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挤压植物蛋白二维支架结构支持成肌细胞生长,有望应用于培养肉。

Extruded plant protein two-dimensional scaffold structures support myoblast cell growth for potential applications in cultured meat.

机构信息

School of Food Science, Washington State University, Pullman, WA 99164-6376, USA.

Department of Chemical & Biological Engineering, University of Idaho, 875 Perimeter Dr. MS 0904, Moscow, ID 83844, USA.

出版信息

Food Res Int. 2024 Nov;195:114981. doi: 10.1016/j.foodres.2024.114981. Epub 2024 Aug 28.

Abstract

Cultured meat has been proposed as a promising alternative to conventional meat products. Five different plant protein blends made from soy (from two different manufacturers), wheat, mung bean, and faba bean, were extruded to form low-moisture meat analogs (LMMA) and were used to assess LMMA scaffold potential for cultured meat application. Extruded LMMAs were characterized using scanning electron microscopy, water-holding capacity, total soluble matter, and mechanical properties. Two-dimensional LMMA scaffolds were seeded with C2C12 skeletal myoblast cells and cultured for 14 days, and cell attachment and morphology were evaluated. All five extrudates exhibited directionality of their fibrous protein structures but to varying degrees. Soy, wheat, mung bean, and faba bean-based LMMA scaffolds initially supported myoblast cell growth. However, after 14 days of culture, the extruded wheat LMMA exhibited superior myoblast cell growth. This may be attributed to the highly aligned fibrous structure of the extruded wheat LMMA as well as its elastic modulus, which closely approximated that of native skeletal muscle. Overall, two-dimensional structures of the extruded plant proteins support cell growth and advance the development of cultured meat.

摘要

培养肉被提议作为传统肉类产品的一种有前途的替代品。五种不同的植物蛋白混合物由大豆(来自两个不同的制造商)、小麦、绿豆和蚕豆制成,经过挤压形成低水分肉模拟物(LMMA),并用于评估 LMMA 支架在培养肉应用中的潜力。使用扫描电子显微镜、持水力、总可溶性物质和机械性能对挤压的 LMMA 进行了表征。将二维 LMMA 支架接种 C2C12 骨骼肌成肌细胞并培养 14 天,评估细胞附着和形态。所有五种挤压物都表现出纤维状蛋白质结构的方向性,但程度不同。基于大豆、小麦、绿豆和蚕豆的 LMMA 支架最初支持成肌细胞的生长。然而,在培养 14 天后,挤压的小麦 LMMA 表现出优异的成肌细胞生长。这可能归因于挤压的小麦 LMMA 的高度取向纤维结构以及其弹性模量,该模量非常接近天然骨骼肌的弹性模量。总体而言,挤压植物蛋白的二维结构支持细胞生长,推进了培养肉的发展。

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