Literature DB >> 32255460

Enzymatic hydrolysis of insect Alphitobius diaperinus towards the development of bioactive peptide hydrolysates.

Pedro Sousa1, Sandra Borges1, Manuela Pintado1.   

Abstract

Edible insects are a promising protein source for the future generation, due to their nutritional composition, sustainability and low environmental impact. Recent studies demonstrated their potential as a protein base to obtain bioactive peptides with potential applicability in the food industry. The aim of this study was to hydrolyze and analyze the potential of the edible insect Alphitobius diaperinus protein to develop an improved insect food ingredient with bioactive properties. After evaluating various conditions for the enzymatic hydrolysis with Alcalase 2.5L and Corolase PP, the best condition chosen for each enzyme was an enzyme : substrate ratio of 1.5% for 4 hours and a ratio of 3.0% for 6 hours, respectively. Insect protein hydrolysates are demonstrated to have relevant bioactive properties, namely antioxidant (by ABTS and ORAC methods) and antihypertensive activities (through the ability to inhibit the angiotensin converting enzyme, ACE), but no antimicrobial or antidiabetic properties were observed. Antioxidant activity values for hydrolysates obtained with Alcalase 2.5L and Corolase PP were 95.0 ± 0.8 and 95.7 ± 1.0 μmol Trolox equivalent per g insect powder by the ABTS method, 825.6 ± 85.5 and 944.8 ± 68.1 μmol Trolox equivalent per g insect powder by the ORAC method, respectively. Insect hydrolysates were able to inhibit the ACE and IC50 values for insect hydrolysates obtained with Alcalase 2.5L and Corolase PP were 55.5 ± 6.2 and 107.4 ± 9.7 μg of protein per mL, respectively. These insect protein hydrolysates can be used as a supplement/ingredient in the food industry with potential health benefits.

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Year:  2020        PMID: 32255460     DOI: 10.1039/d0fo00188k

Source DB:  PubMed          Journal:  Food Funct        ISSN: 2042-6496            Impact factor:   5.396


  6 in total

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Authors:  Jiaxin Lu; Yuwen Guo; Atif Muhmood; Bei Zeng; Yizhan Qiu; Pan Wang; Lianhai Ren
Journal:  Sci Rep       Date:  2022-02-18       Impact factor: 4.379

Review 2.  Protein Hydrolysates Derived from Animals and Plants-A Review of Production Methods and Antioxidant Activity.

Authors:  Michał Czelej; Katarzyna Garbacz; Tomasz Czernecki; Jacek Wawrzykowski; Adam Waśko
Journal:  Foods       Date:  2022-06-30

3.  Exploring Silk Sericin for Diabetic Wounds: An In Situ-Forming Hydrogel to Protect against Oxidative Stress and Improve Tissue Healing and Regeneration.

Authors:  Sara Baptista-Silva; Beatriz G Bernardes; Sandra Borges; Ilda Rodrigues; Rui Fernandes; Susana Gomes-Guerreiro; Marta Teixeira Pinto; Manuela Pintado; Raquel Soares; Raquel Costa; Ana Leite Oliveira
Journal:  Biomolecules       Date:  2022-06-08

4.  Bioactivities of Mealworm (Alphitobius diaperinus L.) Larvae Hydrolysates Obtained from Artichoke (Cynara scolymus L.) Proteases.

Authors:  Luis Tejada; Laura Buendía-Moreno; Irene Hernández; Adela Abellán; José María Cayuela; Eva Salazar; Estefanía Bueno-Gavilá
Journal:  Biology (Basel)       Date:  2022-04-20

5.  Bioactive Hydrolysates from Chlorella vulgaris: Optimal Process and Bioactive Properties.

Authors:  Sara A Cunha; Ezequiel R Coscueta; Paulo Nova; Joana Laranjeira Silva; Maria Manuela Pintado
Journal:  Molecules       Date:  2022-04-13       Impact factor: 4.927

6.  Polyphenol Loaded W1/O/W2 Emulsions Stabilized with Lesser Mealworm (Alphitobius diaperinus) Protein Concentrate Produced by Membrane Emulsification: Stability under Simulated Storage, Process, and Digestion Conditions.

Authors:  Junjing Wang; Aurélie Ballon; Karin Schroën; Sílvia de Lamo-Castellví; Montserrat Ferrando; Carme Güell
Journal:  Foods       Date:  2021-12-04
  6 in total

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