PROFIL SITOTOKSISITAS IN VITRO PADA SEL VERO DARI SEDIAAN NANOKARIER MENGANDUNG ARTEMISININ DENGAN KOMBINASI POLIMER PLGA-POLOXAMER
Nanocarrier with PLGA polymer base often used as an effective carrier for drug delivery to cell. PLGA nanoparticle is easily recognized by the immune system and eliminated from circulation system because of its hydrophobic characteristic. It allows opsonisation and elimination from reticuloendoth...
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id-itb.:453882019-12-18T11:38:56ZPROFIL SITOTOKSISITAS IN VITRO PADA SEL VERO DARI SEDIAAN NANOKARIER MENGANDUNG ARTEMISININ DENGAN KOMBINASI POLIMER PLGA-POLOXAMER Rana Esadini, Ayu Indonesia Final Project - INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/45388 Nanocarrier with PLGA polymer base often used as an effective carrier for drug delivery to cell. PLGA nanoparticle is easily recognized by the immune system and eliminated from circulation system because of its hydrophobic characteristic. It allows opsonisation and elimination from reticuloendothelial system (RES). Modification in the surface of PLGA nanoparticle to prevent opsonisation resulting in long-circulating nanoparticle can be done with hydophylic polymer, for example poloxamer. Nanocarrier also have to be safe and have selective toxicity. In vitro cytotoxicity test with cell culture is used for cytotoxicity screening for drug compound. This study aims to determine the cytotoxicity profile from nanocarrier containing artemisinin with PLGA-poloxamer polymer combination. Nanocarrier containing artemisinin was made with nanoprecipitation method. Cytotoxicity test was done with MTT method on Vero cell. Its absorbation was measure with microplate reader, then compared to cell control absorbation, and used to measure the percentage of living cells. The result showed that nanocarrier containing artemisinin with poloxamer 10%, PLGA 1%, and ART 30 ppm formula have the highest cytotoxicity profile (7,545% living cells). The one with poloxamer 3%, PLGA 0,2%, and ART 10 ppm formula showed lowest cytotoxicity profile (39,057% living cells). And the one with 5%, PLGA 0,2%, and ART 10 formula showed low cytotoxicity and the longest-circulating profile (30,66% living cells). The conclusion of this study is that formula with poloxamer 5%, PLGA 0,2%, and ART 10 ppm give a low and longest-circulating cytotoxicity profile, the formula poloxamer 3%, PLGA 0,2%, and ART 10 ppm showed lowest cytotoxicity profile, and formula poloxamer 10%, PLGA 1%, and ART 30 ppm showed highest cytotoxicity profile. text |
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Nanocarrier with PLGA polymer base often used as an effective carrier for drug delivery to
cell. PLGA nanoparticle is easily recognized by the immune system and eliminated from
circulation system because of its hydrophobic characteristic. It allows opsonisation and
elimination from reticuloendothelial system (RES). Modification in the surface of PLGA
nanoparticle to prevent opsonisation resulting in long-circulating nanoparticle can be done
with hydophylic polymer, for example poloxamer. Nanocarrier also have to be safe and
have selective toxicity. In vitro cytotoxicity test with cell culture is used for cytotoxicity
screening for drug compound. This study aims to determine the cytotoxicity profile from
nanocarrier containing artemisinin with PLGA-poloxamer polymer combination.
Nanocarrier containing artemisinin was made with nanoprecipitation method. Cytotoxicity
test was done with MTT method on Vero cell. Its absorbation was measure with microplate
reader, then compared to cell control absorbation, and used to measure the percentage of
living cells. The result showed that nanocarrier containing artemisinin with poloxamer
10%, PLGA 1%, and ART 30 ppm formula have the highest cytotoxicity profile (7,545%
living cells). The one with poloxamer 3%, PLGA 0,2%, and ART 10 ppm formula showed
lowest cytotoxicity profile (39,057% living cells). And the one with 5%, PLGA 0,2%, and
ART 10 formula showed low cytotoxicity and the longest-circulating profile (30,66%
living cells). The conclusion of this study is that formula with poloxamer 5%, PLGA
0,2%, and ART 10 ppm give a low and longest-circulating cytotoxicity profile, the formula
poloxamer 3%, PLGA 0,2%, and ART 10 ppm showed lowest cytotoxicity profile, and
formula poloxamer 10%, PLGA 1%, and ART 30 ppm showed highest cytotoxicity profile.
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format |
Final Project |
author |
Rana Esadini, Ayu |
spellingShingle |
Rana Esadini, Ayu PROFIL SITOTOKSISITAS IN VITRO PADA SEL VERO DARI SEDIAAN NANOKARIER MENGANDUNG ARTEMISININ DENGAN KOMBINASI POLIMER PLGA-POLOXAMER |
author_facet |
Rana Esadini, Ayu |
author_sort |
Rana Esadini, Ayu |
title |
PROFIL SITOTOKSISITAS IN VITRO PADA SEL VERO DARI SEDIAAN NANOKARIER MENGANDUNG ARTEMISININ DENGAN KOMBINASI POLIMER PLGA-POLOXAMER |
title_short |
PROFIL SITOTOKSISITAS IN VITRO PADA SEL VERO DARI SEDIAAN NANOKARIER MENGANDUNG ARTEMISININ DENGAN KOMBINASI POLIMER PLGA-POLOXAMER |
title_full |
PROFIL SITOTOKSISITAS IN VITRO PADA SEL VERO DARI SEDIAAN NANOKARIER MENGANDUNG ARTEMISININ DENGAN KOMBINASI POLIMER PLGA-POLOXAMER |
title_fullStr |
PROFIL SITOTOKSISITAS IN VITRO PADA SEL VERO DARI SEDIAAN NANOKARIER MENGANDUNG ARTEMISININ DENGAN KOMBINASI POLIMER PLGA-POLOXAMER |
title_full_unstemmed |
PROFIL SITOTOKSISITAS IN VITRO PADA SEL VERO DARI SEDIAAN NANOKARIER MENGANDUNG ARTEMISININ DENGAN KOMBINASI POLIMER PLGA-POLOXAMER |
title_sort |
profil sitotoksisitas in vitro pada sel vero dari sediaan nanokarier mengandung artemisinin dengan kombinasi polimer plga-poloxamer |
url |
https://digilib.itb.ac.id/gdl/view/45388 |
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