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Development of spirulina for the manufacture and oral delivery of protein therapeutics.


ABSTRACT: The use of the edible photosynthetic cyanobacterium Arthrospira platensis (spirulina) as a biomanufacturing platform has been limited by a lack of genetic tools. Here we report genetic engineering methods for stable, high-level expression of bioactive proteins in spirulina, including large-scale, indoor cultivation and downstream processing methods. Following targeted integration of exogenous genes into the spirulina chromosome (chr), encoded protein biopharmaceuticals can represent as much as 15% of total biomass, require no purification before oral delivery and are stable without refrigeration and protected during gastric transit when encapsulated within dry spirulina. Oral delivery of a spirulina-expressed antibody targeting campylobacter-a major cause of infant mortality in the developing world-prevents disease in mice, and a phase 1 clinical trial demonstrated safety for human administration. Spirulina provides an advantageous system for the manufacture of orally delivered therapeutic proteins by combining the safety of a food-based production host with the accessible genetic manipulation and high productivity of microbial platforms.

SUBMITTER: Jester BW 

PROVIDER: S-EPMC9200632 | biostudies-literature | 2022 Jun

REPOSITORIES: biostudies-literature

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Development of spirulina for the manufacture and oral delivery of protein therapeutics.

Jester Benjamin W BW   Zhao Hui H   Gewe Mesfin M   Adame Thomas T   Perruzza Lisa L   Bolick David T DT   Agosti Jan J   Khuong Nhi N   Kuestner Rolf R   Gamble Caitlin C   Cruickshank Kendra K   Ferrara Jeremy J   Lim Rachelle R   Paddock Troy T   Brady Colin C   Ertel Stacey S   Zhang Miaohua M   Pollock Alex A   Lee Jamie J   Xiong Jian J   Tasch Michael M   Saveria Tracy T   Doughty David D   Marshall Jacob J   Carrieri Damian D   Goetsch Lauren L   Dang Jason J   Sanjaya Nathaniel N   Fletcher David D   Martinez Anissa A   Kadis Bryce B   Sigmar Kristjan K   Afreen Esha E   Nguyen Tammy T   Randolph Amanda A   Taber Alexandria A   Krzeszowski Ashley A   Robinett Brittney B   Volkin David B DB   Grassi Fabio F   Guerrant Richard R   Takeuchi Ryo R   Finrow Brian B   Behnke Craig C   Roberts James J  

Nature biotechnology 20220321 6


The use of the edible photosynthetic cyanobacterium Arthrospira platensis (spirulina) as a biomanufacturing platform has been limited by a lack of genetic tools. Here we report genetic engineering methods for stable, high-level expression of bioactive proteins in spirulina, including large-scale, indoor cultivation and downstream processing methods. Following targeted integration of exogenous genes into the spirulina chromosome (chr), encoded protein biopharmaceuticals can represent as much as 1  ...[more]

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