Pal Priyabrata, Hasan Shadi W, Abu Haija Mohammad, Sillanpää Mika, Banat Fawzi
Department of Chemical Engineering, Khalifa University of Science and Technology, Abu Dhabi, United Arab Emirates.
Department of Chemistry, Khalifa University of Science and Technology, Abu Dhabi, United Arab Emirates.
Crit Rev Biotechnol. 2023 Dec;43(7):971-981. doi: 10.1080/07388551.2022.2092716. Epub 2022 Aug 15.
Colloidal gas aphrons (CGAs) are highly stable, spherical, micrometer-sized bubbles encapsulated by surfactant multilayers. They have several intriguing properties, including: high stability, large interfacial area, and the ability to maintain the same charge as their parent molecules. The physical properties of CGAs make them ideal for biotechnological applications such as the recovery of a variety of: biomolecules, particularly proteins, yeast, enzymes, and microalgae. In this review, the bio-application of CGAs for the recovery of natural components is presented, as well as: experimental results, technical challenges, and critical research directions for the future. Experimental results from the literature showed that the recovery of biomolecules was mainly determined by electrostatic or hydrophobic interactions between polyphenols and proteins (lysozyme, β-casein, β-lactoglobulin, etc.), yeast, biological molecules (gallic acid and norbixin), and microalgae with CGAs. Knowledge transfer is essential for commercializing CGA-based bio-product recovery, which will be recognized as a viable technology in the future.
胶体气体泡囊(CGAs)是由表面活性剂多层膜包裹的高度稳定的球形微米级气泡。它们具有几个有趣的特性,包括:高稳定性、大界面面积以及与母体分子保持相同电荷的能力。CGAs的物理特性使其成为生物技术应用的理想选择,例如用于回收多种生物分子,特别是蛋白质、酵母、酶和微藻。在本综述中,介绍了CGAs在天然成分回收方面的生物应用,以及实验结果、技术挑战和未来的关键研究方向。文献中的实验结果表明,生物分子的回收主要取决于多酚与蛋白质(溶菌酶、β-酪蛋白、β-乳球蛋白等)、酵母、生物分子(没食子酸和胭脂树素)以及微藻与CGAs之间的静电或疏水相互作用。知识转移对于基于CGA的生物产品回收商业化至关重要,这在未来将被视为一项可行的技术。