Peptides Hydrolysate Derived from Collagen of Snakehead Murrel (Channa striata) Skin Demonstrate Anti-cholesterol and Anti-oxidant activities

Anti-cholesterol and anti-oxidant play a crucial role to combat cardiovascular disease (CVD), due to formation of arterial plagues from oxidation of cholesterol. In the past decades, bioactive peptides demonstrating anti-cholesterol and anti-oxidant activities have emerged as the alternative drugs....

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Main Authors: Wenny Silvia L. Br. Sinaga, Wangsa T. Ismaya, Debbie S. Retroningrum, Raymond R. Tjandrawinata, Maggy T. Suhartono
Format: Article
Language:English
Published: Bogor Agricultural University 2020-04-01
Series:Hayati Journal of Biosciences
Online Access:https://journal.ipb.ac.id/index.php/hayati/article/view/31497
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author Wenny Silvia L. Br. Sinaga
Wangsa T. Ismaya
Debbie S. Retroningrum
Raymond R. Tjandrawinata
Maggy T. Suhartono
author_facet Wenny Silvia L. Br. Sinaga
Wangsa T. Ismaya
Debbie S. Retroningrum
Raymond R. Tjandrawinata
Maggy T. Suhartono
author_sort Wenny Silvia L. Br. Sinaga
collection DOAJ
description Anti-cholesterol and anti-oxidant play a crucial role to combat cardiovascular disease (CVD), due to formation of arterial plagues from oxidation of cholesterol. In the past decades, bioactive peptides demonstrating anti-cholesterol and anti-oxidant activities have emerged as the alternative drugs. In this study, acid soluble collagen was extracted from the skin of snakehead murrel and employed to induce secretion of collagenase by Bacillus licheniformis F11.4. The collagenases secreted were in turn used to produce peptides hydrolysate and were grouped in two distinct collagenase fractions, designated as fraction D and F. Peptides hydrolysate produced by the fraction D was found to demonstrate HMG-CoA inhibitor activity comparable to pravastatin and limited anti-oxidant activity. Meanwhile, peptides hydrolysate generated using the fraction F demonstrated anti-oxidant activity comparable to BHT (2mM), vitamin C (2mM), and vitamin E (2mM), but limited HMG-CoA activity. Combination of the fraction D and F resulted in substantial HMG-CoA inhibition and anti-oxidant activities.
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spelling doaj.art-2ac25d6cfe1243009bac905f4a74417a2022-12-21T20:47:40ZengBogor Agricultural UniversityHayati Journal of Biosciences1978-30192086-40942020-04-0127210.4308/hjb.27.2.136Peptides Hydrolysate Derived from Collagen of Snakehead Murrel (Channa striata) Skin Demonstrate Anti-cholesterol and Anti-oxidant activitiesWenny Silvia L. Br. Sinaga0Wangsa T. Ismaya1Debbie S. Retroningrum2Raymond R. Tjandrawinata3Maggy T. Suhartono4Department of Food Science, IPB University, BogorDexa Laboratories of Biomolecular Sciences, CikarangSchool of Pharmacy, Institut Teknologi Bandung, BandungDexa Laboratories of Biomolecular Sciences, CikarangDepartment of Food Science, IPB University, BogorAnti-cholesterol and anti-oxidant play a crucial role to combat cardiovascular disease (CVD), due to formation of arterial plagues from oxidation of cholesterol. In the past decades, bioactive peptides demonstrating anti-cholesterol and anti-oxidant activities have emerged as the alternative drugs. In this study, acid soluble collagen was extracted from the skin of snakehead murrel and employed to induce secretion of collagenase by Bacillus licheniformis F11.4. The collagenases secreted were in turn used to produce peptides hydrolysate and were grouped in two distinct collagenase fractions, designated as fraction D and F. Peptides hydrolysate produced by the fraction D was found to demonstrate HMG-CoA inhibitor activity comparable to pravastatin and limited anti-oxidant activity. Meanwhile, peptides hydrolysate generated using the fraction F demonstrated anti-oxidant activity comparable to BHT (2mM), vitamin C (2mM), and vitamin E (2mM), but limited HMG-CoA activity. Combination of the fraction D and F resulted in substantial HMG-CoA inhibition and anti-oxidant activities.https://journal.ipb.ac.id/index.php/hayati/article/view/31497
spellingShingle Wenny Silvia L. Br. Sinaga
Wangsa T. Ismaya
Debbie S. Retroningrum
Raymond R. Tjandrawinata
Maggy T. Suhartono
Peptides Hydrolysate Derived from Collagen of Snakehead Murrel (Channa striata) Skin Demonstrate Anti-cholesterol and Anti-oxidant activities
Hayati Journal of Biosciences
title Peptides Hydrolysate Derived from Collagen of Snakehead Murrel (Channa striata) Skin Demonstrate Anti-cholesterol and Anti-oxidant activities
title_full Peptides Hydrolysate Derived from Collagen of Snakehead Murrel (Channa striata) Skin Demonstrate Anti-cholesterol and Anti-oxidant activities
title_fullStr Peptides Hydrolysate Derived from Collagen of Snakehead Murrel (Channa striata) Skin Demonstrate Anti-cholesterol and Anti-oxidant activities
title_full_unstemmed Peptides Hydrolysate Derived from Collagen of Snakehead Murrel (Channa striata) Skin Demonstrate Anti-cholesterol and Anti-oxidant activities
title_short Peptides Hydrolysate Derived from Collagen of Snakehead Murrel (Channa striata) Skin Demonstrate Anti-cholesterol and Anti-oxidant activities
title_sort peptides hydrolysate derived from collagen of snakehead murrel channa striata skin demonstrate anti cholesterol and anti oxidant activities
url https://journal.ipb.ac.id/index.php/hayati/article/view/31497
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