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载有精油的固体脂质纳米粒壳聚糖/PVA 水凝胶的配方,以控制灰葡萄孢和扩展青霉的生长。

Formulation of essential oils-loaded solid lipid nanoparticles-based chitosan/PVA hydrogels to control the growth of Botrytis cinerea and Penicillium expansum.

机构信息

Center of Excellence in Biotechnological Research Applied to the Environment (CIBAMA-UFRO), Faculty of Engineering and Sciences, Universidad de La Frontera, Av. Francisco Salazar 01145, Casilla 54-D, Temuco, Chile; Department of Chemical Engineering, Faculty of Engineering and Sciences, Universidad de La Frontera, Av. Francisco Salazar 01145, Casilla 54-D, Temuco, Chile.

Center of Excellence in Biotechnological Research Applied to the Environment (CIBAMA-UFRO), Faculty of Engineering and Sciences, Universidad de La Frontera, Av. Francisco Salazar 01145, Casilla 54-D, Temuco, Chile; Department of Chemical Sciences and Natural Resources. Faculty of Engineering and Sciences, Universidad de La Frontera, Av. Francisco Salazar 01145, Casilla 54-D, Temuco, Chile.

出版信息

Int J Biol Macromol. 2024 Jun;270(Pt 1):132218. doi: 10.1016/j.ijbiomac.2024.132218. Epub 2024 May 13.

Abstract

Botrytis cinerea and Penicillium expansum are phytopathogenic fungi that produce the deterioration of fruits. Thus, essential oil (EO) has emerged as a sustainable strategy to minimize the use of synthetic fungicides, but their volatility and scarce solubility restrict their application. This study proposes the EO of Oreganum vulgare and Thymus vulgaris-loaded solid lipid nanoparticles (SLN) based chitosan/PVA hydrogels to reduce the infestation of fungi phytopathogen. EO of O. vulgare and T. vulgaris-loaded SLN had a good homogeneity (0.21-0.35) and stability (-28.8 to -33.0 mV) with a mean size of 180.4-188.4 nm. The optimization of EO-loaded SLN showed that the encapsulation of 800 and 1200 μL L of EO of O vulgare and T. vulgaris had the best particle size. EO-loaded SLN significantly reduced the mycelial growth and spore germination of both fungi pathogen. EO-loaded SLN into hydrogels showed appropriate physicochemical characteristics to apply under environmental conditions. Furthermore, rheological analyses evidenced that hydrogels had solid-like characteristics and elastic behavior. EO-loaded SLN-based hydrogels inhibited the spore germination in B. cinerea (80.9 %) and P. expansum (55.7 %). These results show that SLN and hydrogels are eco-friendly strategies for applying EO with antifungal activity.

摘要

灰葡萄孢菌和扩展青霉是引起果实腐烂的植物病原菌。因此,精油(EO)作为一种减少合成杀菌剂使用的可持续策略而出现,但它们的挥发性和溶解度低限制了其应用。本研究提出了负载欧蓍草和普通麝香草精油的固体脂质纳米粒(SLN)的香豆素/聚乙烯醇水凝胶,以减少植物病原菌真菌的侵害。负载 O. vulgare 和 T. vulgaris EO 的 SLN 具有良好的均一性(0.21-0.35)和稳定性(-28.8 至-33.0 mV),平均粒径为 180.4-188.4nm。负载 EO 的 SLN 的优化表明,包封 800 和 1200 μL L 的 O vulgare 和 T. vulgaris EO 的粒径最佳。负载 EO 的 SLN 显著抑制了两种病原菌真菌的菌丝生长和孢子萌发。负载 EO 的 SLN 水凝胶具有适当的物理化学特性,可在环境条件下应用。此外,流变分析表明水凝胶具有固态特性和弹性行为。负载 EO 的 SLN 水凝胶抑制了灰葡萄孢菌(80.9%)和扩展青霉(55.7%)的孢子萌发。这些结果表明,SLN 和水凝胶是具有抗真菌活性的 EO 的环保型应用策略。

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