Towards Understanding the Role of Microstructured Edible Scaffolds for Cultured Meat Production

Bezjak; D.; Orellana; N.; Valdés; J.H.; Corrales; T.; Acevedo; C.A.

Keywords: Cultured meat; Edible scaffolds; Microstructuring technologies; Muscle cells

Abstract

Cultured meat is an emerging technology to produce edible muscles using animal cells, scaffolds, and bioreactors, avoiding the slaughter of farmed animals. Since muscle cells tend to grow disorganized, the use of microstructuring technologies to produce scaffolds is essential to align functional muscle structures. In this work, an edible scaffold (film) with parallel microchannels formulated with marine biopolymers was made. The effect of parallel microchannels on the behavior of muscle cells and gene expression involved in fusion and myogenesis were assessed. Our results show that the array of microchannels allow the formation of parallel, elongated, and multinucleated structures, like a muscle bundle. In addition, the glycolytic metabolism increases when cells grew on the microchannels. Significant correlations between gene expressions of Myomaker and MyoD, between Myomixer and Myosin heavy chain, and between Myogenin and Myosin heavy chain were found and associated with the microstructure effect. An inferred model of myogenic progression was proposed and validated identifying proteins by immunofluorescence on cells seeded on the microstructured film-scaffolds. This model allows to understand the role of myogenic markers in the production of cultured meat using microstructured scaffolds. © The Author(s), under exclusive licence to Springer Science+Business Media, LLC, part of Springer Nature 2023.

Más información

Título según WOS: Towards Understanding the Role of Microstructured Edible Scaffolds for Cultured Meat Production
Título según SCOPUS: Towards Understanding the Role of Microstructured Edible Scaffolds for Cultured Meat Production
Título de la Revista: Food and Bioprocess Technology
Volumen: 17
Número: 3
Editorial: Springer
Fecha de publicación: 2024
Página de inicio: 767
Página final: 779
Idioma: English
DOI:

10.1007/s11947-023-03166-2

Notas: ISI, SCOPUS