Microbial Astaxanthin Production from Agro-Industrial Wastes—Raw Materials, Processes, and Quality

Author:

de Carvalho Júlio CesarORCID,Goyzueta-Mamani Luis DanielORCID,Molina-Aulestia Denisse Tatiana,Magalhães Júnior Antônio Irineudo,Iwamoto HissashiORCID,Ambati RangaRao,Ravishankar Gokare A.ORCID,Soccol Carlos RicardoORCID

Abstract

The antioxidant and food pigment astaxanthin (AX) can be produced by several microorganisms, in auto- or heterotrophic conditions. Regardless of the organism, AX concentrations in culture media are low, typically about 10–40 mg/L. Therefore, large amounts of nutrients and water are necessary to prepare culture media. Using low-cost substrates such as agro-industrial solid and liquid wastes is desirable for cost reduction. This opens up the opportunity of coupling AX production to other existing processes, taking advantage of available residues or co-products in a biorefinery approach. Indeed, the scientific literature shows that many attempts are being made to produce AX from residues. However, this brings challenges regarding raw material variability, process conditions, product titers, and downstream processing. This text overviews nutritional requirements and suitable culture media for producing AX-rich biomass: production and productivity ranges, residue pretreatment, and how the selected microorganism and culture media combinations affect further biomass production and quality. State-of-the-art technology indicates that, while H. pluvialis will remain an important source of AX, X. dendrorhous may be used in novel processes using residues.

Funder

National Council for Scientific and Technological Development

Publisher

MDPI AG

Subject

Plant Science,Biochemistry, Genetics and Molecular Biology (miscellaneous),Food Science

Reference69 articles.

1. Astaxanthin: A super antioxidant from microalgae and its therapeutic potential

2. Antioxidant Activities of Astaxanthin and Related Carotenoids

3. Multi-radical (ORACMR5) antioxidant capacity of selected berries and effects of food processing

4. Astaxanthin Market Size by Source (Synthetic, Natural), by Application (Dietary Supplement, Personal Care, Pharmaceuticals, Food & Beverages, Animal Feed {Aquaculture, Livestock, Pets}) Industry Outlook Report, Regional Analysis, Application Potential, Price Trends, Competitive Market Share & Forecast, 2019–2026;Ahuja,2019

5. Astaxanthin Market Share, Size (2021–2026) MarketsandMarkets https://www.marketsandmarkets.com/Market-Reports/astaxanthin-market-162119410.html?gclid=Cj0KCQjwuuKXBhCRARIsAC-gM0gvdQQSiFavi31XlrEtigZRktVejiXvdSvI7txY42Wxdv-571UGEgMaAnjGEALw_wcB

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