Enzymatic valorization process of yellow cocoon waste for production of antioxidative sericin and fibroin film

peer-reviewed · Journal of Chemical Technology & Biotechnology · 2021

peer-reviewed · Journal of Chemical Technology & Biotechnology · 2021. Kamon Yakul et al. BACKGROUND Cocoon waste, solid waste from the silk industry, is currently utilized as low‐cost spun silk…
Date 2021-04-01
Type peer-reviewed
Venue Journal of Chemical Technology & Biotechnology
Publisher Wiley
Contribution downstream-application
DOI 10.1002/jctb.6604
Citations (OpenAlex) 35

Abstract

BACKGROUND Cocoon waste, solid waste from the silk industry, is currently utilized as low‐cost spun silk yarn. In this study, the enzymatic valorization process of yellow cocoon waste to produce antioxidative sericin hydrolysate and fibroin film was demonstrated. RESULTS The enzymatic process involving thermostable alkaline protease from Bacillus halodurans SE5 (protease_SE5) was superior to the conventional high temperature and high pressure and 0.5% Na2CO3 processes. Protease_SE5 produced sericin hydrolysate with high peptide concentration (0.335 mg mL–1) and provided degummed fibroin with a complete structure. Sericin hydrolysate from protease_SE5‐assisted hydrolysis showed remarkable radical scavenging activities on ABTS, DPPH and FRAP assays with 602, 3.90 and 24.8 μmol Trolox equivalents (TE) g−1 protein, respectively. After ultrafiltration and size‐exclusion chromatography, two active fractions (F1 and F2) were obtained from sericin hydrolysate with ABTS radical scavenging activity of 2120 and 3289 μmol TE g−1 protein, respectively. Identification of bioactive peptides by de novo sequencing was conducted, and seven candidate peptides were identified with high content of key antioxidative amino acids (His, Phe, Trp, Tyr and Arg) in the sequences. Moreover, bioactivities of several of the peptides were predicted by bioinformatics databases. Besides, the mechanical properties of enzyme‐derived fibroin film were also improved, with tensile strength and elongation at break of 62.1 MPa and 3.6% in the dry state, and 8.5 MPa and 140% in the wet state. CONCLUSION This enzymatic process could be an effective way for valorizing cocoon waste. The value‐added products from agricultural waste have promising applications in food, pharmaceutical and biomedical materials. © 2020 Society of Chemical Industry (SCI)

Authors

  1. Kamon Yakul · Chiang Mai University
  2. Tanyawat Kaewsalud · Chiang Mai University
  3. Charin Techapun · Chiang Mai University
  4. Phisit Seesuriyachan · Chiang Mai University
  5. Kittisak Jantanasakulwong · Chiang Mai University
  6. Masanori Watanabe · Yamagata University
  7. Shinji Takenaka · Kobe University
  8. Thanongsak Chaiyaso · Chiang Mai University

Methods and tools

  • Sericin antioxidative peptides: De novo sequencing of active fractions of a silk cocoon waste hydrolysate identified seven candidate antioxidative peptides.

Methods it uses

  • PEAKS: Commercial DP-based de novo

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