a Department of Chemical and Biological Engineering, College of Engineering , University of Saskatchewan , Saskatoon , SK , Canada.
Crit Rev Food Sci Nutr. 2014;54(10):1283-97. doi: 10.1080/10408398.2011.632698.
The extraction of medicinal or functional compounds from herbal plants is an important unit operation in food and bio-industries. The target compounds are generally present inter- or intra-cellularly in an intricate microstructure formed by cells, intercellular spaces, capillaries, and pores. The major resistance of molecular diffusion in materials of plant origin always comes from the intact cell walls and adhering membranes. Therefore, increasing the permeability of cell walls and membranes plays a very important role to increase extraction yield and/or extraction rate. Important pretreatment methods to modify the cellular structures and increase the permeability of cell walls or membranes are discussed in this paper. They include physical, biologic, and chemical treatments. In physical methods, mechanical disruption, high-pressure (HP) process, pulsed electric field (PEF) application, ultrasonic treatment, and freeze-thaw, and so on were applied. In biologic methods, different cell wall-degrading enzymes were applied to break-down cell walls or membranes and to diminish the overall internal resistance for transporting bioactive compounds from internal matrix to the external solution. In chemical methods, various chemicals for increasing the inner- or outer-membrane permeabilization were introduced. The principles of the technologies, examples of improvements, and advantages and disadvantages of the pretreatment methods are critically reviewed in this paper.
从草药植物中提取药用或功能性化合物是食品和生物工业中的一个重要单元操作。目标化合物通常存在于细胞内或细胞间,由细胞、细胞间隙、毛细血管和孔隙组成的复杂微观结构中。植物源材料中分子扩散的主要阻力总是来自完整的细胞壁和附着的膜。因此,增加细胞壁和细胞膜的通透性对于提高提取产率和/或提取速率起着非常重要的作用。本文讨论了用于修饰细胞结构和增加细胞壁或细胞膜通透性的重要预处理方法。它们包括物理、生物和化学处理。在物理方法中,应用了机械破坏、高压(HP)处理、脉冲电场(PEF)应用、超声处理和冻融等。在生物方法中,应用了不同的细胞壁降解酶来破坏细胞壁或细胞膜,并减小从内部基质向外部溶液输送生物活性化合物的整体内部阻力。在化学方法中,引入了各种用于增加内外膜通透性的化学物质。本文批判性地回顾了这些技术的原理、改进实例以及预处理方法的优缺点。