Education
Ms. Ghazaleh earned her Pharm.D. from Sechenov University, completing a thesis on in-vitro modeling of aero-dispersed film-forming systems. Currently, she is enrolled in a Master’s program in Biology, focusing on Innovative Medicines, at the same institution. In parallel, she undertakes applied IT training at School-21, a program dedicated to programming, app development, and clinical data analysis in medicine. Her multidisciplinary training bridges biological sciences, medical informatics, and pharmaceutical technologies. Ms. Ghazaleh’s strong academic background provides her with a unique perspective in drug delivery development and biomedical computation, preparing her for impactful contributions to pharmaceutical innovation and AI-assisted healthcare systems.
Experience
Ms. Ghazaleh Pouya is a laboratory assistant and student researcher at Sechenov University, actively involved in both experimental design and data analysis across pharmaceutical and biological domains, where she develops tools for clinical and pharmaceutical data evaluation. She collaborates with the Department of Pharmaceutical Technology, Department of Biology (Innovative Drugs), and the PHARMA-PREMIUM Scientific Research Center, contributing to a range of wound treatment, drug delivery, and AI-modeling projects. This diverse experience strengthens her competence in translational science, combining wet lab experimentation with computational modeling, ensuring real-world applicability of research findings.
Research Interests
Ms. Ghazaleh’s research focuses on transdermal drug delivery systems, pharmaceutical nanocarriers, and AI-integrated biomedical analytics. She is also exploring in vitro skin models, pharmacogenomics, and quality-by-design (QbD) strategies in formulation development. Her innovative mindset drives her to investigate how machine learning can optimize personalized drug delivery mechanisms, especially for wound treatment and skin permeability. She works on enhancing the bioavailability and targeted release of active substances using nano-based platforms, contributing to the next generation of smart drug delivery systems. Ghazaleh’s vision blends biological sciences, digital health, and pharmaceutical technology for patient-centered therapeutic innovations.
Award
Ms. Ghazaleh Pouya is a strong candidate for the “Young Researcher Award” under the International Invention Awards 2025. Her multidisciplinary background, three completed co-authored publications, ongoing research in pharmaceutical aerosols, and AI-driven drug delivery platforms reflect her impactful contributions at an early stage of her career. Her experience across pharmaceutical formulation, lab analytics, and computational modeling positions her among the emerging leaders in pharm-biotech research. Her self-driven participation in interdepartmental and interdisciplinary collaborations exemplifies the qualities of a future research innovator. This award would not only recognize her current achievements but also catalyze her continued excellence in translational research.
Publications
Transdermal Drug Delivery Systems: Methods for Enhancing Skin Permeability and Their Evaluation
Development of water vapor permeability determination methodology for spray film-forming systems
characterization and screening parameters of spray film-forming systems: a comprehensive study on dosage forms and quality indicators
Conclusion
Ms. Ghazaleh Pouya embodies the ideal profile of a rising biomedical innovator, integrating academic rigor, hands-on laboratory experience, and computational skills into a cohesive research journey. Her contributions to pharmaceutical sciences, particularly in film-forming drug systems and skin permeability, along with her novel integration of AI in drug delivery, showcase her potential to advance therapeutic design. With publications in reputable journals, active institutional collaborations, and an interdisciplinary mindset, she has already laid a strong foundation for a successful career in science and innovation. Recognition through the Young Researcher Award will further encourage her to expand her scientific impact and pursue future breakthroughs in personalized medicine and nanopharmaceuticals.