Improvement of ultrasound microwave-assisted enzymatic production and high hydrostatic pressure on emulsifying, rheological and interfacial characteristics of sweet potato protein hydrolysates
文献类型: 外文期刊
第一作者: Falade, Ebenezer Ola
作者: Falade, Ebenezer Ola;Mu, Tai-Hua;Zhang, Miao
作者机构:
关键词: Sweet potato protein hydrolysates; Emulsion; Rheology; Interface; High hydrostatic pressure; Ultrasound-microwave-assisted enzymatic hydrolysis
期刊名称:FOOD HYDROCOLLOIDS ( 影响因子:7.053; 五年影响因子:7.077 )
ISSN: 0268-005X
年卷期: 2021 年 117 卷
页码:
收录情况: SCI
摘要: Herein, we investigated effects of ultrasound microwave (UM)-assisted enzymatic hydrolysis and high hydrostatic pressure (HHP, 300, 400 and 500 MPa) on emulsifying, rheological and interfacial characteristics of sweet potato protein hydrolysates (SPPH). UM significantly improved emulsifying properties of SPPH. Emulsion stabilized with SPPH by UM at 400 MPa was the most physically stable with ESI of 43.16% compared with other emulsions, which showed lower particle size (239.25 nm) but higher zeta potential (26.75 mV). HHP increased adsorption and antioxidant activity of SPPH at interfacial layer. Emulsion stabilized with UM-SPPH400MPa presented the highest adsorbed peptides at interface (23.79%) with a high ORAC value of 100.49 ?g TE mL-1, from which diverse peptides with potential antioxidant activities were obtained by LC-MS/MS. Additionally, changes in peptide conformation and position of some specific amino acids were revealed by structure-activity relationship analysis. Therefore, ultrasound-microwave and HHP have great potential in peptides production with enhanced functionality.
分类号:
- 相关文献
作者其他论文 更多>>
-
Characterization and potential mechanism of resistance to double-stranded RNA in willow leaf beetle, Plagiodera versicolora
作者:Liao, Chongyu;Zhang, Jiang;Zhang, Miao;Zhang, Jiang
关键词:RNA pesticides; dsRNA resistance; Cross-resistance; Uptake of dsRNA; Coleopteran pest
-
Exploring the potential of high hydrostatic pressure and ionic polysaccharides in improving interfacial stability of sweet potato protein hydrolysate emulsions
作者:Khan, Nasir Mehmood;Sun, Hong-Nan;Zhang, Miao;Mu, Tai-Hua;Ahmad, Shujaat;Liu, Hui;Khan, Nasir Mehmood;Ahmad, Shujaat
关键词:High hydrostatic pressure; interface; ionic polysaccharides; rheology; sweet potato protein hydrolysates
-
Alfalfa MsbHLH115 confers tolerance to cadmium stress through activating the iron deficiency response in Arabidopsis thaliana
作者:Zhang, Miao;Gao, Jing-Yun;Dong, Shi-Chen;Chang, Meng-Han;Zhu, Jing-Xuan;Guo, Dong-Lin;Guo, Chang-Hong;Bi, Ying-Dong
关键词:cadmium; iron nutrient; MsbHLH115; transcription factors; alfalfa
-
Nanoparticle vaccines based on the receptor binding domain of porcine deltacoronavirus elicit robust protective immune responses in mice
作者:Wang, Yuanhong;Song, Junhan;Deng, Xiaoying;Wang, Junna;Zhang, Miao;Liu, Yun;Zhou, Yanjun;Tong, Guangzhi;Li, Guoxin;Yu, Lingxue;Tang, Pan;Liu, Huili;Li, Guoxin;Yu, Lingxue
关键词:porcine deltacoronavirus; nanoparticle vaccine; ferritin; SpyTag/SpyCatcher; RBD
-
Comparative transcriptomic analysis reveals the molecular mechanism underlying seedling heterosis and its relationship with hybrid contemporary seeds DNA methylation in soybean
作者:Ren, Xiaobo;Chen, Liangyu;Deng, Lin;Zhao, Qiuzhu;Li, Xueying;Cong, Weixuan;Zang, Zhenyuan;Zhao, Dingyi;Zhang, Miao;Yang, Songnan;Zhang, Jun;Chen, Liangyu;Yao, Dan;Zhang, Jun
关键词:soybean; seedling heterosis; RNA-Seq; DNA methylation; contemporary hybrid seed
-
An adenovirus-vectored vaccine based on the N protein of feline coronavirus elicit robust protective immune responses
作者:Wang, Yuanhong;Liu, Yun;Wang, Junna;Zhang, Miao;Deng, Xiaoying;Song, Junhan;Zhu, Jie;Yu, Lingxue;Li, Guoxin;Liu, Guangqing
关键词:Feline coronavirus; Adenovirus vaccine; Nucleocapsid protein; Cellular immune response; SIgA
-
Exploring the potential in postharvest preservation of sweet potato: 2-methylbutanoic acid, isobutyric acid, perillaldehyde and salicylaldehyde, to control Rhizopus stolonifer
作者:Li, Lulu;Sun, Hong-Nan;Zhang, Miao;Mu, Tai-Hua
关键词:Sweet potato; Rhizopus stolonifer; 2-methylbutanoic acid; Isobutyric acid; Salicylaldehyde; Perillaldehyde