New insights into tailoring physicochemical and techno-functional properties of plant proteins using conventional and emerging technologies

被引:0
作者
Atul Dhiman
Kavita Thakur
Vijaya Parmar
Savita Sharma
Rajan Sharma
Gurkirat Kaur
Baljit Singh
Rajat Suhag
机构
[1] Punjab Agricultural University,Department of Food Science and Technology, College of Agriculture
[2] Punjab Agricultural University,Electron Microscopy and Nanoscience Laboratory
[3] Free University of Bozen-Bolzano,Faculty of Science and Technology
[4] Dr. Y S Parmar University of Horticulture and Forestry,Department of Food Science and Technology
来源
Journal of Food Measurement and Characterization | 2023年 / 17卷
关键词
Antioxidant; Antidiabetic; Microwave; Irradiation; Cold plasma;
D O I
暂无
中图分类号
学科分类号
摘要
In recent years, there is a huge growth in the popularity of plant-based proteins due to their health-promoting effects, being environment friendly, overcoming malnutrition and sustainability challenges. Cereals, pseudo cereals, oilseeds, legumes and nuts are the major sources of plant proteins and they exhibit several health-promoting effects like cholesterol-lowering, antimicrobial, antioxidant, antidiabetic and antitumor. In comparison to animal proteins, they have not been explored as key ingredients due to limitations in their functional properties like solubility, gelation, water holding capacity (WHC), emulsifying and foaming properties. These techno-functional properties play an important role in the development of plant-based food products such as beverages, bakery and meat analogues. Also, the digestibility of plant-based proteins is lower than animal proteins due to the presence of various antinutritional factors (ANFs). Utilizing novel and emerging processing technologies like high-pressure processing, microfluidization, electrospraying, pulsed electric field, cold plasma technology and ultrasounds for processing plant proteins can considerably enhance the quality, functionality and digestibility of protein isolates, concentrates and hydrolysates. Modifications brought by these techniques increase the application of plant proteins as an encapsulating agent, emulsifier, texturizer, film former and foam stabilizer. This review provides an overview of different processing techniques employed to improve their physicochemical, rheological, structural, nutritional and techno-functional properties and to increase their application as a functional ingredient.
引用
收藏
页码:3845 / 3873
页数:28
相关论文
共 710 条
[51]  
Thakur VS(2010)Evaluation of the hypoglycemic potential of a black bean hydrolyzed protein isolate and its pure peptides using in silico, in vitro and in vivo approaches J. Food Sci. 68 105202-2541
[52]  
Sharanagat K(2021)Antidiabetic potential of protein hydrolysates and peptide fractions from Lima bean ( Food Res. Int. 20 1457-616
[53]  
Kumar MN(2020) L.): an in vitro study Carbohydr. Polym. 101 274-2249
[54]  
Nasrabadi AS(2020)Oral administration of soybean peptide Vglycin normalizes fasting glucose and restores impaired pancreatic function in Type 2 diabetic Wistar rats LWT 70 146-189
[55]  
Doost R(2020)Common bean ( Ultrason. Sonochem. 00 1-165
[56]  
Mezzenga FU(2021) L.) protein-derived peptides increased insulin secretion, inhibited lipid accumulation, increased glucose uptake and reduced the phosphatase and tensin homologue activation in vitro Compr. Rev. Food Sci. Food Saf. 114 443-56
[57]  
Akharume RE(2021)Recent trends in the application of cold plasma for the modification of plant proteins—a review Process Biochem. 11 355-655
[58]  
Aluko AA(2016)Heteroprotein complex formation of bovine lactoferrin and pea protein isolate: a multiscale structural analysis J. Cereal Sci. 153 112495-701
[59]  
Adedeji SMT(2021)Soy protein nano-aggregates with improved functional properties prepared by sequential pH treatment and ultrasonication Food Rev. Int. 87 891-4240
[60]  
Gharibzahedi B(2021)Plant based pickering stabilization of emulsions using soluble flaxseed protein and mucilage nano-assemblies Trends Food Sci. Technol. 178 421-84