO–insulin nanoparticles were prepared as glucose level regulator in the blood by sol-gel route adopting micelle template approach. The physicochemical features of the novel nanoparticles were investigated by XRD, FTIR, EDX and HRTEM which reveal noted crystallinity distortion when insulin is present. ZnONPs slight crystallite distortion could aid formulating ZnONPs activity biomedically in presence of protein entities. A homogeneous dispersion of insulin on the surface of ZnONPs was detected by HRTEM could also indicate favorable attachment mutual sites between the ZnO surface and the structural amino acid groups. The hypoglycemic activity effect of ZnONPs, ZnONPs-Insulin (1:1) and ZnONPs-Insulin (1:0.5) drugs was proven and compared to that of insulin in this study. The data showed that ZnONPs-Insulin (1:1) drug was the most potent hypoglycemic agent of them. 
Keywords
ZnO; Insulin; Diabetes; Nanoparticles; Glucose; Hypoglycemic agent; Hyperglycemia; Alloxan monohydrate; OGTT
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