A Path to the Formation Mechanism of Propolis Nanoparticles, their Cytotoxicity on 3T3 Fibroblasts, Metastatic Murine B16F10 Cells, and their In vivo Irritability in Animals.

IF 2.6 4区 医学 Q3 CHEMISTRY, MEDICINAL
Jeimmy González-Masís, Rodolfo J Gonzalez-Paz, Yendry Regina Corrales Ureña, Simón Guerrero, Sara González-Camacho, Nohelia Mora-Ugalde, Mónica Baizán-Rojas, Randall Loaiza, José Roberto Vega-Baudrit, Jorge M Cubero-Sesin
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Abstract

Background: Natural products, such as propolis, are an important source of biologically active compounds with the potential to treat health disorders. Propolis is a well-known waxy resin recognized for its antimicrobial, immunomodulatory, and cytotoxic effects.

Objective: In this study, we aimed to clarify the formation mechanism of propolis nanoparticles from the perspective of their stability and chemical composition. By evaluating the light absorption behaviour of the nanoparticles formed in different media and quantifying the polyphenols, we show that they are superficially hydrophobic nanoparticles with the capacity to encapsulate some polar compounds.

Methods: Biological activity was evaluated by in vitro cell viability performed on NIH/3T3 fibroblasts incubated with 10, 100, and 1000 μg/mL of propolis nanoparticles for 48 hours.

Results: The results show that nanoparticles are cytocompatible, with a proliferation effect. In contrast, the results of the viability of metastatic murine B16F10 cells indicate that a dose with a concentration of 5 μg/mL in the cell culture media is sufficient to stop the abnormal cell growth, having an antitumor effect. This effect might be related to the flavonoids present in the propolis nanoparticles. In vivo dermal irritability tests on New Zealand rabbits show that propolis nanoparticles' aqueous dissolution was non-irritant.

Conclusion: According to the results obtained from this study, reducing the size of raw propolis down to nanoparticles and dispersing them in water solvents enhance its positive effects. The superficially hydrophobic propolis nanoparticles encapsulate active compounds such as polyphenols and flavonoids, which also confirms their ability to generate selective effects on the cells, depending on their nature.

蜂胶纳米颗粒的形成机制及其对3T3成纤维细胞、转移性小鼠B16F10细胞的细胞毒性及其在动物体内的激惹性
背景:天然产物,如蜂胶,是生物活性化合物的重要来源,具有治疗健康疾病的潜力。蜂胶是一种众所周知的蜡状树脂,具有抗菌、免疫调节和细胞毒性作用。目的:本研究旨在从蜂胶纳米颗粒的稳定性和化学组成等方面阐明其形成机理。通过评估在不同介质中形成的纳米粒子的光吸收行为和对多酚的量化,我们表明它们是表面疏水的纳米粒子,具有封装一些极性化合物的能力。方法:用10、100、1000 μg/mL蜂胶纳米颗粒培养NIH/3T3成纤维细胞48 h,通过体外细胞活力评价其生物活性。结果:纳米颗粒具有细胞相容性,具有增殖作用。相比之下,转移小鼠B16F10细胞的活力结果表明,细胞培养基中浓度为5 μg/mL的剂量足以阻止细胞的异常生长,具有抗肿瘤作用。这种效果可能与蜂胶纳米颗粒中的类黄酮有关。新西兰兔体内皮肤过敏性试验表明,蜂胶纳米颗粒水溶液溶出无刺激性。结论:根据本研究的结果,将原料蜂胶缩小到纳米颗粒并将其分散在水溶剂中可以增强其积极作用。表面疏水性的蜂胶纳米颗粒包裹了活性化合物,如多酚和类黄酮,这也证实了它们对细胞产生选择性作用的能力,这取决于它们的性质。
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来源期刊
Anti-cancer agents in medicinal chemistry
Anti-cancer agents in medicinal chemistry ONCOLOGY-CHEMISTRY, MEDICINAL
CiteScore
5.10
自引率
3.60%
发文量
323
审稿时长
4-8 weeks
期刊介绍: Formerly: Current Medicinal Chemistry - Anti-Cancer Agents. Anti-Cancer Agents in Medicinal Chemistry aims to cover all the latest and outstanding developments in medicinal chemistry and rational drug design for the discovery of anti-cancer agents. Each issue contains a series of timely in-depth reviews and guest edited issues written by leaders in the field covering a range of current topics in cancer medicinal chemistry. The journal only considers high quality research papers for publication. Anti-Cancer Agents in Medicinal Chemistry is an essential journal for every medicinal chemist who wishes to be kept informed and up-to-date with the latest and most important developments in cancer drug discovery.
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