Potential Development of Sustainable 3D-Printed Meat Analogues: A Review

被引:111
作者
Ramachandraiah, Karna [1 ]
机构
[1] Sejong Univ, Dept Food Sci & Biotechnol, Coll Life Sci, Seoul 05006, South Korea
关键词
3D printing; meat analogs; sustainability; environmental impact;
D O I
10.3390/su13020938
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
To mitigate the threat of climate change driven by livestock meat production, a multifaceted approach that incorporates dietary changes, innovative product development, advances in technologies, and reductions in food wastes/losses is proposed. The emerging technology of 3D printing (3DP) has been recognized for its unprecedented capacity to fabricate food products with intricate structures and reduced material cost and energy. For sustainable 3DP of meat substitutes, the possible materials discussed are derived from in vitro cell culture, meat byproducts/waste, insects, and plants. These material-based approaches are analyzed from their potential environmental effects, technological viability, and consumer acceptance standpoints. Although skeletal muscles and skin are bioprinted for medical applications, they could be utilized as meat without the additional printing of vascular networks. The impediments to bioprinting of meat are lack of food-safe substrates/materials, cost-effectiveness, and scalability. The sustainability of bioprinting could be enhanced by the utilization of generic/universal components or scaffolds and optimization of cell sourcing and fabrication logistics. Despite the availability of several plants and their byproducts and some start-up ventures attempting to fabricate food products, 3D printing of meat analogues remains a challenge. From various insects, powders, proteins (soluble/insoluble), lipids, and fibers are produced, which-in different combinations and at optimal concentrations-can potentially result in superior meat substitutes. Valuable materials derived from meat byproducts/wastes using low energy methods could reduce waste production and offset some greenhouse gas (GHG) emissions. Apart from printer innovations (speed, precision, and productivity), rational structure of supply chain and optimization of material flow and logistic costs can improve the sustainability of 3D printing. Irrespective of the materials used, perception-related challenges exist for 3D-printed food products. Consumer acceptance could be a significant challenge that could hinder the success of 3D-printed meat analogs.
引用
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页码:1 / 20
页数:20
相关论文
共 107 条
[11]   Nonmeat Protein Alternatives as Meat Extenders and Meat Analogs [J].
Asgar, M. A. ;
Fazilah, A. ;
Huda, Nurul ;
Bhat, Rajeev ;
Karim, A. A. .
COMPREHENSIVE REVIEWS IN FOOD SCIENCE AND FOOD SAFETY, 2010, 9 (05) :513-529
[12]   Toward the design of insect-based meat analogue: The role of calcium and temperature in coagulation behavior of Alphitobius diaperinus proteins [J].
Azzollini, D. ;
Wibisaphira, T. ;
Lakemond, C. M. M. ;
Fogliano, V .
LWT-FOOD SCIENCE AND TECHNOLOGY, 2019, 100 :75-82
[13]  
Azzollini D., POTENTIAL CHALLENGES
[14]   An investigation of the formulation and nutritional composition of modern meat analogue products [J].
Bohrer, Benjamin M. .
FOOD SCIENCE AND HUMAN WELLNESS, 2019, 8 (04) :320-329
[15]  
Bukkens SGF, 2004, ECOLOGICAL IMPLICATIONS OF MINLIVESTOCK: POTENTIAL OF INSECTS RODENTS FROGS AND SNAILS, P545
[16]   Scalable 3D Printed Molds for Human Tissue Engineered Skeletal Muscle [J].
Capel, Andrew J. ;
Rimington, Rowan P. ;
Fleming, Jacob W. ;
Player, Darren J. ;
Baker, Luke A. ;
Turner, Mark C. ;
Jones, Julia M. ;
Martin, Neil R. W. ;
Ferguson, Richard A. ;
Mudera, Vivek C. ;
Lewis, Mark P. .
FRONTIERS IN BIOENGINEERING AND BIOTECHNOLOGY, 2019, 7 (FEB)
[17]  
Caporizzi R, 2019, FUNDAMENTALS OF 3D FOOD PRINTING AND APPLICATIONS, P93, DOI 10.1016/B978-0-12-814564-7.00004-3
[18]   Feasibility Evaluation and Optimization of a Smart Manufacturing System Based on 3D Printing: A Review [J].
Chen, Toly ;
Lin, Yu-Cheng .
INTERNATIONAL JOURNAL OF INTELLIGENT SYSTEMS, 2017, 32 (04) :394-413
[19]   A 3D cell printed muscle construct with tissue-derived bioink for the treatment of volumetric muscle loss [J].
Choi, Yeong-Jin ;
Jun, Young-Joon ;
Kim, Dong Yeon ;
Yi, Hee-Gyeong ;
Chae, Su-Hun ;
Kang, Junsu ;
Lee, Juyong ;
Gao, Ge ;
Kong, Jeong-Sik ;
Jang, Jinah ;
Chung, Wan Kyun ;
Rhie, Jong-Won ;
Cho, Dong-Woo .
BIOMATERIALS, 2019, 206 :160-169
[20]   The Business of Cultured Meat [J].
Choudhury, Deepak ;
Tseng, Ting Wei ;
Swartz, Elliot .
TRENDS IN BIOTECHNOLOGY, 2020, 38 (06) :573-577