Evolving perspectives on lutein production from microalgae - A focus on productivity and heterotrophic culture

IF 12.1 1区 工程技术 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Biotechnology advances Pub Date : 2024-05-16 DOI:10.1016/j.biotechadv.2024.108375
Cristobal Camarena-Bernard , Victor Pozzobon
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Abstract

Increased consumer awareness for healthier and more sustainable products has driven the search for naturally sourced compounds as substitutes for chemically synthesized counterparts. Research on pigments of natural origin, such as carotenoids, particularly lutein, has been increasing for over three decades. Lutein is recognized for its antioxidant and photoprotective activity. Its ability to cross the blood-brain barrier allows it to act at the eye and brain level and has been linked to benefits for vision, cognitive function and other conditions. While marigold flower is positioned as the only crop from which lutein is extracted from and commercialized, microalgae are proposed as an alternative with several advantages over this terrestrial crop. The main barrier to scaling up lutein production from microalgae to the commercial level is the low productivity compared to the high costs. This review explores strategies to enhance lutein production in microalgae by emphasizing the overall productivity over lutein content alone. Evaluation of how culture parameters, such as light quality, nitrogen sufficiency, temperature and even stress factors, affect lutein content and biomass development in batch phototrophic cultures was performed. Overall, the total lutein production remains low under this metabolic regime due to the low biomass productivity of photosynthetic batch cultures. For this reason, we describe findings on microalgal cultures grown under different metabolic regimes and culture protocols (fed-batch, pulse-feed, semi-batch, semi-continuous, continuous). After a careful literature examination, two-step heterotrophic or mixotrophic cultivation strategies are suggested to surpass the lutein productivity achieved in single-step photosynthetic cultures. Furthermore, this review highlights the urgent need to develop technical feasibility studies at a pilot scale for these cultivation strategies, which will strengthen the necessary techno-economic analyses to drive their commercial production.

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微藻叶黄素生产的发展前景--关注生产力和异养培养。
消费者对更健康、更可持续的产品的认识不断提高,促使人们寻找天然来源的化合物来替代化学合成的同类产品。三十多年来,对类胡萝卜素(尤其是叶黄素)等天然色素的研究与日俱增。叶黄素被公认具有抗氧化和光保护活性。叶黄素能够穿过血脑屏障,作用于眼睛和大脑,对视力、认知功能和其他疾病都有好处。虽然万寿菊被定位为提取叶黄素并将其商业化的唯一作物,但微藻类被建议作为一种替代品,与这种陆生作物相比,微藻类具有多项优势。将微藻叶黄素的生产规模扩大到商业化水平的主要障碍是生产率低而成本高。本综述探讨了提高微藻叶黄素产量的策略,强调整体生产率而非叶黄素含量。本文评估了光质、氮充足度、温度甚至应激因素等培养参数如何影响批量光养培养的叶黄素含量和生物量发展。总体而言,在这种新陈代谢机制下,叶黄素的总产量仍然很低,原因是批量光合培养物的生物量生产率较低。为此,我们介绍了在不同代谢机制和培养方案(批量进食、脉冲进食、半批量、半连续、连续)下生长的微藻培养物的研究结果。在仔细查阅文献后,我们提出了两步异养或混养培养策略,以超越单步光合培养所实现的叶黄素生产率。此外,本综述还强调,迫切需要针对这些培养策略开展中试规模的技术可行性研究,从而加强必要的技术经济分析,推动其商业化生产。
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来源期刊
Biotechnology advances
Biotechnology advances 工程技术-生物工程与应用微生物
CiteScore
25.50
自引率
2.50%
发文量
167
审稿时长
37 days
期刊介绍: Biotechnology Advances is a comprehensive review journal that covers all aspects of the multidisciplinary field of biotechnology. The journal focuses on biotechnology principles and their applications in various industries, agriculture, medicine, environmental concerns, and regulatory issues. It publishes authoritative articles that highlight current developments and future trends in the field of biotechnology. The journal invites submissions of manuscripts that are relevant and appropriate. It targets a wide audience, including scientists, engineers, students, instructors, researchers, practitioners, managers, governments, and other stakeholders in the field. Additionally, special issues are published based on selected presentations from recent relevant conferences in collaboration with the organizations hosting those conferences.
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