Kouidhi Soumaya, Mnif Wissem, Alqarni Nada, Abdelwahed Soukaina, Redissi Alaeddine, Ammous Nihel, Selmi Boulbaba, Gargouri Ali, Achour Sami, Cherif Ameur, Mosbah Amor
Laboratory (BVBGR)-LR11ES31 University Manouba ISBST Biotechnopole Sidi Thabet Ariana Tunisia.
Department of Chemistry Faculty of Sciences and Arts in Balgarn University of Bisha Bisha Saudi Arabia.
Food Sci Nutr. 2022 Mar 14;10(6):1928-1936. doi: 10.1002/fsn3.2809. eCollection 2022 Jun.
Recently, β-carotene has gained tremendous importance as a bioactive molecule due to the growing awareness of the harmful effects of synthetic products. β-carotene is a high-value natural pigment that has the highest demand in the global carotenoid market owing to its proven antioxidant properties relevant for several diseases. To date, is the most important producer of natural β-carotene and is the subject of important industrial efforts. However, the extraction of β-carotene remains challenging since all the proposed techniques present a risk of product contamination or loss of quality due to solvent residuals and low yields. The purpose of this study was to set up a green, ecological, and innovative process of extraction of the two major β-carotene isomers from the halophilic microalgae . Based on molecular modeling, docking, and drug design, we conceived and synthesized two chimeric peptides (PP2, PP3) targeting specifically the two major isomers: all-trans or 9-cis β-carotene. The experimental protocol used in this study demonstrated the ability and the efficacy of those two peptides to cross the cell membrane and bind with high affinity to β-carotene isomers and exclude them toward the extracellular medium while preserving the integrity of living cells. Interestingly, the tested peptides (PP2, PP3) exhibit significant β-carotene extraction yields 58% and 34%, respectively, from the total of the β-carotene in microalgae cells. In addition to its simplicity, this process is fast, independent of the source of the β-carotene, and selective. These results would allow us to set up a green, ecological, and very profitable process of extraction from microalgae containing high amounts of β-carotene. Our innovative approach is highly promising for the extraction of biomass on an industrial scale.
近年来,由于人们越来越意识到合成产品的有害影响,β-胡萝卜素作为一种生物活性分子变得极为重要。β-胡萝卜素是一种高价值的天然色素,因其已被证实的与多种疾病相关的抗氧化特性,在全球类胡萝卜素市场中需求最高。迄今为止,[具体国家或地区]是天然β-胡萝卜素的最重要生产地,并且是重要工业努力的对象。然而,β-胡萝卜素的提取仍然具有挑战性,因为所有提出的技术都存在产品污染风险或由于溶剂残留和低产率导致的质量损失。本研究的目的是建立一种从嗜盐微藻[具体微藻名称]中提取两种主要β-胡萝卜素异构体的绿色、生态且创新的工艺。基于分子建模、对接和药物设计,我们构思并合成了两种嵌合肽(PP2、PP3),它们专门靶向两种主要异构体:全反式或9-顺式β-胡萝卜素。本研究中使用的实验方案证明了这两种肽穿过细胞膜并与β-胡萝卜素异构体高亲和力结合的能力和功效,同时将它们排向细胞外介质,同时保持活细胞的完整性。有趣的是,测试的肽(PP2、PP3)分别从微藻细胞中的总β-胡萝卜素中提取出了58%和34%的显著β-胡萝卜素产量。除了简单之外,这个过程快速、独立于β-胡萝卜素的来源且具有选择性。这些结果将使我们能够建立一个从含有大量β-胡萝卜素的微藻中进行绿色、生态且非常有利可图的提取工艺。我们的创新方法对于工业规模提取[具体微藻名称]生物质极具前景。