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DDM-009 - In vitro release and safety study of the synthesized syringic acid loaded MIL-100(Fe) and modified MIL-100(Fe)
- At: Copenhagen (Denmark) (2025)
- Type: Poster
- Poster code: DDM-009
- By: SANTOS, Joshua (Department of Science and Technology, Philippines)
- Co-author(s): Dr Joshua Santos (Department of Science and Technology, Taguig City, Philippines / Department of Science and Technology - Industrial Technology Development Institute, Taguig City, Philippines)
Hannah Jean Victoriano (Department of Science and Technology - Industrial Technology Development Institute, Taguig City, Philippines)
Mary Sepulveda (Department of Science and Technology - Industrial Technology Development Institute, Taguig City, Philippines)
Hunn-En Liu (Department of Chemistry, National Taiwan Normal University, Taipei City, Taiwan)
Yi-Zhen Jian (Department of Chemistry, National Taiwan Normal University, Taipei City, Taiwan)
Dr. Pamela Berilyn So (Department of Chemistry, National Taiwan Normal University, Taipei City, Taiwan)
Rikkamae Zinca Marie Walde (Department of Science and Technology - Industrial Technology Development Institute, Taguig City, Philippines)
Shierrie Mae Valencia (Department of Science and Technology - Industrial Technology Development Institute, Taguig City, Philippines)
Dr. Emelda Ongo (Department of Science and Technology, Taguig City, Philippines / Department of Science and Technology - Industrial Technology Development Institute, Taguig City, Philippines)
Professor Chia-Her Lin (Department of Chemistry, National Taiwan Normal University, Taipei City, Taiwan) - Abstract:
Phenolic acids like syringic acid possess antioxidant and antimicrobial properties but face challenges in bioavailability. Advances in drug delivery, particularly metal-organic frameworks (MOFs) like MIL-100(Fe), offer solutions by improving stability, controlled release, and bioavailability. Thus, in this study, MIL-100(Fe) was synthesized by..
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Last update 4 September 2025