Molecular Biology Department, Center of Exact and Natural Sciences, Federal University of Paraíba, João Pessoa, Paraíba, Brazil.
World J Microbiol Biotechnol. 2024 Mar 7;40(4):127. doi: 10.1007/s11274-024-03883-6.
The demand for emulsion-based products is crucial for economic development and societal well-being, spanning diverse industries such as food, cosmetics, pharmaceuticals, and oil extraction. Formulating these products relies on emulsifiers, a distinct class of surfactants. However, many conventional emulsifiers are derived from petrochemicals or synthetic sources, posing potential environmental and human health risks. In this context, fungal bioemulsifiers emerge as a compelling and sustainable alternative, demonstrating superior performance, enhanced biodegradability, and safety for human consumption. From this perspective, the present work provides the first comprehensive review of fungal bioemulsifiers, categorizing them based on their chemical nature and microbial origin. This includes polysaccharides, proteins, glycoproteins, polymeric glycolipids, and carbohydrate-lipid-protein complexes. Examples of particular interest are scleroglucan, a polysaccharide produced by Sclerotium rolfsii, and mannoproteins present in the cell walls of various yeasts, including Saccharomyces cerevisiae. Furthermore, this study examines the feasibility of incorporating fungal bioemulsifiers in the food and oil industries and their potential role in bioremediation events for oil-polluted marine environments. Finally, this exploration encourages further research on fungal bioemulsifier bioprospecting, with far-reaching implications for advancing sustainable and eco-friendly practices across various industrial sectors.
乳液产品的需求对经济发展和社会福祉至关重要,涵盖了食品、化妆品、制药和石油开采等多个行业。这些产品的配方依赖于乳化剂,这是一类独特的表面活性剂。然而,许多传统的乳化剂来源于石油化工或合成来源,存在潜在的环境和人类健康风险。在这种情况下,真菌生物乳化剂作为一种有吸引力和可持续的替代品出现,具有卓越的性能、增强的生物降解性以及可安全用于人类消费的特点。从这个角度来看,本工作首次全面综述了真菌生物乳化剂,根据其化学性质和微生物来源对其进行了分类。这包括多糖、蛋白质、糖蛋白、聚合糖脂和糖脂蛋白复合物。特别值得关注的例子有由 Sclerotium rolfsii 产生的多糖——硬葡聚糖,以及各种酵母(包括酿酒酵母)细胞壁中的甘露糖蛋白。此外,本研究还探讨了将真菌生物乳化剂纳入食品和石油工业的可行性,以及它们在受石油污染的海洋环境中的生物修复事件中的潜在作用。最后,这一探索鼓励进一步研究真菌生物乳化剂的生物勘探,对推进各个工业部门的可持续和环保实践具有深远意义。