PMMA BONE CEMENT WITH L-ARGININE/NANO FISH BONE NANOCOMPLEX TO GENERATE APATIT FORMATION

Apatite growth is a bone regeneration approach to optimize bone repair and restore bone function. Generally, this property is owned by hydroxyapatite which can be taken from fish bone waste. In this study, apatite growth was observed in nano fish bone (NFB) processed from fish bone waste and used in...

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Main Author: Aurel Khoman, Gessica
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/67732
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:67732
spelling id-itb.:677322022-08-25T14:09:43ZPMMA BONE CEMENT WITH L-ARGININE/NANO FISH BONE NANOCOMPLEX TO GENERATE APATIT FORMATION Aurel Khoman, Gessica Indonesia Final Project nano fish bone, PMMA, bone cement, simulated body fluid INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/67732 Apatite growth is a bone regeneration approach to optimize bone repair and restore bone function. Generally, this property is owned by hydroxyapatite which can be taken from fish bone waste. In this study, apatite growth was observed in nano fish bone (NFB) processed from fish bone waste and used in PMMA bone cement. The resulting NFB has a Ca:P content of 1.65 with a particle size of 757.5 nm. PMMA was synthesized using emulsion polymerization method and by variating the SDS surfactant content to control particle size and uniformity. PSA characterization showed that the addition of SDS could reduce the particle size, from 102.8 nm in the absence of SDS addition to 42.1 nm with the addition of 5 wt% SDS. SEM characterization showed agglomeration due to very small particle size at the addition of 5 wt% SDS. PMMA is also added with L-Arginine to increase the biocompatibility and antibiotic properties of bone cement. Bone cement samples were tested for tensile strength which resulted in a decrease on tensile strength when added with NFB and L-Arginine. All bone cement samples with variations of added surfactant and BC-PMMA-1-NFB/L-Arg had better tensile strength than commercial PMMA. The immersion test showed that there was an increase in mass after immersion in the SBF solution for 7 days, which indicates the possibility of the formation of an apatite layer. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description Apatite growth is a bone regeneration approach to optimize bone repair and restore bone function. Generally, this property is owned by hydroxyapatite which can be taken from fish bone waste. In this study, apatite growth was observed in nano fish bone (NFB) processed from fish bone waste and used in PMMA bone cement. The resulting NFB has a Ca:P content of 1.65 with a particle size of 757.5 nm. PMMA was synthesized using emulsion polymerization method and by variating the SDS surfactant content to control particle size and uniformity. PSA characterization showed that the addition of SDS could reduce the particle size, from 102.8 nm in the absence of SDS addition to 42.1 nm with the addition of 5 wt% SDS. SEM characterization showed agglomeration due to very small particle size at the addition of 5 wt% SDS. PMMA is also added with L-Arginine to increase the biocompatibility and antibiotic properties of bone cement. Bone cement samples were tested for tensile strength which resulted in a decrease on tensile strength when added with NFB and L-Arginine. All bone cement samples with variations of added surfactant and BC-PMMA-1-NFB/L-Arg had better tensile strength than commercial PMMA. The immersion test showed that there was an increase in mass after immersion in the SBF solution for 7 days, which indicates the possibility of the formation of an apatite layer.
format Final Project
author Aurel Khoman, Gessica
spellingShingle Aurel Khoman, Gessica
PMMA BONE CEMENT WITH L-ARGININE/NANO FISH BONE NANOCOMPLEX TO GENERATE APATIT FORMATION
author_facet Aurel Khoman, Gessica
author_sort Aurel Khoman, Gessica
title PMMA BONE CEMENT WITH L-ARGININE/NANO FISH BONE NANOCOMPLEX TO GENERATE APATIT FORMATION
title_short PMMA BONE CEMENT WITH L-ARGININE/NANO FISH BONE NANOCOMPLEX TO GENERATE APATIT FORMATION
title_full PMMA BONE CEMENT WITH L-ARGININE/NANO FISH BONE NANOCOMPLEX TO GENERATE APATIT FORMATION
title_fullStr PMMA BONE CEMENT WITH L-ARGININE/NANO FISH BONE NANOCOMPLEX TO GENERATE APATIT FORMATION
title_full_unstemmed PMMA BONE CEMENT WITH L-ARGININE/NANO FISH BONE NANOCOMPLEX TO GENERATE APATIT FORMATION
title_sort pmma bone cement with l-arginine/nano fish bone nanocomplex to generate apatit formation
url https://digilib.itb.ac.id/gdl/view/67732
_version_ 1822005533714939904