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PLGA microparticle formulations for tunable delivery of a nano-engineered filamentous bacteriophage-based vaccine: in vitro and in silico-supported approach

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Bibliographic Details
Published in:Journal of Nanostructure in Chemistry
Format: Online Article RSS Article
Published: 2023
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container_title Journal of Nanostructure in Chemistry
description
discipline_display Chemistry
discipline_facet Chemistry
format Online Article
RSS Article
genre Journal Article
id rss_article:79909
institution FRELIP
journal_source_facet Journal of Nanostructure in Chemistry
publishDate 2023
publishDateSort 2023
record_format rss_article
spellingShingle PLGA microparticle formulations for tunable delivery of a nano-engineered filamentous bacteriophage-based vaccine: in vitro and in silico-supported approach
Chemistry
General
Chemistry
sub_discipline_display General
sub_discipline_facet General
subject_display Chemistry
General
Chemistry
Chemistry
General
Chemistry
subject_facet Chemistry
General
Chemistry
title PLGA microparticle formulations for tunable delivery of a nano-engineered filamentous bacteriophage-based vaccine: in vitro and in silico-supported approach
title_auth PLGA microparticle formulations for tunable delivery of a nano-engineered filamentous bacteriophage-based vaccine: in vitro and in silico-supported approach
title_full PLGA microparticle formulations for tunable delivery of a nano-engineered filamentous bacteriophage-based vaccine: in vitro and in silico-supported approach
title_fullStr PLGA microparticle formulations for tunable delivery of a nano-engineered filamentous bacteriophage-based vaccine: in vitro and in silico-supported approach
title_full_unstemmed PLGA microparticle formulations for tunable delivery of a nano-engineered filamentous bacteriophage-based vaccine: in vitro and in silico-supported approach
title_short PLGA microparticle formulations for tunable delivery of a nano-engineered filamentous bacteriophage-based vaccine: in vitro and in silico-supported approach
title_sort plga microparticle formulations for tunable delivery of a nano-engineered filamentous bacteriophage-based vaccine: in vitro and in silico-supported approach
topic Chemistry
General
Chemistry
url https://link.springer.com/article/10.1007/s40097-022-00519-9