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Acceleration in healing of infected full-thickness wound with novel antibacterial γ-AlOOH-based nanocomposites

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Bibliographic Details
Published in:Progress in Biomaterials
Format: Online Article RSS Article
Published: 2023
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container_title Progress in Biomaterials
description
discipline_display Technology & Engineering
discipline_facet Technology & Engineering
format Online Article
RSS Article
genre Journal Article
id rss_article:13777
institution FRELIP
journal_source_facet Progress in Biomaterials
publishDate 2023
publishDateSort 2023
record_format rss_article
spellingShingle Acceleration in healing of infected full-thickness wound with novel antibacterial γ-AlOOH-based nanocomposites
Bioengineering
Bioengineering
Technology & Engineering
sub_discipline_display Bioengineering
sub_discipline_facet Bioengineering
subject_display Bioengineering
Bioengineering
Technology & Engineering
Bioengineering
Bioengineering
Technology & Engineering
subject_facet Bioengineering
Bioengineering
Technology & Engineering
title Acceleration in healing of infected full-thickness wound with novel antibacterial γ-AlOOH-based nanocomposites
title_auth Acceleration in healing of infected full-thickness wound with novel antibacterial γ-AlOOH-based nanocomposites
title_full Acceleration in healing of infected full-thickness wound with novel antibacterial γ-AlOOH-based nanocomposites
title_fullStr Acceleration in healing of infected full-thickness wound with novel antibacterial γ-AlOOH-based nanocomposites
title_full_unstemmed Acceleration in healing of infected full-thickness wound with novel antibacterial γ-AlOOH-based nanocomposites
title_short Acceleration in healing of infected full-thickness wound with novel antibacterial γ-AlOOH-based nanocomposites
title_sort acceleration in healing of infected full-thickness wound with novel antibacterial γ-alooh-based nanocomposites
topic Bioengineering
Bioengineering
Technology & Engineering
url https://link.springer.com/article/10.1007/s40204-022-00216-4