Department of Food Engineering, University of Bío-Bío, Av. Andrés Bello 720, Chillán 8370003, Chile.
Departamento de Ciencias Básicas, Facultad de Ciencias, Universidad Santo Tomás, Ejercito 146, Santiago 8370003, Chile.
Molecules. 2023 May 29;28(11):4421. doi: 10.3390/molecules28114421.
Growing consumer interest in healthy foods has led to an increased demand for bioactive compounds derived from eco-technologies. This review highlighted two emerging technologies, pressurized liquid extraction (PLE) and supercritical fluid extraction (SFE), which are based on clean processes aimed at recovering bioactive compounds from different food sources. We studied how the different processing conditions provide many advantages and a great opportunity to obtain compounds with antioxidant, antibacterial, antiviral, or antifungal activity from plant matrices and industrial biowaste, especially antioxidant compounds (anthocyanins and polyphenols) due to their important role in health promotion. Our research was conducted through a systematic search in different scientific databases related to the PLE and SFE topics. The review analyzed the optimal extraction conditions using these technologies, which lead to the efficient extraction of bioactive compounds, the use of different equipment, and recent combinations of SFE and PLE with other emerging technologies. This has given rise to the development of new technological innovations, new commercial applications, and the detailed recovery of various bioactive compounds extracted from different plant and marine life food matrices. These two environmentally friendly methodologies are fully valid and have great future application prospects in biowaste valorization. They represent a feasible technological tool that can promote the implementation of a circular economy model for the food industry. The underlying mechanisms of these techniques were discussed in detail and supported by current literature.
消费者对健康食品的兴趣日益浓厚,导致对源自生态技术的生物活性化合物的需求增加。本综述重点介绍了两种新兴技术,即加压液体提取(PLE)和超临界流体提取(SFE),它们基于旨在从不同食物来源中回收生物活性化合物的清洁工艺。我们研究了不同的加工条件如何提供许多优势,并为从植物基质和工业生物废料中获得具有抗氧化、抗菌、抗病毒或抗真菌活性的化合物提供了很好的机会,特别是抗氧化化合物(花青素和多酚),因为它们在促进健康方面发挥着重要作用。我们的研究是通过在与 PLE 和 SFE 主题相关的不同科学数据库中进行系统搜索进行的。该综述分析了使用这些技术的最佳提取条件,这些条件可有效提取生物活性化合物,使用不同的设备,以及最近将 SFE 和 PLE 与其他新兴技术相结合。这引发了新技术创新的发展、新的商业应用以及从不同植物和海洋生物食物基质中提取的各种生物活性化合物的详细回收。这两种环保方法完全有效,在生物废料增值方面具有广阔的未来应用前景。它们代表了一种可行的技术工具,可以促进食品工业循环经济模式的实施。详细讨论了这些技术的基本机制,并得到了当前文献的支持。