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Evaluations of Potential Antiviral Effects of Green Zinc Oxide and Silver Nanoparticles against Bovine Herpesvirus-1

机译:绿色氧化锌和银纳米粒子对牛疱疹病毒-1的潜在抗病毒作用的评价

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Viral infection is one of the most important life-threatening animals health. The emergence of new viral disease increases the demand for new therapeutic drugs. Current antiviral drugs have certain limitations for treating viral infection. The objective of the present study was aimed to use the plant extracts of olive leaves and natural honey for green synthesis of zinc oxide (ZnONPs) and silver nanoparticles (AgNPs) and investigate potential antiviral activities against bovine herpesvirus-1(BoHV-1) in vitro and in vivo. The formation of green NPs was confirmed by visible color change, transmission electron microscope (TEM), and UV- spectrophotometer. For determining ZnONPs and AgNPs cytotoxicity on MDBK cell culture using modified enzyme-linked immunosorbent assays (ELISA) and cytopathic effects (CPEs) to monitor the cytopathogenic changed. The antiviral activity of the green nanoparticles was evaluated using MDBK cell culture and experimental animals. The early signs observed that ZnONPs and AgNPs formation were color change from whitish to brownish color. The Transmission electron microscopy (TEM) analysis of NPs showed spherical nanoparticles and prismatic shapes showed size ranges between 10 nm to 50 nm. The UV- spectrophotometer analysis showed an absorption peak at 415 to 450 nm. Green ZnONPs and AgNPs are safe in MDBK cell culture at concentration ranged from 24?μg/mL to 50 μg /mL and they were protected the MDBK cell culture from BoHV-1 infection at nontoxic concentrations 25?μg/mL Green ZnO and AgNPs were safe in MDBK cell culture and in experimental animals. Although, the highest concentrations of ZnONPs and AgNPs cytotoxic effect with different degrees. ZnO and AgNPs protected the MDBK cell culture and experimental rabbits from experimentally infected with BoHV-1 infection when treating cell culture with green ZnONPs and AgNPs suspension. However, molecular redetection by polymerase chain reaction (PCR) was able to detect BoHV-1 in nasal swabs collected from control positive rabbit groups at the first 2 days after infection but failed to detect virus in treated groups with green ZnONPs and AgNPs suspension. Green ZnO and AgNPs can use in vitro and in vivo to protect cell culture and animals against BoHV-1viral infections. ZnO and AgNPs nontoxic and they are able to inhibit BoHV-1.
机译:病毒感染是最重要的威胁性动物健康之一。新病毒疾病的出现增加了对新治疗药物的需求。目前的抗病毒药物对治疗病毒感染具有一定的限制。本研究的目的旨在利用橄榄叶和天然蜂蜜的植物提取物,用于绿色合成氧化锌(ZnOnps)和银纳米粒子(AgNP),并研究牛疱疹病毒-1(Bohv-1)的潜在抗病毒药品体外和体内。通过可见光变化,透射电子显微镜(TEM)和UV-分光光度计确认绿NPS的形成。用于使用改性的酶联免疫吸附测定(ELISA)和细胞病变效应(CPES)测定MDBK细胞培养对MDBK细胞培养的ZnONP和AgNPS细胞毒性,以监测细胞病变的变化。使用MDBK细胞培养和实验动物评价绿色纳米颗粒的抗病毒活性。早期迹象观察到ZnOnps和Agnps形成是从发白的颜色变化到褐色。 NPS的透射电子显微镜(TEM)分析显示球形纳米颗粒和棱柱形状显示尺寸在10nm至50nm之间的尺寸范围。 UV分光光度计分析显示出415至450nm的吸收峰。绿色ZnOnps和AgNPS在MDBK细胞培养中是安全的,浓度为24Ω·μg/ ml至50μg/ ml,并在Nontoxic浓度下从BOHV-1感染中保护MDBK细胞培养物25Ω·μg/ ml绿色ZnO和AgNPS在MDBK细胞培养和实验动物中安全。虽然,最高浓度的ZnOnps和Agnps细胞毒性效应不同程度。当用绿色ZnONP和AgNPS悬浮液治疗细胞培养时,ZnO和AgNPS保护MDBK细胞培养物和实验感染的实验感染的兔。然而,聚合酶链反应(PCR)的分子重新检测能够在感染后的前2天从对照阳性兔群中收集的鼻拭子中检测BOHV-1,但未检测到具有绿色ZnONP和AgNPS悬浮液的治疗组中的病毒。绿色ZnO和AgNP可以在体外和体内使用,以保护细胞培养和动物免受BoHV-1Viral感染。 ZnO和Agnps无毒,它们能够抑制BoHV-1。

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