Anti-Coronavirus Activity of Chitosan-Stabilized Liposomal Nanocarriers Loaded with Natural Extracts from Bulgarian Flora.

IF 3.2 3区 生物学 Q1 BIOLOGY Life-Basel Pub Date : 2024-09-19 DOI:10.3390/life14091180
Anna Gyurova, Viktoria Milkova, Ivan Iliev, Nevena Lazarova-Zdravkova, Viktor Rashev, Lora Simeonova, Neli Vilhelmova-Ilieva
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Abstract

Disease's severity, mortality rates, and common failures to achieve clinical improvement during the unprecedented COVID-19 pandemic exposed the emergency need for new antiviral therapeutics with higher efficacy and fewer adverse effects. This study explores the potential to encapsulate multi-component plant extracts in liposomes as optimized delivery systems and to verify if they exert inhibitory effects against human seasonal betacoronavirus OC43 (HCoV-OC43) in vitro. The selection of Sambucus nigra, Potentilla reptans, Allium sativum, Aesculus hippocastanum, and Glycyrrhiza glabra L. plant extracts was based on their established pharmacological and antiviral properties. The physicochemical characterization of extract-loaded liposomes was conducted by DLS and electrokinetics. Encapsulated amounts of the extract were evaluated based on the total flavonoid content (TFC) and total polyphenol content (TPC) by colorimetric methods. The BALB 3T3 neutral red uptake (NRU) phototoxicity/cytotoxicity assay was used to estimate compounds' safety. Photo irritation factors (PIFs) of the liposomes containing extracts were <2 which assigned them as non-phototoxic substances. The antiviral capacities of liposomes containing medicinal plant extracts against HCoV-OC43 were measured by the cytopathic effect inhibition test in susceptible HCT-8 cells. The antiviral activity increased by several times compared to "naked" extracts' activity reported previously. A. hippocastanum extract showed 16 times higher inhibitory properties reaching a selectivity index (SI) of 58.96. Virucidal and virus-adsorption effects were investigated using the endpoint dilution method and ∆lgs comparison with infected and untreated controls. The results confirmed that nanoparticles do not directly affect the viral surface or cell membrane, but only serve as carriers of the active substances and the observed protection is due solely to the intracellular action of the extracts.

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载入保加利亚植物天然提取物的壳聚糖稳定脂质体纳米载体的抗冠状病毒活性
在史无前例的 COVID-19 大流行期间,疾病的严重性、死亡率和临床改善的普遍失败暴露了对疗效更高、不良反应更少的新型抗病毒疗法的迫切需求。本研究探讨了将多组分植物提取物封装在脂质体中作为优化递送系统的潜力,并验证其是否能在体外对人类季节性betacoronavirus OC43(HCoV-OC43)产生抑制作用。选择黑三叶草(Sambucus nigra)、龙胆草(Potentilla reptans)、薤白(Allium sativum)、海马(Aesculus hippocastanum)和甘草(Glycyrrhiza glabra L.)植物提取物的依据是它们已确立的药理和抗病毒特性。通过 DLS 和电动力学对提取物负载脂质体进行了物理化学表征。用比色法根据总黄酮含量(TFC)和总多酚含量(TPC)评估了提取物的包封量。采用 BALB 3T3 中性红吸收(NRU)光毒性/细胞毒性试验来评估化合物的安全性。含有提取物的脂质体的光刺激因子(PIF)是海马提取物的 16 倍,选择性指数(SI)达到 58.96。采用终点稀释法和与感染对照组和未处理对照组的 ∆lgs 比较法研究了杀病毒和吸附病毒的效果。结果证实,纳米颗粒并不直接影响病毒表面或细胞膜,而只是作为活性物质的载体,所观察到的保护作用完全是由于提取物的细胞内作用。
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来源期刊
Life-Basel
Life-Basel Biochemistry, Genetics and Molecular Biology-General Biochemistry,Genetics and Molecular Biology
CiteScore
4.30
自引率
6.20%
发文量
1798
审稿时长
11 weeks
期刊介绍: Life (ISSN 2075-1729) is an international, peer-reviewed open access journal of scientific studies related to fundamental themes in Life Sciences, especially those concerned with the origins of life and evolution of biosystems. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers.
期刊最新文献
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