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微藻中生物活性化合物的多样性:关键类别与功能应用

Diversity of Bioactive Compounds in Microalgae: Key Classes and Functional Applications.

作者信息

Osathanunkul Maslin, Thanaporn Suebsuya, Karapetsi Lefkothea, Nteve Georgia Maria, Pratsinakis Emmanouil, Stefanidou Eleni, Lagiotis Giorgos, Avramidou Eleni, Zorxzobokou Lydia, Tsintzou Georgia, Athanasiou Artemis, Mpelai Sofia, Constandinidis Constantinos, Pantiora Panagiota, Merino Marián, Mullor José Luis, Dobrovic Luka, Cerasino Leonardo, Ogawa Tomohisa, Tsaousi Meropi, Rodrigues Alexandre M C, Cardoso Helena, Pires Rita, Figueiredo Daniel, Costa Inês F, Anjos Catarina, Labrou Nikolaos E, Madesis Panagiotis

机构信息

Department of Biology, Faculty of Science, Chiang Mai University, Chiang Mai 50200, Thailand.

Institute of Applied Biosciences, Centre for Research and Technology Hellas, 57001 Thessaloniki, Greece.

出版信息

Mar Drugs. 2025 May 22;23(6):222. doi: 10.3390/md23060222.


DOI:10.3390/md23060222
PMID:40559631
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC12194743/
Abstract

Microalgae offer a sustainable and versatile source of bioactive compounds. Their rapid growth, efficient CO utilization, and adaptability make them a promising alternative to traditional production methods. Key compounds, such as proteins, polyunsaturated fatty acids (PUFAs), polyphenols, phytosterols, pigments, and mycosporine-like amino acids (MAAs), hold significant commercial value and are widely utilized in food, nutraceuticals, cosmetics, and pharmaceuticals, driving innovation across multiple industries. Their antiviral and enzyme-producing capabilities further enhance industrial and medical applications. Additionally, microalgae-based biostimulants and plant elicitor peptides (PEPs) contribute to sustainable agriculture by enhancing plant growth and resilience to environmental stressors. The GRAS status of several species facilitates market integration, but challenges in scaling and cost reduction remain. Advances in biotechnology and metabolic engineering will optimize production, driving growth in the global microalgae industry. With increasing consumer demand for natural, eco-friendly products, microalgae will play a vital role in health, food security, and environmental sustainability.

摘要

微藻提供了一种可持续且用途广泛的生物活性化合物来源。它们生长迅速、能高效利用二氧化碳且适应性强,这使其成为传统生产方法的一个有前景的替代方案。关键化合物,如蛋白质、多不饱和脂肪酸(PUFA)、多酚、植物甾醇、色素和类菌孢素氨基酸(MAA),具有重大商业价值,广泛应用于食品、营养保健品、化妆品和制药领域,推动了多个行业的创新。它们的抗病毒和产酶能力进一步增强了工业和医学应用。此外,基于微藻的生物刺激剂和植物激发子肽(PEP)通过促进植物生长和增强对环境压力的抵御能力,为可持续农业做出贡献。几种微藻物种的一般认为安全(GRAS)地位有助于其融入市场,但在扩大规模和降低成本方面仍存在挑战。生物技术和代谢工程的进展将优化生产,推动全球微藻产业的发展。随着消费者对天然、环保产品的需求不断增加,微藻将在健康、粮食安全和环境可持续性方面发挥至关重要的作用。

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Diversity of Bioactive Compounds in Microalgae: Key Classes and Functional Applications.

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本文引用的文献

[1]
Different suppressive effects of canthaxanthin and fucoxanthin on cellular responses of human dermal fibroblasts to ultraviolet A irradiation.

Biosci Biotechnol Biochem. 2025-6-23

[2]
Carotenoids Modulate FoxO-Induced Cell Cycle Awrrest in Human Cancer Cell Lines: A Scoping Review.

Food Sci Nutr. 2025-3-28

[3]
Current advances in microalgae-based fucoxanthin production and downstream processes.

Bioresour Technol. 2025-7

[4]
Amino Acid and Carotenoid Profiles of During Two-Stage Cultivation at Different Salinities.

Bioengineering (Basel). 2025-3-13

[5]
A Mendelian randomized study of circulating antioxidants in the diet and risk of cardiovascular disease.

Sci Rep. 2025-3-25

[6]
Marine Carotenoids: Unlocking Advanced Antioxidant Mechanisms and Therapeutic Applications for Oxidative Stress.

Mol Biotechnol. 2025-3-25

[7]
Potential Antioxidant and Anti-inflammatory Effects of Astaxanthin Ionic Liquid Liposomes.

ACS Appl Bio Mater. 2025-4-21

[8]
Recent progress in the cyanobacterial products and applications of phycocyanins.

World J Microbiol Biotechnol. 2025-2-27

[9]
Microalgae-derived astaxanthin: bioactivities, biotechnological approaches and industrial technologies for its production.

Crit Rev Food Sci Nutr. 2025-2-24

[10]
Causal link between dietary antioxidant vitamins intake, oxidative stress injury biomarkers and colorectal cancer: A Mendelian randomization study.

Medicine (Baltimore). 2025-2-14

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