Aim\ud \ud Evaluate potential of newly-developed, biocompatible iron oxide magnetic nanoparticles (MNPs) conjugated with J591, an antibody to an extracellular epitope of prostate specific membrane antigen (PSMA), to enhance MRI of prostate cancer (PCa). \ud \ud Materials & Methods\ud \ud Specific binding to PSMA by J591-MNP was investigated in vitro. MRI studies were performed on orthotopic tumor-bearing NOD.SCID mice 2h and 24hr after intravenous injection of J591-MNPs, or non-targeting MNPs.\ud \ud Results and Conclusions\ud \ud In vitro, MNPs did not affect PCa cell viability, and conjugation to J591 did not compromise antibody specificity and enhanced cellular iron uptake. In vivo, PSMA-targeting MNPs increased MR contrast of tumors, b...
In this study we developed, characterized and validated in vitro a functional superparagmagnetic iro...
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...
Aim Evaluate potential of newly-developed, biocompatible iron oxide magnetic nanoparticles (MNPs) co...
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 (...
Introduction Novel imaging techniques for prostate cancer (PCa) are required to improve staging and ...
Introduction\ud \ud Novel imaging techniques for prostate cancer (PCa) are required to improve stagi...
*This abstract is free to read on the publisher's website* Objective Novel imaging techniques for pr...
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...
*This abstract is free to read on the publisher's website*\ud \ud \ud Objective\ud \ud Novel imaging...
The prostate specific membrane antigen (PSMA) is broadly overexpressed on prostate cancer (PCa) cell...
Antibody-conjugated iron oxide nanoparticles offer a specific and sensitive tool to enhance magnetic...
Abstract Objective: Imaging techniques better than those conventionally used are needed to improve p...
In this study we developed, characterized and validated in vitro a functional superparagmagnetic iro...
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...
Aim Evaluate potential of newly-developed, biocompatible iron oxide magnetic nanoparticles (MNPs) co...
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 (...
Introduction Novel imaging techniques for prostate cancer (PCa) are required to improve staging and ...
Introduction\ud \ud Novel imaging techniques for prostate cancer (PCa) are required to improve stagi...
*This abstract is free to read on the publisher's website* Objective Novel imaging techniques for pr...
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...
*This abstract is free to read on the publisher's website*\ud \ud \ud Objective\ud \ud Novel imaging...
The prostate specific membrane antigen (PSMA) is broadly overexpressed on prostate cancer (PCa) cell...
Antibody-conjugated iron oxide nanoparticles offer a specific and sensitive tool to enhance magnetic...
Abstract Objective: Imaging techniques better than those conventionally used are needed to improve p...
In this study we developed, characterized and validated in vitro a functional superparagmagnetic iro...
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...