VIABILITAS SEL HUMAN GINGIVAL FIBROBLAST SETELAH PEMBERIAN SUSPENSI KOLAGEN SISIK IKAN GURAMI (OSPHRONEMUS GORAMY) SELAMA 24 JAM
Human Gingival Fibroblast (HGF) is the major components of tissue formation in periodontal tissue and periodontal disease may cause the destruction. Regeneration of HGF by accelerating the proliferation requires tissue engineering therapy. Collagen scaffold derived from freshwater fish scales is...
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id-langga.687142018-01-03T01:26:13Z http://repository.unair.ac.id/68714/ VIABILITAS SEL HUMAN GINGIVAL FIBROBLAST SETELAH PEMBERIAN SUSPENSI KOLAGEN SISIK IKAN GURAMI (OSPHRONEMUS GORAMY) SELAMA 24 JAM FEBBY KURNIA ARIANIE, 021411131090 RK Dentistry Human Gingival Fibroblast (HGF) is the major components of tissue formation in periodontal tissue and periodontal disease may cause the destruction. Regeneration of HGF by accelerating the proliferation requires tissue engineering therapy. Collagen scaffold derived from freshwater fish scales is one of the tissue engineering techniques. Previous studies reveal the similarity characteristic of collagen scaffold derived from Tilapia fish scales (Oreochromis mossambicus) and Gouramy fish (Osphronemus goramy). They have similar biological structures, habitat, equal percentage of collagen content, and the same amino acid arrangement that can increase the proliferation of fibroblasts. Characteristic equations and abundant amounts in Indonesia make Gouramy fish scales as an alternative to tissue engineering materials. In this preliminary research the study focus on the test of viability of HGF cells treated by Gouramy scales collagen suspension in 24 hours incubation. Objective: To study the viability of Humam Gingival Fibroblast (HGF) treated by Gouramy scales collagen suspension in 24 hours incubation. Methods: HGF is taken from healthy gingiva and seeded in 96 well plates. Gouramy scales with concentration of 1000 ppm, 500 ppm, 250 ppm, 125 ppm, 62,5 ppm, 31,25 ppm, and 15,625 ppm were added into each well and incubated for 24 hours. MTT Assay performed to observe the viability of fibroblast cells. Result: The viability of HGF were increased after the addition of Gouramy scales scaffold concentration 15,625 ppm to 250. However the viability was decreased after the addition of gouramy scales scaffold concentration 500 PPM and 1000 concentration. The highest viability of the cells was shown after the addition of 250 ppm. Conclusion: The highest viability of the cells were shown after the addition of 250 ppm and collagen derived from fish scales Gouramy may have potential in tissue engeeneering 2018-01-03 Thesis NonPeerReviewed text en http://repository.unair.ac.id/68714/1/abstrak.pdf text en http://repository.unair.ac.id/68714/2/full%20text.pdf FEBBY KURNIA ARIANIE, 021411131090 (2018) VIABILITAS SEL HUMAN GINGIVAL FIBROBLAST SETELAH PEMBERIAN SUSPENSI KOLAGEN SISIK IKAN GURAMI (OSPHRONEMUS GORAMY) SELAMA 24 JAM. Skripsi thesis, Universitas Airlangga. |
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RK Dentistry FEBBY KURNIA ARIANIE, 021411131090 VIABILITAS SEL HUMAN GINGIVAL FIBROBLAST SETELAH PEMBERIAN SUSPENSI KOLAGEN SISIK IKAN GURAMI (OSPHRONEMUS GORAMY) SELAMA 24 JAM |
description |
Human Gingival Fibroblast (HGF) is the major components of tissue formation in
periodontal tissue and periodontal disease may cause the destruction. Regeneration of HGF by
accelerating the proliferation requires tissue engineering therapy. Collagen scaffold derived from
freshwater fish scales is one of the tissue engineering techniques. Previous studies reveal the
similarity characteristic of collagen scaffold derived from Tilapia fish scales (Oreochromis
mossambicus) and Gouramy fish (Osphronemus goramy). They have similar biological structures,
habitat, equal percentage of collagen content, and the same amino acid arrangement that can
increase the proliferation of fibroblasts. Characteristic equations and abundant amounts in
Indonesia make Gouramy fish scales as an alternative to tissue engineering materials. In this
preliminary research the study focus on the test of viability of HGF cells treated by Gouramy
scales collagen suspension in 24 hours incubation. Objective: To study the viability of Humam
Gingival Fibroblast (HGF) treated by Gouramy scales collagen suspension in 24 hours incubation.
Methods: HGF is taken from healthy gingiva and seeded in 96 well plates. Gouramy scales with
concentration of 1000 ppm, 500 ppm, 250 ppm, 125 ppm, 62,5 ppm, 31,25 ppm, and 15,625 ppm
were added into each well and incubated for 24 hours. MTT Assay performed to observe the
viability of fibroblast cells. Result: The viability of HGF were increased after the addition of
Gouramy scales scaffold concentration 15,625 ppm to 250. However the viability was decreased
after the addition of gouramy scales scaffold concentration 500 PPM and 1000 concentration. The
highest viability of the cells was shown after the addition of 250 ppm. Conclusion: The highest
viability of the cells were shown after the addition of 250 ppm and collagen derived from fish
scales Gouramy may have potential in tissue engeeneering |
format |
Theses and Dissertations NonPeerReviewed |
author |
FEBBY KURNIA ARIANIE, 021411131090 |
author_facet |
FEBBY KURNIA ARIANIE, 021411131090 |
author_sort |
FEBBY KURNIA ARIANIE, 021411131090 |
title |
VIABILITAS SEL HUMAN GINGIVAL FIBROBLAST
SETELAH PEMBERIAN SUSPENSI
KOLAGEN SISIK IKAN GURAMI
(OSPHRONEMUS GORAMY)
SELAMA 24 JAM |
title_short |
VIABILITAS SEL HUMAN GINGIVAL FIBROBLAST
SETELAH PEMBERIAN SUSPENSI
KOLAGEN SISIK IKAN GURAMI
(OSPHRONEMUS GORAMY)
SELAMA 24 JAM |
title_full |
VIABILITAS SEL HUMAN GINGIVAL FIBROBLAST
SETELAH PEMBERIAN SUSPENSI
KOLAGEN SISIK IKAN GURAMI
(OSPHRONEMUS GORAMY)
SELAMA 24 JAM |
title_fullStr |
VIABILITAS SEL HUMAN GINGIVAL FIBROBLAST
SETELAH PEMBERIAN SUSPENSI
KOLAGEN SISIK IKAN GURAMI
(OSPHRONEMUS GORAMY)
SELAMA 24 JAM |
title_full_unstemmed |
VIABILITAS SEL HUMAN GINGIVAL FIBROBLAST
SETELAH PEMBERIAN SUSPENSI
KOLAGEN SISIK IKAN GURAMI
(OSPHRONEMUS GORAMY)
SELAMA 24 JAM |
title_sort |
viabilitas sel human gingival fibroblast
setelah pemberian suspensi
kolagen sisik ikan gurami
(osphronemus goramy)
selama 24 jam |
publishDate |
2018 |
url |
http://repository.unair.ac.id/68714/1/abstrak.pdf http://repository.unair.ac.id/68714/2/full%20text.pdf http://repository.unair.ac.id/68714/ |
_version_ |
1681149472033210368 |