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June 1, 2026Journal of Food Science4 citationsOpen Access

Mimicking the Ocean: Critical Challenges in Scaffold Design and Tissue Texturization for Cell‐Cultured Seafood

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MÖMustafa ÖzEÜEnes Üstüner

Key Points

  • This review aims to address the challenges in replicating the texture of native fish muscle using innovative biomaterials and fabrication technologies.
  • Evaluated various marine-derived biomaterials like cold-water fish skin collagen and algal polysaccharides.
  • Analyzed advanced fabrication technologies such as electrospinning, cryo-templating, and 3D bioprinting for myotome mimicry.
  • Discussed the integration of marine protein hydrolysates for enhancing sensory characteristics and the shift towards enzymatic crosslinking methods.
  • Marine-derived biomaterials showed superior capacity for meeting the metabolic and thermal needs of fish cells.
  • Successful micro-scale alignment achieved with advanced fabrication technologies, though scalability remains a challenge.
  • Enhanced umami intensity and mouthfeel were validated through electronic sensory analytics, indicating potential for improved consumer acceptance.

Abstract

ABSTRACT Cellular aquaculture offers a sustainable solution to global seafood demand, yet the production of high‐value, whole‐cut fillets is hindered by the “texture gap,” the inability to replicate the complex, anisotropic architecture of native fish muscle and its collagenous myosepta. This critical review addresses this challenge by evaluating the necessary paradigm shift from reductionist mammalian‐centric tissue engineering to marine‐biomimetic scaffolding strategies. We systematically analyze the efficacy of marine‐derived biomaterials, such as cold‐water fish skin collagen, sponge chitin, and algal polysaccharides, demonstrating their superior capacity to meet the distinct metabolic and thermal requirements of piscine cells. Our analysis reveals that advanced fabrication technologies, including electrospinning, cryo‐templating, and 3D bioprinting, successfully achieve the micro‐scale alignment necessary for myotome mimicry, though macroscopic scalability remains a current industrial bottleneck. Furthermore, we establish that structural fidelity must be coupled with sensoric integration; incorporating marine protein hydrolysates and lipid co‐cultures significantly enhances umami intensity and authentic mouthfeel, as validated by electronic sensory analytics. To translate these advancements into commercial viability, the cellular seafood industry must transition from chemical crosslinking to food‐grade enzymatic alternatives. By integrating circular bioeconomy principles specifically, valorizing seafood processing waste to secure affordable scaffold materials this review provides a strategic roadmap for scaling structurally accurate, sensorically authentic, and economically competitive cell‐cultured seafood products.

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Cite This Study

Öz et al. (2026) studied this question.

synapsesocial.com/papers/6a1d226d02fbce91306382f1https://doi.org/10.1111/1750-3841.71163
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