Area of research
Radiology, Nuclear Medicine and Imaging · Computational Theory and Mathematics
Research interest
Research interests include Radiomics and Machine Learning in Medical Imaging, Computational Drug Discovery Methods, Nanoparticle-Based Drug Delivery, and Nanoplatforms for cancer theranostics.
Mechanisms and Barriers in Nanomedicine: Progress in the Field and Future Directions
Sex‐dependent improvement in traumatic brain injury outcomes after liposomal delivery of dexamethasone in mice
Nanotechnology-driven therapies for neurodegenerative diseases: a comprehensive review
Mechanisms and Barriers in Cancer Nanomedicine: Addressing Challenges, Looking for Solutions
Generation of Homogenous Three-Dimensional Pancreatic Cancer Cell Spheroids Using an Improved Hanging Drop Technique
Generation of an in vitro 3D PDAC stroma rich spheroid model
Ethosomes: Enhanced Delivery of Drugs to and Across the Skin
The Importance of Particle Geometry in Design of Therapeutic and Imaging Nanovectors
Multiscale benchmarking of drug delivery vectors
Systemic Gene Silencing in Primary T Lymphocytes Using Targeted Lipid Nanoparticles
Cubical Shape Enhances the Interaction of Layer‐by‐Layer Polymeric Particles with Breast Cancer Cells
Radiofrequency treatment alters cancer cell phenotype
Dermal and Transdermal Delivery
Internalization of Red Blood Cell-Mimicking Hydrogel Capsules with pH-Triggered Shape Responses
Active curcumin nanoparticles formed from a volatile microemulsion template
Low pressure mediated enhancement of nanoparticle and macromolecule loading into porous silicon structures
Cytotoxicity and Biocompatibility of Highly Water-Soluble Graphene Nanoribbons Derivitized with p-Carboxyphenyldiazonium Salt
Interactions of Cationic Polymers with Cells
A physical sciences network characterization of non-tumorigenic and metastatic cells
Silicon Micro‐ and Nanofabrication for Medicine
Hydrogen-Bonded Multilayers of Silk Fibroin: From Coatings to Cell-Mimicking Shaped Microcontainers