Mhaske Pranita, Farahnaky Asgar, Majzoobi Mahsa
AFB International, 3 Research Park Drive, St. Charles, MO 63304, USA.
Biosciences and Food Technology, RMIT University, Bundoora West Campus, Plenty Road, Melbourne, VIC 3083, Australia.
Foods. 2024 Aug 8;13(16):2493. doi: 10.3390/foods13162493.
The surge in the global demand for plant-based proteins has catapulted pulse protein into the spotlight. To ensure economic viability and sustainable production, it is crucial to utilize pulse starch, a by-product of plant protein fractionation. Despite the increasing interest in pulse starches, there is a notable gap in knowledge regarding their modifications and applications compared to cereal and tuber starches. Non-thermal techniques such as electron beam radiation, static high pressure, microfluidization, and cold plasma are emerging as innovative methods for starch modification. These techniques offer significant advantages, including enhanced safety, environmental sustainability, and the development of unique functional properties unattainable through conventional methods. However, challenges such as equipment availability, high costs, and energy consumption hinder their widespread adoption. In light of the growing emphasis on "clean and green labelling" and effective "waste management" in food production, evaluating non-thermal techniques for pulse starch modification is critical. This review aims to thoroughly assess these non-thermal techniques and their combinations, offering valuable insights for researchers and the food industry. By maximizing the potential of pulse starches in innovative food applications, it provides a comprehensive guide for effective non-thermal methods that add value and align with sustainable practices.
全球对植物性蛋白质需求的激增使豆类蛋白备受关注。为确保经济可行性和可持续生产,利用植物蛋白分级分离的副产品——豆类淀粉至关重要。尽管人们对豆类淀粉的兴趣日益浓厚,但与谷物和块茎淀粉相比,关于其改性和应用的知识仍存在显著差距。电子束辐射、静态高压、微流化和冷等离子体等非热技术正成为淀粉改性的创新方法。这些技术具有显著优势,包括提高安全性、环境可持续性以及开发传统方法无法实现的独特功能特性。然而,设备可用性、高成本和能源消耗等挑战阻碍了它们的广泛应用。鉴于食品生产中对“清洁和绿色标签”以及有效“废物管理”的日益重视,评估用于豆类淀粉改性的非热技术至关重要。本综述旨在全面评估这些非热技术及其组合,为研究人员和食品行业提供有价值的见解。通过在创新食品应用中最大限度地发挥豆类淀粉的潜力,它为有效且符合可持续实践的非热方法提供了全面指南,这些方法能增加价值。