Effect of Glycosaminoglycans Extract From Sea Cucumber Stichopus vastus on Inflammatory Mediators and Tissue Healing on Rodents With Full Thickness Burn Injury

This study was design to investigate the effect of total sulfated GAG from integument body wall of sea cucumber Stichopus vastus on inflammatory mediators and tissue healing on rodents with full thickness burn injury. Twelve male Sprague-dawley rats weighting 350-400 grams were distributed random...

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Main Authors: Mohd Faeiz, Pauzi, Siti Norazlina, Juhari, Mohd Nikman, Ahmad, Farid, Che Ghazali
Format: Conference or Workshop Item
Language:English
Published: 2017
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Online Access:http://eprints.unisza.edu.my/1449/1/FH03-FP-17-10517.pdf
http://eprints.unisza.edu.my/1449/
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spelling my-unisza-ir.14492020-11-16T06:17:44Z http://eprints.unisza.edu.my/1449/ Effect of Glycosaminoglycans Extract From Sea Cucumber Stichopus vastus on Inflammatory Mediators and Tissue Healing on Rodents With Full Thickness Burn Injury Mohd Faeiz, Pauzi Siti Norazlina, Juhari Mohd Nikman, Ahmad Farid, Che Ghazali QH301 Biology R Medicine (General) SH Aquaculture. Fisheries. Angling This study was design to investigate the effect of total sulfated GAG from integument body wall of sea cucumber Stichopus vastus on inflammatory mediators and tissue healing on rodents with full thickness burn injury. Twelve male Sprague-dawley rats weighting 350-400 grams were distributed randomly into two groups. Six rats in group A received 5 ml/kg/day intraperitoneal total sulfated GAG from S.vastus for 5 days, while control group received phosphate buffered saline (PBS). Level of IL-10 and IL-12 were measured at day 1, 6 and 12. The level of IL-10 revealed significantly (p<0.05) higher and the level of IL-12 was reduced significantly (p<0.05) in sulfated GAG treated group. Data suggested that sulfated GAG from S. vastus integument body wall increase antiinflammatory cytokine and reduce pro-inflammatory cytokine. Microscopic evaluation showed reduced neutrophils infiltration with enhanced proliferation of fibroblasts and angiogenesis (p<0.05) in the sulfated GAG treated group. Sulfated GAG from S. vastus integument body wall has impact on the outcome of wound healing process by increasing the level of anti-inflammatory cytokine, IL-10 and reduced level of pro-inflammatory cytokine, IL-12 and positive effect on fibroblast proliferation and angiogenesis process. 2017 Conference or Workshop Item NonPeerReviewed text en http://eprints.unisza.edu.my/1449/1/FH03-FP-17-10517.pdf Mohd Faeiz, Pauzi and Siti Norazlina, Juhari and Mohd Nikman, Ahmad and Farid, Che Ghazali (2017) Effect of Glycosaminoglycans Extract From Sea Cucumber Stichopus vastus on Inflammatory Mediators and Tissue Healing on Rodents With Full Thickness Burn Injury. In: 1st International Halal Management Conference (IHMC) 2017, 17-19 August 2017, Sejong University, Seoul.
institution Universiti Sultan Zainal Abidin
building UNISZA Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Sultan Zainal Abidin
content_source UNISZA Institutional Repository
url_provider https://eprints.unisza.edu.my/
language English
topic QH301 Biology
R Medicine (General)
SH Aquaculture. Fisheries. Angling
spellingShingle QH301 Biology
R Medicine (General)
SH Aquaculture. Fisheries. Angling
Mohd Faeiz, Pauzi
Siti Norazlina, Juhari
Mohd Nikman, Ahmad
Farid, Che Ghazali
Effect of Glycosaminoglycans Extract From Sea Cucumber Stichopus vastus on Inflammatory Mediators and Tissue Healing on Rodents With Full Thickness Burn Injury
description This study was design to investigate the effect of total sulfated GAG from integument body wall of sea cucumber Stichopus vastus on inflammatory mediators and tissue healing on rodents with full thickness burn injury. Twelve male Sprague-dawley rats weighting 350-400 grams were distributed randomly into two groups. Six rats in group A received 5 ml/kg/day intraperitoneal total sulfated GAG from S.vastus for 5 days, while control group received phosphate buffered saline (PBS). Level of IL-10 and IL-12 were measured at day 1, 6 and 12. The level of IL-10 revealed significantly (p<0.05) higher and the level of IL-12 was reduced significantly (p<0.05) in sulfated GAG treated group. Data suggested that sulfated GAG from S. vastus integument body wall increase antiinflammatory cytokine and reduce pro-inflammatory cytokine. Microscopic evaluation showed reduced neutrophils infiltration with enhanced proliferation of fibroblasts and angiogenesis (p<0.05) in the sulfated GAG treated group. Sulfated GAG from S. vastus integument body wall has impact on the outcome of wound healing process by increasing the level of anti-inflammatory cytokine, IL-10 and reduced level of pro-inflammatory cytokine, IL-12 and positive effect on fibroblast proliferation and angiogenesis process.
format Conference or Workshop Item
author Mohd Faeiz, Pauzi
Siti Norazlina, Juhari
Mohd Nikman, Ahmad
Farid, Che Ghazali
author_facet Mohd Faeiz, Pauzi
Siti Norazlina, Juhari
Mohd Nikman, Ahmad
Farid, Che Ghazali
author_sort Mohd Faeiz, Pauzi
title Effect of Glycosaminoglycans Extract From Sea Cucumber Stichopus vastus on Inflammatory Mediators and Tissue Healing on Rodents With Full Thickness Burn Injury
title_short Effect of Glycosaminoglycans Extract From Sea Cucumber Stichopus vastus on Inflammatory Mediators and Tissue Healing on Rodents With Full Thickness Burn Injury
title_full Effect of Glycosaminoglycans Extract From Sea Cucumber Stichopus vastus on Inflammatory Mediators and Tissue Healing on Rodents With Full Thickness Burn Injury
title_fullStr Effect of Glycosaminoglycans Extract From Sea Cucumber Stichopus vastus on Inflammatory Mediators and Tissue Healing on Rodents With Full Thickness Burn Injury
title_full_unstemmed Effect of Glycosaminoglycans Extract From Sea Cucumber Stichopus vastus on Inflammatory Mediators and Tissue Healing on Rodents With Full Thickness Burn Injury
title_sort effect of glycosaminoglycans extract from sea cucumber stichopus vastus on inflammatory mediators and tissue healing on rodents with full thickness burn injury
publishDate 2017
url http://eprints.unisza.edu.my/1449/1/FH03-FP-17-10517.pdf
http://eprints.unisza.edu.my/1449/
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