Enriched Synthesis of Magnetosomes by Expanding the <i>Magnetospirillum magneticum</i> AMB-1 Culture at Optimal Iron Concentration

The <i>Magnetospirillum magneticum</i> AMB-1 species is one of the most widely used magnetotactic bacterial strains for producing magnetosomes under laboratory conditions. Nevertheless, there exist several challenges in expanding and purifying the AMB-1 culture due to the restricted cult...

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Main Authors: Yazhen Hong, Ranjith Kumar Kankala, Ruqi Yu, Huaqing Liu, Yuangang Liu
Format: Article
Language:English
Published: MDPI AG 2021-08-01
Series:Magnetochemistry
Subjects:
Online Access:https://www.mdpi.com/2312-7481/7/8/115
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spelling doaj-ea5c2da5a669464aafb02ed6b34f101c2021-08-26T13:59:46ZengMDPI AGMagnetochemistry2312-74812021-08-01711511510.3390/magnetochemistry7080115Enriched Synthesis of Magnetosomes by Expanding the <i>Magnetospirillum magneticum</i> AMB-1 Culture at Optimal Iron ConcentrationYazhen Hong0Ranjith Kumar Kankala1Ruqi Yu2Huaqing Liu3Yuangang Liu4College of Chemical Engineering, Huaqiao University, Xiamen 361021, ChinaCollege of Chemical Engineering, Huaqiao University, Xiamen 361021, ChinaCollege of Chemical Engineering, Huaqiao University, Xiamen 361021, ChinaCollege of Chemical Engineering, Huaqiao University, Xiamen 361021, ChinaCollege of Chemical Engineering, Huaqiao University, Xiamen 361021, ChinaThe <i>Magnetospirillum magneticum</i> AMB-1 species is one of the most widely used magnetotactic bacterial strains for producing magnetosomes under laboratory conditions. Nevertheless, there exist several challenges in expanding and purifying the AMB-1 culture due to the restricted culture conditions. In an attempt to enrich the production of magnetosomes, this study reports the utilization of fermenter culture, which substantially promotes the cell densities at different concentrations of iron content. The experimental results confirmed magnetosomes’ high yield (production rate of 21.1 mg L<sup>−1</sup>) at the iron content of 0.2 μmol L<sup>−1</sup>. Moreover, different characterization techniques systematically confirmed the coated lipid membrane, particle size, dispersity, stability, and elemental composition of magnetosomes. Notably, the fermenter culture-based process resulted in highly discrete, dispersed, and stable magnetosomes with an average particle diameter of 50 nm and presented the integrated lipid membrane around the surface. The chemical composition by EDS of magnetosomes represented the presence of various elements, i.e., C, O, Na, P, and Fe, at appropriate proportions. In conclusion, the culture method in our study effectively provides a promising approach towards the culture of the magnetotactic bacterium for the enriched production of magnetosomes.https://www.mdpi.com/2312-7481/7/8/115magnetotactic bacteriumexpanding culturemagnetic materialsmagnetosome characterization
collection DOAJ
language English
format Article
sources DOAJ
author Yazhen Hong
Ranjith Kumar Kankala
Ruqi Yu
Huaqing Liu
Yuangang Liu
spellingShingle Yazhen Hong
Ranjith Kumar Kankala
Ruqi Yu
Huaqing Liu
Yuangang Liu
Enriched Synthesis of Magnetosomes by Expanding the <i>Magnetospirillum magneticum</i> AMB-1 Culture at Optimal Iron Concentration
Magnetochemistry
magnetotactic bacterium
expanding culture
magnetic materials
magnetosome characterization
author_facet Yazhen Hong
Ranjith Kumar Kankala
Ruqi Yu
Huaqing Liu
Yuangang Liu
author_sort Yazhen Hong
title Enriched Synthesis of Magnetosomes by Expanding the <i>Magnetospirillum magneticum</i> AMB-1 Culture at Optimal Iron Concentration
title_short Enriched Synthesis of Magnetosomes by Expanding the <i>Magnetospirillum magneticum</i> AMB-1 Culture at Optimal Iron Concentration
title_full Enriched Synthesis of Magnetosomes by Expanding the <i>Magnetospirillum magneticum</i> AMB-1 Culture at Optimal Iron Concentration
title_fullStr Enriched Synthesis of Magnetosomes by Expanding the <i>Magnetospirillum magneticum</i> AMB-1 Culture at Optimal Iron Concentration
title_full_unstemmed Enriched Synthesis of Magnetosomes by Expanding the <i>Magnetospirillum magneticum</i> AMB-1 Culture at Optimal Iron Concentration
title_sort enriched synthesis of magnetosomes by expanding the <i>magnetospirillum magneticum</i> amb-1 culture at optimal iron concentration
publisher MDPI AG
series Magnetochemistry
issn 2312-7481
publishDate 2021-08-01
description The <i>Magnetospirillum magneticum</i> AMB-1 species is one of the most widely used magnetotactic bacterial strains for producing magnetosomes under laboratory conditions. Nevertheless, there exist several challenges in expanding and purifying the AMB-1 culture due to the restricted culture conditions. In an attempt to enrich the production of magnetosomes, this study reports the utilization of fermenter culture, which substantially promotes the cell densities at different concentrations of iron content. The experimental results confirmed magnetosomes’ high yield (production rate of 21.1 mg L<sup>−1</sup>) at the iron content of 0.2 μmol L<sup>−1</sup>. Moreover, different characterization techniques systematically confirmed the coated lipid membrane, particle size, dispersity, stability, and elemental composition of magnetosomes. Notably, the fermenter culture-based process resulted in highly discrete, dispersed, and stable magnetosomes with an average particle diameter of 50 nm and presented the integrated lipid membrane around the surface. The chemical composition by EDS of magnetosomes represented the presence of various elements, i.e., C, O, Na, P, and Fe, at appropriate proportions. In conclusion, the culture method in our study effectively provides a promising approach towards the culture of the magnetotactic bacterium for the enriched production of magnetosomes.
topic magnetotactic bacterium
expanding culture
magnetic materials
magnetosome characterization
url https://www.mdpi.com/2312-7481/7/8/115
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