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  5. Natural Carotenoids: Recent Advances on Separation from Microbial Biomass and Methods of Analysis

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Article
en
2023

Natural Carotenoids: Recent Advances on Separation from Microbial Biomass and Methods of Analysis

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0 Files

en
2023
Vol 12 (5)
Vol. 12
DOI: 10.3390/antiox12051030

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Aikaterini Papadaki
Aikaterini Papadaki

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Harris Papapostolou
Vasiliki Kachrimanidou
Maria Alexandri
+3 more

Abstract

Biotechnologically produced carotenoids occupy an important place in the scientific research. Owing to their role as natural pigments and their high antioxidant properties, microbial carotenoids have been proposed as alternatives to their synthetic counterparts. To this end, many studies are focusing on their efficient and sustainable production from renewable substrates. Besides the development of an efficient upstream process, their separation and purification as well as their analysis from the microbial biomass confers another important aspect. Currently, the use of organic solvents constitutes the main extraction process; however, environmental concerns along with potential toxicity towards human health necessitate the employment of “greener” techniques. Hence, many research groups are focusing on applying emerging technologies such as ultrasounds, microwaves, ionic liquids or eutectic solvents for the separation of carotenoids from microbial cells. This review aims to summarize the progress on both the biotechnological production of carotenoids and the methods for their effective extraction. In the framework of circular economy and sustainability, the focus is given on green recovery methods targeting high-value applications such as novel functional foods and pharmaceuticals. Finally, methods for carotenoids identification and quantification are also discussed in order to create a roadmap for successful carotenoids analysis.

How to cite this publication

Harris Papapostolou, Vasiliki Kachrimanidou, Maria Alexandri, Stavros Plessas, Aikaterini Papadaki, Nikolaos Kopsahelis (2023). Natural Carotenoids: Recent Advances on Separation from Microbial Biomass and Methods of Analysis. , 12(5), DOI: https://doi.org/10.3390/antiox12051030.

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Publication Details

Type

Article

Year

2023

Authors

6

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.3390/antiox12051030

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