Integrated Enzymatic Membrane Reactor (EMR) for Continuous Production of Antidiabetic, Antihypertensive, and Antioxidant Peptides from Jack Bean
Rose Uli Ruth Cecilia, Azis Boing Sitanggang, Slamet Budijanto, Endang Prangdimurti

TL;DR
This paper describes a continuous production method for health-promoting peptides from jack beans using an enzymatic membrane reactor.
Contribution
The study introduces a continuous enzymatic hydrolysis system for producing multifunctional peptides from jack bean protein isolate.
Findings
Optimal conditions yielded peptides with high antioxidant and ACE inhibitory activity.
The process achieved notable DPP-IV inhibition and peptide content in the permeate.
The method supports scalable and sustainable production of functional food ingredients.
Abstract
The growing demand for functional foods reflects greater consumer awareness of diet–health links, with bioactive peptides receiving increasing attention for their health-promoting effects. In this study, bioactive peptides exhibiting antioxidant, dipeptidyl peptidase-IV (DPP-IV) inhibitory, and angiotensin-converting enzyme (ACE) inhibitory activities were produced from a jack bean (Canavalia ensiformis) protein isolate using a continuous proteolysis system with two enzymes. This study encompassed two major phases: isolating protein from jack beans and implementing a continuous enzymatic hydrolysis process. Key variables examined included the enzyme-to-substrate ratio ([E]/[S]), pH level, and residence time (τ). Optimal performance was achieved at [E]/[S] = 5%, pH = 7.5, and τ = 12 h, yielding a permeate with peptide content of 0.6143 mg SE/mL, along with notable antioxidant capacity…
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Taxonomy
TopicsProtein Hydrolysis and Bioactive Peptides · Enzyme Production and Characterization · Peptidase Inhibition and Analysis
