Meat the Fat: From High Lipid Content to Nutritional Enhancement to Reconstruct Wagyu Fat with Tunable Rheology and Organoleptic Fidelity for Cultivated Meat
Louis, F.; Cizeron, A.; Furuhashi, M.; Takeuchi, S.; Nojima, T.; Kitano, S.; Matsusaki, M.
Show abstract
Cultivated meat holds promise as a sustainable and ethical alternative to conventional meat, but reproducing the rich flavor, texture, and lipid composition of premium beef, such as Wagyu, remains a major hurdle. In this study, we redefine bovine adipogenesis by systematically optimizing edible biomaterials, fatty acid delivery systems, and culture conditions to engineer high-fat cultivated tissues with authentic sensory properties. Among various candidates, 1% alginate emerged as the optimal scaffold, providing mechanical softness compatible with adipogenic differentiation and mimicking the rheological properties of native fat. Supplementation with oleic acid complexed to edible albumins, especially whey protein (WP), significantly enhanced lipid accumulation and monounsaturated fatty acid content, particularly oleic acid, which reached up to 80.6% of total fatty acids. Engineered fat tissues displayed soft, spreadable textures and organoleptic characteristics consistent with high-quality beef fat. Fatty acid profiling revealed a bovine-like omega-6 signature, dominated by linoleic, arachidonic, and dihomo-{gamma}-linolenic acids, alongside detectable omega-3 subtypes including alpha-linolenic acid and trace levels of EPA and DHA. This composition not only validates the physiological relevance of the engineered fat, but also highlights its potential to deliver bioactive lipids rarely found in terrestrial animal products. Additionally, the WP-oleic acid system supported robust adipogenesis even under lower serum conditions. These findings establish a food-grade, tunable platform for producing physiologically and nutritionally enhanced fat tissues, advancing the realism, functionality, and health potential of next-generation cultivated meat.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Injectable prevascularized mature adipose tissues (iPAT) to achieve long-term survival in soft tissues regeneration 95%
- Controlled delivery of immunomodulatory factors for mineralized tissue formation in an inflammatory microenvironment 94%
- Adipose-derived stromal cells preserve pancreatic islet function in a transplantable 3D bioprinted scaffold 94%
Similar papers in this journal
- Aspiration-assisted freeform bioprinting of mesenchymal stem cell spheroids within alginate microgels 95%
- Bioprinting of Human Primary and iPSC-derived Islets with Retained and Comparable Functionality 94%
- Biofabrication Of An Ovine Intervertebral Disc Model By Combining A Polycaprolactone Frame With A Bioprinted Alginate Hydrogel 94%
Similar papers in this journal
- 3D Bioprinting of Graphene Oxide-Incorporated Cell-laden Bone Mimicking Scaffolds for Promoting Scaffold Fidelity, Osteogenic Differentiation and Mineralization 94%
- Effects of Controlled Dual Growth Factor Delivery on Bone Regeneration Following Composite Bone-Muscle Injury 94%
- Sustained ROS Scavenging and Pericellular Oxygenation by Lignin Composites Rescue HIF-1α and VEGF Levels to Improve Diabetic Wound Neovascularization and Healing 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.