Secretion-based production of prolyl-hydroxylated human type III collagen in scalable Physcomitrella photobioreactors
Lennard L. Bohlender, Juliana Parsons, Antonia Mitgau, Sebastian N. W. Hoernstein, Giovanna Grigolon, Bernhard Henes, Eva L. Decker, Ralf Reski

TL;DR
Researchers developed a vegan, sustainable way to produce human collagen using moss bioreactors, avoiding animal sources and achieving high-quality results.
Contribution
First scalable moss-based production of prolyl-hydroxylated human collagen with industrial applicability.
Findings
Moss-based production achieved nearly 1 mg/L of collagen polypeptide in 5 L photobioreactors.
Prolyl-hydroxylation was detected at 23 sites, confirming biomimetic quality.
Optimized culture conditions enabled robust and scalable production.
Abstract
Scalable moss bioreactors enable the production of high-quality recombinant prolyl-hydroxylated human collagen without heterologous P4H expression, offering a sustainable and vegan alternative to conventional collagens derived from animals. Collagens are structural proteins of the extracellular matrix essential for skin elasticity and integrity. They are widely used in dietary supplements and cosmetics. Conventional collagens of animal origin raise concerns regarding ethics, safety, and sustainability. As a vegan alternative, we report on the production of a 30 kDa prolyl-hydroxylated human collagen polypeptide from Physcomitrella moss plants. For secretion-based production and formulation compatibility, a hydrophilic region encompassing 334 amino acids from human type III collagen was selected, which includes four protein domains involved in cell adhesion, collagen binding, integrin…
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Taxonomy
TopicsCollagen: Extraction and Characterization · Skin Protection and Aging · Wound Healing and Treatments
