2024
DOI: 10.1038/s41538-024-00263-0
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Edible mycelium as proliferation and differentiation support for anchorage-dependent animal cells in cultivated meat production

Minami Ogawa,
Alex S. Kermani,
Mayrene J. Huynh
et al.

Abstract: Cultivated meat production requires bioprocess optimization to achieve cell densities that are multiple orders of magnitude higher compared to conventional cell culture techniques. These processes must maximize resource efficiency and cost-effectiveness by attaining high cell growth productivity per unit of medium. Microcarriers, or carriers, are compatible with large-scale bioreactor use, and offer a large surface-area-to-volume ratio for the adhesion and proliferation of anchorage-dependent animal cells. An … Show more

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Cited by 6 publications
(1 citation statement)
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“…To overcome these limitations, various cell culture platforms that can be adopted have been explored, including hollow fiber bioreactors, microcarriers, rocker bioreactors, and roller bioreactors, each offering unique advantages in terms of surface area to volume ratios, nutrient supply, and waste removal ( Fig. 5 ) [ 212 , 213 ]. Hollow fiber bioreactors are particularly noteworthy for their cylindrical compartments packed with porous fibers that allow for nutrient exchange and waste removal, simulating the capillary structure of blood vessels.…”
Section: Scalability Of Cd-ecmsmentioning
confidence: 99%
“…To overcome these limitations, various cell culture platforms that can be adopted have been explored, including hollow fiber bioreactors, microcarriers, rocker bioreactors, and roller bioreactors, each offering unique advantages in terms of surface area to volume ratios, nutrient supply, and waste removal ( Fig. 5 ) [ 212 , 213 ]. Hollow fiber bioreactors are particularly noteworthy for their cylindrical compartments packed with porous fibers that allow for nutrient exchange and waste removal, simulating the capillary structure of blood vessels.…”
Section: Scalability Of Cd-ecmsmentioning
confidence: 99%