In vitro gentamicin release from bioactive Bhagelena implant against Staphylococcus aureus

Osteomyelitis is a bone-related infectious desease which is difficult to treat, because the antibiotic reaches the target is lower than the MIC and bacteria can €™t be eradicated. This condition can cause the bacteria become resistant. To solve this problem, we can use local antibiotics as BHAG(ELEN...

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Main Authors: Aniek Setiya Budiatin, M Zainuddin, Junaidi Khotib
Format: Article
Language:English
Published: Indonesian Biological Society 2014-05-01
Series:Journal of Biological Researches
Subjects:
Online Access:http://berkalahayati.org/journal/4c2e4a32
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spelling doaj-c87b6b31196e48c180fd3d350bef32a32020-11-25T00:44:49ZengIndonesian Biological SocietyJournal of Biological Researches0852-68342337-389X2014-05-0118211611810.23869/bphjbr.18.2.20138In vitro gentamicin release from bioactive Bhagelena implant against Staphylococcus aureusAniek Setiya Budiatin0M Zainuddin1Junaidi Khotib2Pharmacy Faculty, Airlangga University, Surabaya Darmawangsa Dalam Street, Surabaya, Post code 60286, fax. 0315020514Pharmacy Faculty, Airlangga University, Surabaya Darmawangsa Dalam Street, Surabaya, Post code 60286, fax. 0315020514Pharmacy Faculty, Airlangga University, Surabaya Darmawangsa Dalam Street, Surabaya, Post code 60286, fax. 0315020514Osteomyelitis is a bone-related infectious desease which is difficult to treat, because the antibiotic reaches the target is lower than the MIC and bacteria can €™t be eradicated. This condition can cause the bacteria become resistant. To solve this problem, we can use local antibiotics as BHAG(ELENA) pellets implant, which can release gentamicin (GEN) continuously for more than a day with a concentration greater than MIC. BHAG(ELENA) pellet that have made contain BHA : GEL = 20 : 2 (dry state); GEN 10% and cross-linking with glutaraldehyde (GA) 0,5%, cylindrical weigh 100 mg; 4 mm in diameter and 3.2 mm thick. The release of GEN from BHAG(ELENA) pellet were tested in vitro, by soaking the pellet in phosphate buffer saline pH 7.4 at temperature 370C. The sample were sampled every day until 28 days. Then, the sample were tested by agar diffusion method that contain Staphylococcus aureus. Results showed that inhibition zone diameter greater than MIC GEN to S. aureus. Within 28 days, the release of GEN provide a total activity 99,24%, it showed that after 28 days, the pellets are still actively inhibit the bacterial growth. Furthermore, required to be tested in animal study (in vivo) with a defect in the femoral bone then filled with BHAG(ELENA) pellets as drug delivery system of GEN and bone fillershttp://berkalahayati.org/journal/4c2e4a32agar diffusion methodBovine Hydroxyapatite (BHA)gelatin (GEL)gentamicin (GEN)glutaraldehyde (GA)drug delivery system (DDS)
collection DOAJ
language English
format Article
sources DOAJ
author Aniek Setiya Budiatin
M Zainuddin
Junaidi Khotib
spellingShingle Aniek Setiya Budiatin
M Zainuddin
Junaidi Khotib
In vitro gentamicin release from bioactive Bhagelena implant against Staphylococcus aureus
Journal of Biological Researches
agar diffusion method
Bovine Hydroxyapatite (BHA)
gelatin (GEL)
gentamicin (GEN)
glutaraldehyde (GA)
drug delivery system (DDS)
author_facet Aniek Setiya Budiatin
M Zainuddin
Junaidi Khotib
author_sort Aniek Setiya Budiatin
title In vitro gentamicin release from bioactive Bhagelena implant against Staphylococcus aureus
title_short In vitro gentamicin release from bioactive Bhagelena implant against Staphylococcus aureus
title_full In vitro gentamicin release from bioactive Bhagelena implant against Staphylococcus aureus
title_fullStr In vitro gentamicin release from bioactive Bhagelena implant against Staphylococcus aureus
title_full_unstemmed In vitro gentamicin release from bioactive Bhagelena implant against Staphylococcus aureus
title_sort in vitro gentamicin release from bioactive bhagelena implant against staphylococcus aureus
publisher Indonesian Biological Society
series Journal of Biological Researches
issn 0852-6834
2337-389X
publishDate 2014-05-01
description Osteomyelitis is a bone-related infectious desease which is difficult to treat, because the antibiotic reaches the target is lower than the MIC and bacteria can €™t be eradicated. This condition can cause the bacteria become resistant. To solve this problem, we can use local antibiotics as BHAG(ELENA) pellets implant, which can release gentamicin (GEN) continuously for more than a day with a concentration greater than MIC. BHAG(ELENA) pellet that have made contain BHA : GEL = 20 : 2 (dry state); GEN 10% and cross-linking with glutaraldehyde (GA) 0,5%, cylindrical weigh 100 mg; 4 mm in diameter and 3.2 mm thick. The release of GEN from BHAG(ELENA) pellet were tested in vitro, by soaking the pellet in phosphate buffer saline pH 7.4 at temperature 370C. The sample were sampled every day until 28 days. Then, the sample were tested by agar diffusion method that contain Staphylococcus aureus. Results showed that inhibition zone diameter greater than MIC GEN to S. aureus. Within 28 days, the release of GEN provide a total activity 99,24%, it showed that after 28 days, the pellets are still actively inhibit the bacterial growth. Furthermore, required to be tested in animal study (in vivo) with a defect in the femoral bone then filled with BHAG(ELENA) pellets as drug delivery system of GEN and bone fillers
topic agar diffusion method
Bovine Hydroxyapatite (BHA)
gelatin (GEL)
gentamicin (GEN)
glutaraldehyde (GA)
drug delivery system (DDS)
url http://berkalahayati.org/journal/4c2e4a32
work_keys_str_mv AT anieksetiyabudiatin invitrogentamicinreleasefrombioactivebhagelenaimplantagainststaphylococcusaureus
AT mzainuddin invitrogentamicinreleasefrombioactivebhagelenaimplantagainststaphylococcusaureus
AT junaidikhotib invitrogentamicinreleasefrombioactivebhagelenaimplantagainststaphylococcusaureus
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