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用于治疗猪流行性腹泻病毒(PEDV)的负载叶提取物的氧化锌纳米颗粒

leaf extract-loading ZnO nanoparticles for porcine epidemic diarrhea virus (PEDV) treatment.

作者信息

Le Thi Thu Huong, Than Thi Tam, Lai Thi Ngọc Ha, Le Van Phan

机构信息

Faculty of Natural Resources and Environment, Vietnam National University of Agriculture Trau Quy, Gia Lam Hanoi Vietnam

Institute of Veterinary Science and Technology Trau Quy, Gia Lam Hanoi Vietnam.

出版信息

RSC Adv. 2024 Mar 14;14(13):8779-8789. doi: 10.1039/d3ra08928b.

Abstract

Porcine epidemic diarrhea (PED) is one of the diseases that causes great losses for livestock farmers. Because vaccines against the disease are not very effective, there is a great demand for biological products with effective resistance to PED virus (PEDV). One of the most important trends today is the use of active ingredients from nature in animal husbandry. This study aimed to create an effective agent against PEDV from the extract of , which has been shown to inhibit PEDV. The aqueous (denoted as TCN) and ethanolic extracts (denoted as TCC) of leaves were first prepared and then qualitatively analyzed for their chemical compositions. The TCN was used to synthesize ZnO nanoparticles (NPs) at various sizes from 20 to 120 nm. Subsequently, TCC was loaded on ZnO NPs to form ZnO-extract nanoformulations with an extract loading content of 5.8-7.6%. Total polyphenols (TP) and total alkaloids (TA) in TCC were 38.51 ± 0.25 μg GAE per mg and 22.37 ± 0.41 μg AtrE per mg, respectively. TP was less loaded but more released from the nanoformulations than TA. The A1T nanoformulation, containing only 7.6% extract, had a minimum PEDV inhibitory concentration of 3.9 μg mL, which was comparable to that of TCC. The experiments confirmed that the nanoformulations are promising for PEDV inhibition applications.

摘要

猪流行性腹泻(PED)是给养殖户造成巨大损失的疾病之一。由于针对该疾病的疫苗效果不佳,对有效抵抗猪流行性腹泻病毒(PEDV)的生物制品有很大需求。当今最重要的趋势之一是在畜牧业中使用天然活性成分。本研究旨在从已显示能抑制PEDV的[植物名称]提取物中制备一种有效的抗PEDV制剂。首先制备了[植物名称]叶的水提取物(记为TCN)和乙醇提取物(记为TCC),然后对其化学成分进行了定性分析。使用TCN合成了尺寸在20至120纳米之间的各种大小的氧化锌纳米颗粒(NPs)。随后,将TCC负载到ZnO NPs上,形成提取物负载量为5.8 - 7.6%的ZnO - 提取物纳米制剂。TCC中的总多酚(TP)和总生物碱(TA)分别为每毫克38.51±0.25微克没食子酸当量和每毫克22.37±0.41微克阿托品当量。与TA相比,TP在纳米制剂中的负载量较少,但释放量较多。仅含有7.6%提取物的A1T纳米制剂对PEDV的最低抑制浓度为3.9微克/毫升,与TCC相当。实验证实这些纳米制剂在PEDV抑制应用方面具有前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4479/10938554/981bff20e98a/d3ra08928b-f1.jpg

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