Cornet Steven H V, Snel Silvia J E, Schreuders Floor K G, van der Sman Ruud G M, Beyrer Michael, van der Goot Atze Jan
Food Process Engineering, Agrotechnology and Food Sciences Group, Wageningen University & Research, Wageningen, The Netherlands.
Food and Biobased Research, Wageningen University & Research, Wageningen, The Netherlands.
Crit Rev Food Sci Nutr. 2022;62(12):3264-3280. doi: 10.1080/10408398.2020.1864618. Epub 2021 Jan 6.
Consumption of plant-based meat analogues offers a way to reduce the environmental footprint of the human diet. High-moisture extrusion cooking (HMEC) and shear cell processing both rely on thermo-mechanical treatment of proteins to product fibrous meat-like products. However, the mechanisms underlying these processes are not well understood. In this review we discuss the effect of thermo-mechanical processing on the physicochemical properties and phase behavior of proteins and protein mixtures. The HMEC and shear cell processes are comparable in their basic unit operations, which are (1) mixing and hydration, (2) thermo-mechanical treatment, and (3) cooling. An often overlooked part of the extruder that could be crucial to fibrillation is the so-called breaker plate, which is situated between the barrel and die sections. We found a lack of consensus on the effect of heat on protein-protein interactions, and that the experimental tools to study protein-protein interactions are limited. The different mechanisms for structure formation proposed in literature all consider the deformation and alignment of the melt. However, the mechanisms differ in their underlying assumptions. Further investigation using novel and dedicated tools is required to fully understand these thermo-mechanical processes.
食用植物性肉类替代品为减少人类饮食的环境足迹提供了一条途径。高水分挤压烹饪(HMEC)和剪切细胞处理都依赖于对蛋白质进行热机械处理来生产纤维状的类似肉类的产品。然而,这些过程背后的机制尚未得到很好的理解。在这篇综述中,我们讨论了热机械加工对蛋白质和蛋白质混合物的物理化学性质及相行为的影响。HMEC和剪切细胞过程在其基本单元操作方面具有可比性,这些操作包括:(1)混合与水合,(2)热机械处理,以及(3)冷却。挤出机中一个常常被忽视但可能对原纤化至关重要的部分是所谓的分流板,它位于料筒和模头部分之间。我们发现对于热对蛋白质 - 蛋白质相互作用的影响缺乏共识,并且用于研究蛋白质 - 蛋白质相互作用的实验工具有限。文献中提出的不同结构形成机制都考虑了熔体的变形和排列。然而,这些机制在其基本假设上有所不同。需要使用新颖且专门的工具进行进一步研究,以全面理解这些热机械过程。