Area of research
Biomaterials · Biomedical Engineering
Research interest
Research interests include Nanoparticle-Based Drug Delivery, Nanoplatforms for cancer theranostics, Advanced Drug Delivery Systems, and Graphene and Nanomaterials Applications.
Magnetic Hydrogel with Optimally Adaptive Functions for Breast Cancer Recurrence Prevention
“All‐in‐One” Nanoparticles for Trimodality Imaging‐Guided Intracellular Photo‐magnetic Hyperthermia Therapy under Intravenous Administration
Doxorubicin-loaded Fe3O4@MoS2-PEG-2DG nanocubes as a theranostic platform for magnetic resonance imaging-guided chemo-photothermal therapy of breast cancer
Reality Check for Nanomaterial‐Mediated Therapy with 3D Biomimetic Culture Systems
Nanomedicine Strategies for sustained, Controlled and Targeted Treatment of Cancer Stem Cells
In vivo and ex vivo proofs of concept that cetuximab conjugated vitamin E TPGS micelles increases efficacy of delivered docetaxel against triple negative breast cancer
Nanocarriers for Delivery of siRNA and Co-Delivery of siRNA and Other Therapeutic Agents
Co-Delivery of Doxorubicin and PEGylated C16-Ceramide by Nanoliposomes for Enhanced Therapy Against Multidrug Resistance
Highly cited research articles in Journal of Controlled Release: Commentaries and perspectives by authors
Theranostic vitamin E TPGS micelles of transferrin conjugation for targeted co-delivery of docetaxel and ultra bright gold nanoclusters
The chemotherapeutic potential of PEG-b-PLGA copolymer micelles that combine chloroquine as autophagy inhibitor and docetaxel as an anti-cancer drug
Nanotheranostics: Advanced Nanomedicine for The Integration of Diagnosis and Therapy
Effects of PEG tethering chain length of vitamin E TPGS with a Herceptin-functionalized nanoparticle formulation for targeted delivery of anticancer drugs
The reduction of anti-cancer drug antagonism by the spatial protection of drugs with PLA–TPGS nanoparticles
Docetaxel‐Loaded Nanoparticles of Dendritic Amphiphilic Block Copolymer H40‐PLA‐<i>b</i>‐TPGS for Cancer Treatment
Effects of Particle Size and Surface Modification on Cellular Uptake and Biodistribution of Polymeric Nanoparticles for Drug Delivery
Cholic acid-functionalized nanoparticles of star-shaped PLGA-vitamin E TPGS copolymer for docetaxel delivery to cervical cancer
Co-delivery of chemotherapeutic drugs with vitamin E TPGS by porous PLGA nanoparticles for enhanced chemotherapy against multi-drug resistance
Paclitaxel drug delivery systems
The effect of autophagy inhibitors on drug delivery using biodegradable polymer nanoparticles in cancer treatment
Targeted co-delivery of docetaxel, cisplatin and herceptin by vitamin E TPGS-cisplatin prodrug nanoparticles for multimodality treatment of cancer
Cetuximab conjugated vitamin E TPGS micelles for targeted delivery of docetaxel for treatment of triple negative breast cancers
Targeted co-delivery of docetaxel and siPlk1 by herceptin-conjugated vitamin E TPGS based immunomicelles
Trastuzumab-conjugated vitamin E TPGS liposomes for sustained and targeted delivery of docetaxel
Nanohydrogels as A Prospective Member of The Nanomedicine Family
Vitamin E TPGS as a molecular biomaterial for drug delivery
Pharmaceutical nanotechnology for oral delivery of anticancer drugs
Theranostic liposomes of TPGS coating for targeted co-delivery of docetaxel and quantum dots
Development of Docetaxel-Loaded Vitamin E TPGS Micelles: Formulation Optimization, Effects on Brain Cancer Cells and Biodistribution in Rats
Multimodality treatment of cancer with herceptin conjugated, thermomagnetic iron oxides and docetaxel loaded nanoparticles of biodegradable polymers