Determining the Applicability of Milkfish (Chanos chanos) for Skin Grafting through Microbiological and Histological Evaluations

Tilapia fish skin, rich in Type I collagen, has been shown to accelerate wound healing, reduce infection rates, and create an optimal environment for wound care. However, the potential application of other fish species, like milkfish, for skin grafting remains underexplored. Milkfish (C. chanos), an...

Full description

Saved in:
Bibliographic Details
Main Authors: Ragaza, Janice A, Go, Bianca Patrice
Format: text
Published: Archīum Ateneo 2024
Subjects:
Online Access:https://archium.ateneo.edu/aquatic-fisheries-resources/1
https://archium.ateneo.edu/context/aquatic-fisheries-resources/article/1000/viewcontent/bioconf_isfm2024_02008.pdf
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Ateneo De Manila University
id ph-ateneo-arc.aquatic-fisheries-resources-1000
record_format eprints
spelling ph-ateneo-arc.aquatic-fisheries-resources-10002025-01-06T23:58:55Z Determining the Applicability of Milkfish (Chanos chanos) for Skin Grafting through Microbiological and Histological Evaluations Ragaza, Janice A Go, Bianca Patrice Tilapia fish skin, rich in Type I collagen, has been shown to accelerate wound healing, reduce infection rates, and create an optimal environment for wound care. However, the potential application of other fish species, like milkfish, for skin grafting remains underexplored. Milkfish (C. chanos), an economically significant species in the Philippines, could expand the donor pool for fish skin grafting, addressing the accessibility issues in resource-limited regions where traditional graft materials may be costly or scarce. The current study investigates the feasibility of applying tilapia fish skin sterilization techniques to milkfish skin. Collected and prepared milkfish skin was subjected to a sterilization process using an established protocol for silver nanoparticle synthesis and characterization, to ensure sterility without compromising collagen integrity. Microbiological and histological evaluations were conducted to determine the collagen quality and sterility of milkfish skin. The results indicate that milkfish skin, after undergoing the same sterilization procedures as tilapia skin, maintained high collagen integrity and was free from microbial contamination. By demonstrating that milkfish skin can be effectively sterilized and used similarly to tilapia skin, this research provides innovative, cost-effective, and sustainable wound-healing solutions. This finding has the potential to transform wound care in underserved areas, improving patient outcomes in regions with limited access to advanced medical facilities. 2024-01-01T08:00:00Z text application/pdf https://archium.ateneo.edu/aquatic-fisheries-resources/1 https://archium.ateneo.edu/context/aquatic-fisheries-resources/article/1000/viewcontent/bioconf_isfm2024_02008.pdf Ateneo Aquatic and Fisheries Resources Laboratory Archīum Ateneo Agriculture Aquaculture and Fisheries Life Sciences
institution Ateneo De Manila University
building Ateneo De Manila University Library
continent Asia
country Philippines
Philippines
content_provider Ateneo De Manila University Library
collection archium.Ateneo Institutional Repository
topic Agriculture
Aquaculture and Fisheries
Life Sciences
spellingShingle Agriculture
Aquaculture and Fisheries
Life Sciences
Ragaza, Janice A
Go, Bianca Patrice
Determining the Applicability of Milkfish (Chanos chanos) for Skin Grafting through Microbiological and Histological Evaluations
description Tilapia fish skin, rich in Type I collagen, has been shown to accelerate wound healing, reduce infection rates, and create an optimal environment for wound care. However, the potential application of other fish species, like milkfish, for skin grafting remains underexplored. Milkfish (C. chanos), an economically significant species in the Philippines, could expand the donor pool for fish skin grafting, addressing the accessibility issues in resource-limited regions where traditional graft materials may be costly or scarce. The current study investigates the feasibility of applying tilapia fish skin sterilization techniques to milkfish skin. Collected and prepared milkfish skin was subjected to a sterilization process using an established protocol for silver nanoparticle synthesis and characterization, to ensure sterility without compromising collagen integrity. Microbiological and histological evaluations were conducted to determine the collagen quality and sterility of milkfish skin. The results indicate that milkfish skin, after undergoing the same sterilization procedures as tilapia skin, maintained high collagen integrity and was free from microbial contamination. By demonstrating that milkfish skin can be effectively sterilized and used similarly to tilapia skin, this research provides innovative, cost-effective, and sustainable wound-healing solutions. This finding has the potential to transform wound care in underserved areas, improving patient outcomes in regions with limited access to advanced medical facilities.
format text
author Ragaza, Janice A
Go, Bianca Patrice
author_facet Ragaza, Janice A
Go, Bianca Patrice
author_sort Ragaza, Janice A
title Determining the Applicability of Milkfish (Chanos chanos) for Skin Grafting through Microbiological and Histological Evaluations
title_short Determining the Applicability of Milkfish (Chanos chanos) for Skin Grafting through Microbiological and Histological Evaluations
title_full Determining the Applicability of Milkfish (Chanos chanos) for Skin Grafting through Microbiological and Histological Evaluations
title_fullStr Determining the Applicability of Milkfish (Chanos chanos) for Skin Grafting through Microbiological and Histological Evaluations
title_full_unstemmed Determining the Applicability of Milkfish (Chanos chanos) for Skin Grafting through Microbiological and Histological Evaluations
title_sort determining the applicability of milkfish (chanos chanos) for skin grafting through microbiological and histological evaluations
publisher Archīum Ateneo
publishDate 2024
url https://archium.ateneo.edu/aquatic-fisheries-resources/1
https://archium.ateneo.edu/context/aquatic-fisheries-resources/article/1000/viewcontent/bioconf_isfm2024_02008.pdf
_version_ 1821121512861597696