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Enhancement efficiency delivery of antiviral Molnupiravir-drug via the loading with self-assembly nanoparticles of pycnogenol and cellulose which are decorated by zinc oxide nanoparticles for COVID-19 therapy.
El-Shafai, Nagi M; Mostafa, Yasser S; Ramadan, Mohamed S; M El-Mehasseb, Ibrahim.
Afiliación
  • El-Shafai NM; Nanotechnology Center, Chemistry Department, Faculty of Science, Kafrelsheikh University, 33516, Egypt. Electronic address: nagimohamed2016@gmail.com.
  • Mostafa YS; Biology Department, College of Science, King Khalid University, Abha 61321, Saudi Arabia.
  • Ramadan MS; Department of Chemistry - Faculty of Science, Alexandria University, Egypt.
  • M El-Mehasseb I; Nanotechnology Center, Chemistry Department, Faculty of Science, Kafrelsheikh University, 33516, Egypt. Electronic address: elmehasseb2@gmail.com.
Bioorg Chem ; 143: 107028, 2024 Feb.
Article en En | MEDLINE | ID: mdl-38086240
The target of the study is to modify the efficiency of Molnupiravir-drug (MOL) for COVID-19 therapy via the rearrangement of the building engineering of MOL-drug by loading it with self-assembly biomolecules nanoparticles (NPs) of pycnogenol (Pyc) and cellulose (CNC) which are decorated by zinc oxide nanoparticles. The synthesis and characterization of the modified drug are performing successfully, the loading and release process of the MOL drug on a nano surface is measured by UV-Vis spectroscopy under room temperature and different pH. The release efficiency of the MOL drug is calculated to be 65% (pH 6.8) and 69% (pH 7.4). The modified MOL drug displays 71% (pH 6.8) and 78% (pH 7.4) for CNC@Pyc.MOL nanocomposite, while CNC@Pyc.MOL.ZnO nanocomposite gave values at 76% (pH 6.8) and 78% (pH 7.4), the efficiency recorded after 19 h. The biological activity of the MOL-drug and modified MOL-drug is measured, and the cytotoxicity is performed by SRB technique, where the self-assembly (CNC@Pyc) appears to be a safe healthy, and high viability against the examined cell line. The antioxidant activity and anti-inflammatory are evaluated, where the nanocomposite that has ZnO NPs (CNC@Pyc.MOL.ZnO) gave high efficiency compared to the composite without ZnO NPs. The CPE-inhibition assay is used to identify potential antivirals against CVID-19 (229E virus), the viral inhibition (%) was reported at 37.6 % (for 800 µg/ml) and 18.02 % (for 400 µg/ml) of CNC@Pyc.MOL.ZnO. So, the modified MOL-drug was suggested as a replacement drug for the therapy of COVID-19 compared to MOL-drug, but the results need clinical trials.
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Texto completo: 1 Base de datos: MEDLINE Asunto principal: Óxido de Zinc / Flavonoides / Extractos Vegetales / Citidina / Nanopartículas / COVID-19 / Hidroxilaminas Límite: Humans Idioma: En Revista: Bioorg Chem Año: 2024 Tipo del documento: Article

Texto completo: 1 Base de datos: MEDLINE Asunto principal: Óxido de Zinc / Flavonoides / Extractos Vegetales / Citidina / Nanopartículas / COVID-19 / Hidroxilaminas Límite: Humans Idioma: En Revista: Bioorg Chem Año: 2024 Tipo del documento: Article