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Enhanced Anticancer Effects of Intratumorally Injected Electrostatic Doxorubicin-Loaded Click-Type Crosslinked Hyaluronic Acid Hydrogel
  • Ju, Hyeon Jin ;
  • Kim, Min Ju ;
  • Kim, Shina ;
  • Son, Kyung Eun ;
  • Lee, Min Young ;
  • Kim, Han Su ;
  • Kim, Moon Suk
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Publication Year
2024-11-01
Publisher
John Wiley and Sons Inc
Citation
Advanced Therapeutics, Vol.7
Keyword
click-type crosslinkingelectrostatic interactionintratumoral injectiontumor suppression
All Science Classification Codes (ASJC)
Medicine (miscellaneous)PharmacologyPharmaceutical ScienceGenetics (clinical)Biochemistry (medical)Pharmacology (medical)
Abstract
Injectable depots have received increasing notoriety as local drug delivery vehicles for tumor treatment. Here, an intratumoral formulation of doxorubicin (Dox) is proposed that relies on the electrostatic interaction between the carboxylic group of click-type crosslinked hyaluronic acid (Cx-HA) and cationic Dox to achieve effective tumor treatment. The Dox-loaded click-type crosslinked HA (Cx-HA-Dox) formulation exhibits adequate injectability for intratumoral injection and rapidly forms a depot at the tumor site, remaining inside the tumor for over 18 days. This enhances the bioavailability and therapeutic efficacy of Dox primarily within the tumor, minimizing off-target side effects. Intratumoral injection of Cx-HA-Dox in animal models significantly suppresses tumor growth, as evidenced by a decrease in tumor volume over time. Histological analysis reveals limited angiogenesis in the treated tumors and an increase in the number of large apoptotic cells. Overall, the findings suggest that the electrostatically crosslinked Cx-HA-Dox depot can synergistically enhance the anticancer activity of Dox.
ISSN
2366-3987
Language
eng
URI
https://dspace.ajou.ac.kr/dev/handle/2018.oak/34431
DOI
https://doi.org/10.1002/adtp.202400246
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Type
Article
Funding
H.J.J. and M.J.K. contributed equally to this work and are co-first authors. This study was supported by the National Research Foundation of Korea (NRF) grants, the Creative Materials Discovery Program (2019M3D1A1078938), Priority Research Centers Program (2019R1A6A1A11051471), and the Ministry of SMEs and Startups, Innovative Startup Package Program (20144041).H.J.J. and M.J.K. contributed equally to this work and are co\u2010first authors. This study was supported by the National Research Foundation of Korea (NRF) grants, the Creative Materials Discovery Program (2019M3D1A1078938), Priority Research Centers Program (2019R1A6A1A11051471), and the Ministry of SMEs and Startups, Innovative Startup Package Program (20144041).
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Kim, Moon Suk김문석
Department of Applied Chemistry & Biological Engineering
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