Lecturer Profile
Andi Arjuna, S.Si., M.Na.Sc.T., Ph.D, Apt.
Assistant Professor
Academic Profile
General Information
Andi Arjuna is an associate professor in the Department of Pharmaceutical Science and Technology at the Faculty of Pharmacy, Hasanuddin University.
His scholarly work centers on nanotechnology, pharmaceutics, pharmaceutical materials, and radiopharmacy, with additional research interests in material sciences, radiopharmaceuticals, and biophysics.
He contributes to the Transdermal and Transmucosal Drug Delivery Systems Research Group as a lecturer and research-team member, supporting work on microneedles, nanomedicine, smart materials, and targeted transdermal and transmucosal drug-delivery technologies.
Recent Publications
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2024
Development of samarium-doped phosphate glass microspheres for internal radiotheranostic applications
International Journal of Pharmaceutics
-
2022
A novel in vitro approach to investigate the effect of food intake on release profile of valsartan in solid dispersion-floating gel in-situ delivery system
European Journal of Pharmaceutical Sciences
- 2021
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2021
Dissolution improvement of ketoprofen through polymer matrix composite povidone K-30/TiO<sub>2</sub>
Journal of Experimental Biology and Agricultural Sciences
- 2021
- 2021
Academic Activity
Education
Educational Background
- S.Si, Hasanuddin University, 2007
- Apt, Hasanuddin University, 2009
- M.Na.Sc.T, Institute for Nanoscale Science & Technology, Flinders University, 2018
- Ph.D Materials Engineering and Material Design, University of Nottingham
Research
Research Focuses
- Principal specialization: Nanotechnology, Pharmaceutics, Pharmaceutical Materials, and Radiopharmacy.
- SINTA-indexed interests: Material Sciences, Radiopharmaceuticals, Nanotechnology, Pharmaceutics, and Biophysics.
Research Group Involvement
- Transdermal and Transmucosal Drug Delivery Systems Research Group — Lecturer / Research Team Member. The group develops transdermal and transmucosal delivery technologies, particularly microneedle, nanomedicine, smart-material, and targeted antimicrobial systems.