FISMED / PEOPLE
Narges Nasrollahi
Postdoctoral Researcher · Shahid Beheshti University
BACKGROUND
Biography
Narges Nasrollahi Boroujeni is a postdoctoral researcher at Shahid Beheshti University. She studies targeted delivery to the brain using focused ultrasound and engineered nanocarriers, with an emphasis on transport across the blood–brain barrier. She earned her PhD at Iran's National Institute of Genetic Engineering and Biotechnology, developing ultrasound-responsive nanobubbles for drug delivery. Her work combines molecular genetics, nanotechnology and experimental neuroscience, including collaborations with Tor Vergata's focused-ultrasound researchers.
RESEARCH & EXPERTISE
Research interests
- Focused ultrasound
- Nanobubbles
- Blood–brain barrier
- Targeted drug delivery
RESEARCH OUTPUT
Selected publications
- Exosomes as Advanced Nanocarriers: Overcoming the Blood-Brain Barrier for Targeted Therapeutic Delivery in Neurodegenerative Diseases.Current drug delivery · 2026
- The impact of hUC MSC-derived exosome-nanoliposome hybrids on α-synuclein fibrillation and neurotoxicity.Science advances · 2024
- Viral and non-viral gene therapy using 3D (bio)printing.The journal of gene medicine · 2022
- Prevascularized Micro-/Nano-Sized Spheroid/Bead Aggregates for Vascular Tissue Engineering.Nano-micro letters · 2021
LABORATORIES & RESEARCH
Related research
Explore related research
Connections indicate shared research topics, not authorship or project participation.
Focused ultrasound
Related laboratories
Related projects
- Focused ultrasound for pNGF delivery
- UltraRadio · Boosting the efficacy of radiotherapy in Glioblastoma through ultrasound-aided delivery of theranostic nanoparticles across the blood–brain barrier
- FUSRadio · Enhancing radiotherapy in Glioblastoma through focused ultrasound
- myREPAIR · A new method to induce myelin repair in multiple sclerosis
Related publications
- Exosomes as Advanced Nanocarriers: Overcoming the Blood-Brain Barrier for Targeted Therapeutic Delivery in Neurodegenerative Diseases.
- The impact of hUC MSC-derived exosome-nanoliposome hybrids on α-synuclein fibrillation and neurotoxicity.
- Viral and non-viral gene therapy using 3D (bio)printing.
- Prevascularized Micro-/Nano-Sized Spheroid/Bead Aggregates for Vascular Tissue Engineering.
- A new in silico model to precisely design focused ultrasound brain therapies
- Magnetic Resonance Methods for Focused Ultrasound-Induced Blood-Brain Barrier Opening