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Safety Assessment of 3S, 3’S Astaxanthin Derived from Metabolically Engineered K. marxianus

Previous reviews have already explored the safety and bioavailability of astaxanthin, as well as its beneficial effects on human body. The great commercial potential in a variety of industries, such as the pharmaceutical and health supplement industries, has led to a skyrocketing demand for natural...

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Autores principales: Samuel, Sabrina Yeo, Wang, Hui-Min David, Huang, Meng-Yuan, Cheng, Yu-Shen, Chen, Juine-Ruey, Li, Wen-Hsiung, Chang, Jui-Jen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9687027/
https://www.ncbi.nlm.nih.gov/pubmed/36421474
http://dx.doi.org/10.3390/antiox11112288
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author Samuel, Sabrina Yeo
Wang, Hui-Min David
Huang, Meng-Yuan
Cheng, Yu-Shen
Chen, Juine-Ruey
Li, Wen-Hsiung
Chang, Jui-Jen
author_facet Samuel, Sabrina Yeo
Wang, Hui-Min David
Huang, Meng-Yuan
Cheng, Yu-Shen
Chen, Juine-Ruey
Li, Wen-Hsiung
Chang, Jui-Jen
author_sort Samuel, Sabrina Yeo
collection PubMed
description Previous reviews have already explored the safety and bioavailability of astaxanthin, as well as its beneficial effects on human body. The great commercial potential in a variety of industries, such as the pharmaceutical and health supplement industries, has led to a skyrocketing demand for natural astaxanthin. In this study, we have successfully optimized the astaxanthin yield up to 12.8 mg/g DCW in a probiotic yeast and purity to 97%. We also verified that it is the desired free-form 3S, 3’S configurational stereoisomer by NMR and FITR that can significantly increase the bioavailability of astaxanthin. In addition, we have proven that our extracted astaxanthin crystals have higher antioxidant capabilities compared with natural esterified astaxanthin from H. pluvialis. We also screened for potential adverse effects of the pure astaxanthin crystals extracted from the engineered probiotic yeast by dosing SD rats with 6, 12, and 24 mg/kg/day of astaxanthin crystals via oral gavages for a 13-week period and have found no significant biological differences between the control and treatment groups in rats of both genders, further confirming the safety of astaxanthin crystals. This study demonstrates that developing metabolically engineered microorganisms provides a safe and feasible approach for the bio-based production of many beneficial compounds, including astaxanthin.
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spelling pubmed-96870272022-11-25 Safety Assessment of 3S, 3’S Astaxanthin Derived from Metabolically Engineered K. marxianus Samuel, Sabrina Yeo Wang, Hui-Min David Huang, Meng-Yuan Cheng, Yu-Shen Chen, Juine-Ruey Li, Wen-Hsiung Chang, Jui-Jen Antioxidants (Basel) Article Previous reviews have already explored the safety and bioavailability of astaxanthin, as well as its beneficial effects on human body. The great commercial potential in a variety of industries, such as the pharmaceutical and health supplement industries, has led to a skyrocketing demand for natural astaxanthin. In this study, we have successfully optimized the astaxanthin yield up to 12.8 mg/g DCW in a probiotic yeast and purity to 97%. We also verified that it is the desired free-form 3S, 3’S configurational stereoisomer by NMR and FITR that can significantly increase the bioavailability of astaxanthin. In addition, we have proven that our extracted astaxanthin crystals have higher antioxidant capabilities compared with natural esterified astaxanthin from H. pluvialis. We also screened for potential adverse effects of the pure astaxanthin crystals extracted from the engineered probiotic yeast by dosing SD rats with 6, 12, and 24 mg/kg/day of astaxanthin crystals via oral gavages for a 13-week period and have found no significant biological differences between the control and treatment groups in rats of both genders, further confirming the safety of astaxanthin crystals. This study demonstrates that developing metabolically engineered microorganisms provides a safe and feasible approach for the bio-based production of many beneficial compounds, including astaxanthin. MDPI 2022-11-18 /pmc/articles/PMC9687027/ /pubmed/36421474 http://dx.doi.org/10.3390/antiox11112288 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Samuel, Sabrina Yeo
Wang, Hui-Min David
Huang, Meng-Yuan
Cheng, Yu-Shen
Chen, Juine-Ruey
Li, Wen-Hsiung
Chang, Jui-Jen
Safety Assessment of 3S, 3’S Astaxanthin Derived from Metabolically Engineered K. marxianus
title Safety Assessment of 3S, 3’S Astaxanthin Derived from Metabolically Engineered K. marxianus
title_full Safety Assessment of 3S, 3’S Astaxanthin Derived from Metabolically Engineered K. marxianus
title_fullStr Safety Assessment of 3S, 3’S Astaxanthin Derived from Metabolically Engineered K. marxianus
title_full_unstemmed Safety Assessment of 3S, 3’S Astaxanthin Derived from Metabolically Engineered K. marxianus
title_short Safety Assessment of 3S, 3’S Astaxanthin Derived from Metabolically Engineered K. marxianus
title_sort safety assessment of 3s, 3’s astaxanthin derived from metabolically engineered k. marxianus
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9687027/
https://www.ncbi.nlm.nih.gov/pubmed/36421474
http://dx.doi.org/10.3390/antiox11112288
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