Antioxidant and anti-hyaluronidase activities of taurine-enriched enzymatic hydrolysates prepared from Turbo cornutus, a by-product of fish processing in Jeju Island SCIE SCOPUS

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Title
Antioxidant and anti-hyaluronidase activities of taurine-enriched enzymatic hydrolysates prepared from Turbo cornutus, a by-product of fish processing in Jeju Island
Author(s)
Im, Seung Tae; Kang, Na Lae; Kim, Jun Seong; Heo, Soo Jin; Lee, Seung-Hong
KIOST Author(s)
Kang, Na Lae(강나래)Kim, Jun Seong(김준성)Heo, Soo Jin(허수진)
Alternative Author(s)
강나래; 김준성; 허수진
Publication Year
2022-07
Abstract
Turbo cornutus is an edible sea snail species whose viscera parts are by-products of fish processing. Although they can be used for human consumption as good sources of functional ingredients, they are generally discarded. The objective of the present study was to prepare bioactive hydrolysate (MSVAH) from viscera parts of T. cornutus using enzymatic hydrolysis, and to investigate their antioxidant and anti-hyaluronidase properties for use as potential functional food ingredients. In MSVAH, taurine was found to be the most abundant. Taurine is known to have excellent physiological activity. Taurine-enriched MSVAH showed good capacities of DPPH, peroxyl radical scavenging, and hyaluronidase inhibition, with IC50 values of 0.50 mg/mL, 0.32 mg/mL, and 2.87 mg/mL, respectively. MSVAH also significantly improved cell viability and inhibited intracellular reactive oxygen species (ROS) dose-dependently against oxidative stress induced by 2,2-azobis-(2-amidinopropane) dihydrochloride (AAPH), a free-radical-generating compound, in immortalized human keratinocytes (HaCaT cells). Furthermore, MSVAH upregulated hyaluronic acid (HA)-synthesizing enzyme hyaluronan synthase 2 (HAS2) expression level, but downregulated expression level of HA-degrading enzyme hyaluronidase 2 (HYAL2), resulting in increased HA production in keratinocytes. Taken together, these results suggest that taurine-enriched MSVAH derived from viscera parts of T. cornutus, known to be by-products of fish processing, could be used to prepare potential bioactive hydrolysates for developing functional foods and nutraceutical products. © 2022, The Author(s), under exclusive licence to Japanese Society of Fisheries Science.
ISSN
0919-9268
URI
https://sciwatch.kiost.ac.kr/handle/2020.kiost/43048
DOI
10.1007/s12562-022-01605-1
Bibliographic Citation
Fisheries Science, v.88, no.4, pp.509 - 517, 2022
Publisher
Springer
Keywords
Antioxidant and anti-hyaluronidase; Enzymatic hydrolysis; Functional food ingredients; Turbo cornutus; Viscera
Type
Article
Language
English
Document Type
Article; Early Access
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