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An injectable click-crosslinked hydrogel that prolongs dexamethasone release from dexamethasone-loaded microspheresoa mark
  • Heo, Ji Yeon ;
  • Noh, Jung Hyun ;
  • Park, Seung Hun ;
  • Ji, Yun Bae ;
  • Ju, Hyeon Jin ;
  • Kim, Da Yeon ;
  • Lee, Bong ;
  • Kim, Moon Suk
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Publication Year
2019-09-01
Publisher
MDPI AG
Citation
Pharmaceutics, Vol.11
Keyword
Click-reactionDepotInjectable hydrogelMicrosphereRetardation
All Science Classification Codes (ASJC)
Pharmaceutical Science
Abstract
Our purpose was to test whether a preparation of injectable formulations of dexamethasone (Dex)-loaded microspheres (Dex-Ms) mixed with click-crosslinked hyaluronic acid (Cx-HA) (or Pluronic (PH) for comparison) prolongs therapeutic levels of released Dex. Dex-Ms were prepared using a monoaxial-nozzle ultrasonic atomizer with an 85% yield of the Dex-Ms preparation, encapsulation efficiency of 80%, and average particle size of 57 μm. Cx-HA was prepared via a click reaction between transcyclooctene (TCO)-modified HA (TCO-HA) and tetrazine (TET)-modified HA (TET-HA). The injectable formulations (Dex-Ms/PH and Dex-Ms/Cx-HA) were fabricated as suspensions and became a Dex-Ms-loaded hydrogel drug depot after injection into the subcutaneous tissue of Sprague Dawley rats. Dex-Ms alone also formed a drug depot after injection. The Cx-HA hydrogel persisted in vivo for 28 days, but the PH hydrogel disappeared within six days, as evidenced by in vivo near-infrared fluorescence imaging. The in vitro and in vivo cumulative release of Dex by Dex-Ms/Cx-HA was much slower in the early days, followed by sustained release for 28 days, compared with Dex-Ms alone and Dex-Ms/PH. The reason was that the Cx-HA hydrogel acted as an external gel matrix for Dex-Ms, resulting in the retarded release of Dex from Dex-Ms. Therefore, we achieved significantly extended duration of a Dex release from an in vivo Dex-Ms-loaded hydrogel drug depot formed by Dex-Ms wrapped in an injectable click-crosslinked HA hydrogel in a minimally invasive manner. In conclusion, the Dex-Ms/Cx-HA drug depot described in this work showed excellent performance on extended in vivo delivery of Dex.
ISSN
1999-4923
Language
eng
URI
https://dspace.ajou.ac.kr/dev/handle/2018.oak/30965
DOI
https://doi.org/10.3390/pharmaceutics11090438
Fulltext

Type
Article
Funding
Funding: This study was funded by the Creative Materials Discovery Program through the National Research Foundation (2019M3D1A1078938) and Priority Research Centers Program (2019R1A6A1A11051471) from the National Research Foundation of Korea (NRF).
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Kim, Moon Suk김문석
Department of Applied Chemistry & Biological Engineering
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