The prostate specific membrane antigen (PSMA) is broadly overexpressed on prostate cancer (PCa) cell surfaces. In this study, we report the synthesis, characterization, in vitro binding assay, and in vivo magnetic resonance imaging (MRI) evaluation of PSMA targeting superparamagnetic iron oxide nanoparticles (SPIONs). PSMA-targeting polypeptide CQKHHNYLC was conjugated to SPIONs to form PSMA-targeting molecular MRI contrast agents. In vitro studies demonstrated specific uptake of polypeptide-SPIONs by PSMA expressing cells. In vivo MRI studies found that MRI signals in PSMA-expressing tumors could be specifically enhanced with polypeptide-SPION, and further Prussian blue staining showed heterogeneous deposition of SPIONs in the tumor tissue...
Magnetic nanoparticle (MNP)-induced hyperthermia is currently being evaluated for localized prostate...
In this study we developed, characterized and validated in vitro a functional superparagmagnetic iro...
In this study we developed, characterized and validated in vitro a functional superparagmagnetic iro...
Introduction Novel imaging techniques for prostate cancer (PCa) are required to improve staging and ...
Aim Evaluate potential of newly-developed, biocompatible iron oxide magnetic nanoparticles (MNPs) co...
*This abstract is free to read on the publisher's website* Objective Novel imaging techniques for pr...
Introduction\ud \ud Novel imaging techniques for prostate cancer (PCa) are required to improve stagi...
Aim: To evaluate the potential of newly-developed, biocompatible iron oxide magnetic nanoparticles (...
Aim: To evaluate the potential of newly-developed, biocompatible iron oxide magnetic nanoparticles (...
Aim\ud \ud Evaluate potential of newly-developed, biocompatible iron oxide magnetic nanoparticles (...
*This abstract is free to read on the publisher's website*\ud \ud \ud Objective\ud \ud Novel imaging...
Antibody-conjugated iron oxide nanoparticles offer a specific and sensitive tool to enhance magnetic...
Aim Evaluate potential of newly-developed, biocompatible iron oxide magnetic nanoparticles (MNPs) co...
Aim Evaluate potential of newly-developed, biocompatible iron oxide magnetic nanoparticles (MNPs) co...
Abstract Objective: Imaging techniques better than those conventionally used are needed to improve p...
Magnetic nanoparticle (MNP)-induced hyperthermia is currently being evaluated for localized prostate...
In this study we developed, characterized and validated in vitro a functional superparagmagnetic iro...
In this study we developed, characterized and validated in vitro a functional superparagmagnetic iro...
Introduction Novel imaging techniques for prostate cancer (PCa) are required to improve staging and ...
Aim Evaluate potential of newly-developed, biocompatible iron oxide magnetic nanoparticles (MNPs) co...
*This abstract is free to read on the publisher's website* Objective Novel imaging techniques for pr...
Introduction\ud \ud Novel imaging techniques for prostate cancer (PCa) are required to improve stagi...
Aim: To evaluate the potential of newly-developed, biocompatible iron oxide magnetic nanoparticles (...
Aim: To evaluate the potential of newly-developed, biocompatible iron oxide magnetic nanoparticles (...
Aim\ud \ud Evaluate potential of newly-developed, biocompatible iron oxide magnetic nanoparticles (...
*This abstract is free to read on the publisher's website*\ud \ud \ud Objective\ud \ud Novel imaging...
Antibody-conjugated iron oxide nanoparticles offer a specific and sensitive tool to enhance magnetic...
Aim Evaluate potential of newly-developed, biocompatible iron oxide magnetic nanoparticles (MNPs) co...
Aim Evaluate potential of newly-developed, biocompatible iron oxide magnetic nanoparticles (MNPs) co...
Abstract Objective: Imaging techniques better than those conventionally used are needed to improve p...
Magnetic nanoparticle (MNP)-induced hyperthermia is currently being evaluated for localized prostate...
In this study we developed, characterized and validated in vitro a functional superparagmagnetic iro...
In this study we developed, characterized and validated in vitro a functional superparagmagnetic iro...