Increased release time of antibiotics from bone allografts through a novel biodegradable coating
10.1155/2014/459867
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sg-nus-scholar.10635-1837142023-09-21T08:05:53Z Increased release time of antibiotics from bone allografts through a novel biodegradable coating Hornyák, I Madácsi, E Kalugyer, P Vácz, G Horváthy, D.B Szendroi, M Han, W Lacza, Z DUKE-NUS MEDICAL SCHOOL alginic acid amoxicillin chitosan ciprofloxacin vancomycin amoxicillin biomaterial chitosan ciprofloxacin polymer vancomycin article bone allograft controlled study drug release time femur head film coating freeze drying human human tissue in vitro study lyophilisate pharmacological parameters sustained drug release time ultraviolet spectrophotometry allograft bone transplantation chemistry drug effects infection pathology Allografts Amoxicillin Biocompatible Materials Bone Transplantation Chitosan Ciprofloxacin Humans Infection Polymers Vancomycin 10.1155/2014/459867 BioMed Research International 2014 459867 2020-11-19T07:17:59Z 2020-11-19T07:17:59Z 2014 Article Hornyák, I, Madácsi, E, Kalugyer, P, Vácz, G, Horváthy, D.B, Szendroi, M, Han, W, Lacza, Z (2014). Increased release time of antibiotics from bone allografts through a novel biodegradable coating. BioMed Research International 2014 : 459867. ScholarBank@NUS Repository. https://doi.org/10.1155/2014/459867 23146133 https://scholarbank.nus.edu.sg/handle/10635/183714 Attribution 4.0 International http://creativecommons.org/licenses/by/4.0/ Unpaywall 20201031 |
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alginic acid amoxicillin chitosan ciprofloxacin vancomycin amoxicillin biomaterial chitosan ciprofloxacin polymer vancomycin article bone allograft controlled study drug release time femur head film coating freeze drying human human tissue in vitro study lyophilisate pharmacological parameters sustained drug release time ultraviolet spectrophotometry allograft bone transplantation chemistry drug effects infection pathology Allografts Amoxicillin Biocompatible Materials Bone Transplantation Chitosan Ciprofloxacin Humans Infection Polymers Vancomycin |
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alginic acid amoxicillin chitosan ciprofloxacin vancomycin amoxicillin biomaterial chitosan ciprofloxacin polymer vancomycin article bone allograft controlled study drug release time femur head film coating freeze drying human human tissue in vitro study lyophilisate pharmacological parameters sustained drug release time ultraviolet spectrophotometry allograft bone transplantation chemistry drug effects infection pathology Allografts Amoxicillin Biocompatible Materials Bone Transplantation Chitosan Ciprofloxacin Humans Infection Polymers Vancomycin Hornyák, I Madácsi, E Kalugyer, P Vácz, G Horváthy, D.B Szendroi, M Han, W Lacza, Z Increased release time of antibiotics from bone allografts through a novel biodegradable coating |
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10.1155/2014/459867 |
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DUKE-NUS MEDICAL SCHOOL |
author_facet |
DUKE-NUS MEDICAL SCHOOL Hornyák, I Madácsi, E Kalugyer, P Vácz, G Horváthy, D.B Szendroi, M Han, W Lacza, Z |
format |
Article |
author |
Hornyák, I Madácsi, E Kalugyer, P Vácz, G Horváthy, D.B Szendroi, M Han, W Lacza, Z |
author_sort |
Hornyák, I |
title |
Increased release time of antibiotics from bone allografts through a novel biodegradable coating |
title_short |
Increased release time of antibiotics from bone allografts through a novel biodegradable coating |
title_full |
Increased release time of antibiotics from bone allografts through a novel biodegradable coating |
title_fullStr |
Increased release time of antibiotics from bone allografts through a novel biodegradable coating |
title_full_unstemmed |
Increased release time of antibiotics from bone allografts through a novel biodegradable coating |
title_sort |
increased release time of antibiotics from bone allografts through a novel biodegradable coating |
publishDate |
2020 |
url |
https://scholarbank.nus.edu.sg/handle/10635/183714 |
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1779153129933111296 |