Departament de Farmacologia, Facultat de Farmàcia, Universitat de València, Avd. Vicent Andrés Estellés s/n, 46100 Burjassot, València, Spain.
ICGM, University of Montpellier, CNRS, ENSCM, 34090 Montpellier, France.
Molecules. 2020 Jun 3;25(11):2598. doi: 10.3390/molecules25112598.
Limonene, mainly found as a major component in spp., has been proven to possess a valuable potential as sustainable replacement to synthetic pesticides and food preservatives. This review intends to give a clear overview of the principal emerging applications of limonene in the agri-food industry as antimicrobial, herbicidal and antioxidant agent. To successfully use limonene in a greener agri-food industry, its preservation had become a top concern for manufacturers. In order to elucidate the most efficient and sustainable manner to encapsulate limonene, the different techniques and materials tested up to the present are also reviewed. In general, encapsulation conserves and protects limonene from outside aggressions, but also allows its controlled release as well as enhances its low water solubility, which can be critical for the discussed applications. Other parameters such as scalability, low cost and availability of equipment will need to be taken into account. Further efforts would likely be oriented to the elucidation of encapsulating sustainable systems obtained by cost-efficient elaboration processes, which can deliver effective concentrations of limonene without affecting crops and food products.
柠檬烯主要存在于 spp. 中,已被证明具有作为可持续的合成农药和食品防腐剂替代品的宝贵潜力。本综述旨在概述柠檬烯在农业食品工业中作为抗菌剂、除草剂和抗氧化剂的主要新兴应用。为了在更环保的农业食品工业中成功使用柠檬烯,制造商最关心的是其保存问题。为了阐明最有效和可持续的包封柠檬烯的方法,本文还综述了迄今为止测试的不同技术和材料。一般来说,包封可以保护柠檬烯免受外界侵害,还可以控制其释放,并提高其低水溶性,这对于讨论中的应用可能是至关重要的。其他参数,如可扩展性、低成本和设备的可用性,也需要考虑。未来的研究可能会集中于阐明通过经济高效的精制工艺获得的可持续封装系统,这些系统可以提供有效的柠檬烯浓度,而不会影响作物和食品。