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1.
Molecules ; 28(3)2023 Feb 01.
Artículo en Inglés | MEDLINE | ID: covidwho-2225466

RESUMEN

The present study aimed to estimate the antiviral activities of Ginkgo biloba (GB) leaves extract and eco-friendly free silver nanoparticles (Ag NPs) against the MERS-CoV (Middle East respiratory syndrome-coronavirus) and HCoV-229E (human coronavirus 229E), as well as isolation and identification of phytochemicals from GB. Different solvents and high-performance liquid chromatography (HPLC) were used to extract and identify flavonoids and phenolic compounds from GB leaves. The green, silver nanoparticle synthesis was synthesized from GB leaves aqueous extract and investigated for their possible effects as anti-coronaviruses MERS-CoV and HCoV-229E using MTT assay protocol. To verify the synthesis of Ag NPs, several techniques were employed, including X-ray diffraction (XRD), scan, transmission electron microscopy, FT-IR, and UV-visible spectroscopy. The highest contents of flavonoids and phenolic compounds were recorded for acetone, methanol, and ethanol as mixtures with water, in addition to pure water. HPLC flavonoids were detected as apegenin, luteolin, myricetin, and catechin, while HPLC phenolic compounds were pyrogallol, caffeic acid, gallic acid, and ellagic acid. In addition, our results revealed that Ag NPs were produced through the shift from yellow to dark brown. TEM examination of Ag NPs revealed spherical nanoparticles with mean sizes ranging from 5.46 to 19.40 nm and an average particle diameter of 11.81 nm. A UV-visible spectrophotometric investigation revealed an absorption peak at λ max of 441.56 nm. MTT protocol signified the use of GB leaves extract as an anti-coronavirus to be best from Ag NPs because GB extract had moderate anti-MERS-CoV with SI = 8.94, while had promising anti-HCov-229E, with an SI of 21.71. On the other hand, Ag NPs had a mild anti-MERS-CoV with SI = 4.23, and a moderate anti-HCoV-229E, with an SI of 7.51.


Asunto(s)
Coronavirus Humano 229E , Infecciones por Coronavirus , Nanopartículas del Metal , Coronavirus del Síndrome Respiratorio de Oriente Medio , Humanos , Ginkgo biloba , Nanopartículas del Metal/química , Plata/química , Espectroscopía Infrarroja por Transformada de Fourier , Extractos Vegetales/farmacología , Extractos Vegetales/química , Infecciones por Coronavirus/tratamiento farmacológico , Difracción de Rayos X , Antibacterianos/química
2.
Sci Rep ; 12(1): 10970, 2022 06 29.
Artículo en Inglés | MEDLINE | ID: covidwho-1908293

RESUMEN

Pharmaceutical wastewater contamination via azithromycin antibiotic and the continuous emergence of some strains of bacteria, cancer, and the Covid-19 virus. Azithromycin wastewater treatment using the biosynthesized Hematite nanoparticles (α-HNPs) and the biocompatible activities of the resulted nanosystem were reported. Biofabrication of α-HNPs using Echinacea purpurea liquid extract as a previously reported approach was implemented. An evaluation of the adsorption technique via the biofabricated α-HNPs for the removal of the Azr drug contaminant from the pharmaceutical wastewater was conducted. Adsorption isotherm, kinetics, and thermodynamic parameters of the Azr on the α-HNPs surface have been investigated as a batch mode of equilibrium experiments. Antibacterial, anticancer, and antiviral activities were conducted as Azr@α-HNPs. The optimum conditions for the adsorption study were conducted as solution pH = 10, 150 mg dose of α-HNPs, and Azr concentration 400 mg/L at 293 K. The most fitted isothermal model was described according to the Langmuir model at adsorption capacity 114.05 mg/g in a pseudo-second-order kinetic mechanistic at R2 0.9999. Thermodynamic study manifested that the adsorption behavior is a spontaneous endothermic chemisorption process. Subsequently, studying the biocompatible applications of the Azr@α-HNPs. Azr@α-HNPs antibacterial activity revealed a synergistic effect in the case of Gram-positive more than Gram-negative bacteria. IC50 of Azr@α-HNPs cytotoxicity against MCF7, HepG2, and HCT116 cell lines was investigated and it was found to be 78.1, 81.7, and 93.4 µg/mL respectively. As the first investigation of the antiviral use of Azr@α-HNPs against SARS-CoV-2, it was achieved a safety therapeutic index equal to 25.4 revealing a promising antiviral activity. An admirable impact of the use of the biosynthesized α-HNPs and its removal nanosystem product Azr@α-HNPs was manifested and it may be used soon as a platform of the drug delivery nanosystem for the biomedical applications.


Asunto(s)
Tratamiento Farmacológico de COVID-19 , Contaminantes Químicos del Agua , Adsorción , Antibacterianos/farmacología , Antivirales , Azitromicina/farmacología , Humanos , Concentración de Iones de Hidrógeno , Cinética , Nanopartículas Magnéticas de Óxido de Hierro , Preparaciones Farmacéuticas , SARS-CoV-2 , Termodinámica , Aguas Residuales , Contaminantes Químicos del Agua/análisis
3.
Surfaces and Interfaces ; : 101877, 2022.
Artículo en Inglés | ScienceDirect | ID: covidwho-1734993

RESUMEN

The current paper evaluates the adsorption performance of the biofabrication of Alpha Hematite nanoparticles (α-HNPs) for the removal of the Cefixime (Cfx) drug from the pharmaceutical wastewater. Adsorption isotherms, kinetics, and thermodynamic studies have been investigated using batch mode procedures. The optimum conditions were conducted as solution pH 4, α-HNPs dose 100 mg, Cfx concentration 100 mg/L, and absolute temperature 298 K. Cfx adsorption found to follow the Langmuir isothermal model via maximum monolayer adsorption capacities of 147.1 mg/g, and equilibrium kinetic as pseudo-second-order. Thermodynamic parameters were derived as spontaneous chemisorption endothermic processes. The capability of the process for the adsorbent regeneration study revealed the utility of the α-HNPs efficiency up to 5 successive times. Antibacterial activity of the adsorbed Cfx at the surface of α-HNPs (Cfx@α-HNPs) was investigated manifesting highly potent against each of Gram-negative bacteria & Gram-positive. The synergistic impact of Cfx@α-HNPs as an anticancer agent against MCF7, HepG2, and HCT116 cell lines was conducted at IC50 108.5, 117.7, and 156.4 µg/mL respectively revealing a promising efficacy comparing use of the α-HNPs alone. α-HNPs and Cfx@α-HNPs could be suggested as a novel multidrug bacteria-resistant alternative approach in case of treatment for chronic wound infections. As the first investigation of antiviral use of Cfx@α-HNPs against SARS-CoV-2, it was achieved a safety therapeutic index equal to 2.6 revealing a promising antiviral activity.

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