School of Engineering, Swinburne University of Technology, Hawthorne, Victoria 3122, Australia.
Centre for Academic and Research Excellence, CSIR-Central Leather Research Institute, Sardar Patel Road, Adyar, Chennai 600 020, India.
Int J Biol Macromol. 2024 Oct;278(Pt 1):134374. doi: 10.1016/j.ijbiomac.2024.134374. Epub 2024 Aug 3.
The consumption of animal products has witnessed a significant increase over the years, leading to a growing need for industries to adopt strict waste control measures to mitigate environmental impacts. The disposal of animal waste in landfill can result in diverse and potentially hazardous decomposition by-products. Animal by-products, derived from meat, poultry, seafood and fish industries, offer a substantial raw material source for collagen and gelatin production due to their high protein content. Collagen, being a major protein component of animal tissues, represents an abundant resource that finds application in various chemical and material industries. The demand for collagen-based products continues to grow, yet the availability of primary material remains limited and insufficient to meet projected needs. Consequently, repurposing waste materials that contain collagen provides an opportunity to meet this need while at the same time minimizing the amount of waste that is dumped. This review examines the potential to extract value from the collagen content present in animal-derived waste and by-products. It provides a systematic evaluation of different species groups and discusses various approaches for processing and fabricating repurposed collagen. This review specifically focuses on collagen-based research, encompassing an examination of its physical and chemical properties, as well as the potential for chemical modifications. We have detailed how the research and knowledge built on collagen structure and function will drive the new initiatives that will lead to the development of new products and opportunities in the future. Additionally, it highlights emerging approaches for extracting high-quality protein from waste and discusses efforts to fabricate collagen-based materials leading to the development of new and original products within the chemical, biomedical and physical science-based industries.
多年来,动物产品的消费显著增加,导致各行业越来越需要采取严格的废物控制措施来减轻环境影响。将动物废物倾倒入垃圾填埋场可能会导致各种潜在危险的分解副产物。动物副产品来自肉类、家禽、海鲜和鱼类行业,由于其高蛋白含量,是胶原蛋白和明胶生产的重要原料来源。胶原蛋白是动物组织的主要蛋白质成分,是一种丰富的资源,在各种化学和材料行业中有广泛的应用。对基于胶原蛋白的产品的需求持续增长,但主要原材料的供应仍然有限,不足以满足预期需求。因此,利用含有胶原蛋白的废物材料提供了一个满足这一需求的机会,同时最大限度地减少了倾倒的废物量。本综述探讨了从动物源性废物和副产品中提取胶原蛋白价值的潜力。它对不同物种群体进行了系统评估,并讨论了各种用于加工和制造再利用胶原蛋白的方法。本综述特别关注基于胶原蛋白的研究,包括对其物理和化学性质以及化学修饰的潜力进行研究。我们详细介绍了如何基于胶原蛋白的结构和功能进行研究和知识构建,将推动新的举措,为未来的新产品和机会的发展奠定基础。此外,它还强调了从废物中提取高质量蛋白质的新兴方法,并讨论了制造基于胶原蛋白的材料的努力,从而为化学、生物医学和物理科学为基础的行业开发新的和原始的产品。