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Characterization of Goat Milk Hydrolyzed by Cell Envelope Proteinases from Lactobacillus plantarum LP69: Proteolytic System Optimization, Bioactivity, and Storage Stability Evaluation
by
Lei, Ni
, Huang, Jie
, Shu, Guowei
, Chen, Li
, Chen, He
in
Animals
/ bioactivity and storage stability
/ Biological activity
/ Cell Membrane - enzymology
/ cell-envelope proteinases
/ Enzyme Stability
/ Enzymes
/ goat milk
/ Goats
/ Hydrogen-Ion Concentration
/ Hydrolysis
/ Lactobacillus plantarum - enzymology
/ Lactobacillus plantarum LP69
/ Milk
/ Milk - chemistry
/ Peptide Hydrolases - chemistry
/ Peptide Hydrolases - metabolism
/ Proteolysis
/ proteolytic conditions
2018
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Characterization of Goat Milk Hydrolyzed by Cell Envelope Proteinases from Lactobacillus plantarum LP69: Proteolytic System Optimization, Bioactivity, and Storage Stability Evaluation
by
Lei, Ni
, Huang, Jie
, Shu, Guowei
, Chen, Li
, Chen, He
in
Animals
/ bioactivity and storage stability
/ Biological activity
/ Cell Membrane - enzymology
/ cell-envelope proteinases
/ Enzyme Stability
/ Enzymes
/ goat milk
/ Goats
/ Hydrogen-Ion Concentration
/ Hydrolysis
/ Lactobacillus plantarum - enzymology
/ Lactobacillus plantarum LP69
/ Milk
/ Milk - chemistry
/ Peptide Hydrolases - chemistry
/ Peptide Hydrolases - metabolism
/ Proteolysis
/ proteolytic conditions
2018
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Characterization of Goat Milk Hydrolyzed by Cell Envelope Proteinases from Lactobacillus plantarum LP69: Proteolytic System Optimization, Bioactivity, and Storage Stability Evaluation
by
Lei, Ni
, Huang, Jie
, Shu, Guowei
, Chen, Li
, Chen, He
in
Animals
/ bioactivity and storage stability
/ Biological activity
/ Cell Membrane - enzymology
/ cell-envelope proteinases
/ Enzyme Stability
/ Enzymes
/ goat milk
/ Goats
/ Hydrogen-Ion Concentration
/ Hydrolysis
/ Lactobacillus plantarum - enzymology
/ Lactobacillus plantarum LP69
/ Milk
/ Milk - chemistry
/ Peptide Hydrolases - chemistry
/ Peptide Hydrolases - metabolism
/ Proteolysis
/ proteolytic conditions
2018
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Characterization of Goat Milk Hydrolyzed by Cell Envelope Proteinases from Lactobacillus plantarum LP69: Proteolytic System Optimization, Bioactivity, and Storage Stability Evaluation
Journal Article
Characterization of Goat Milk Hydrolyzed by Cell Envelope Proteinases from Lactobacillus plantarum LP69: Proteolytic System Optimization, Bioactivity, and Storage Stability Evaluation
2018
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Overview
Despite the widespread application of lactic acid bacterium in dairy production through its contribution to acidification, development of sensorial properties, and health-promoting effects, relatively little information is available on the cell envelope proteinases (CEPs) of Lactobacillus plantarum, especially on the proteolytic system and the production of bioactivity peptides. In this study, CEPs from a novel L. plantarum LP69 were involved in goat milk hydrolysis and generated a product with high activity that showed a degree of hydrolysis of 15.68 ± 0.74%, Angiotensin I-Converting Enzyme (ACE)-inhibitory rate of 83.25 ± 1.05%, 2,2-diphenyl-1-picrylhydrazyl (DPPH) radical scavenging rate of 64.91 ± 1.27%, and hydroxyl radical scavenging rate of 89.17 ± 1.13%. The optimized hydrolysis conditions were time of 4.5 h, temperature of 41 °C, initial pH of 8.5, and enzyme to substrate ratio (E/S) of 12% (w/w) by orthogonal experiments. Application of a stabilizer greatly promoted milk stability. A well-designed stabilizer consists of 0.05% carrageenan, 0.15% gellan gum, and 0.15% sucrose esters, which significantly raised the milk stability coefficient, R, from 70.67% to 98.57%. The storage stability of milk was evaluated during 84 days at room temperature or 4 °C. Our study depicts the contribution of CEPs from L. plantarum LP69 in goat milk, exploring a new way for the development of a functional milk product.
Publisher
MDPI AG,MDPI
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