Magnetic nanoparticles (MNPs) have been extensively studied for their potential applications to cancer diagnosis and treatment. However, various obstacles limit the use of nanoparticles for delivery in the tumor microenvironment. As a viable solution to such obstacles, advances in nanoparticle surface engineering augmented by a profound understanding of cancer physiology present new opportunities for MNP-based imaging and therapeutic agents. Stimuli-responsive ligands, rationally designed to interact with various physicochemical aspects, can improve the performance of MNPs in cancer-targeted imaging and therapy. In this review, we highlight recent progress in the design of MNP-based stimuli-responsive nanomaterials and their applications to...
Abstract Magnetic nanoparticles (MNPs) offer tremendous potentialities in biomedical applications fo...
Nanomedicine is an emerging field, which constitutes a new direction in the treatment of cancer. Mag...
Current advances in targeted magnetic nanotheranostics are summarized in this review. Unique structu...
Magnetic nanoparticles (MNPs) have been extensively studied for their potential applications to canc...
Magnetic nanoparticles offer potential advances in cancer treatment. One example is cancer theranost...
Magnetic nanomaterials have recently emerged, playing an increasingly essential role in life science...
Technological development is in constant progress in the oncological field. The search for new conce...
Diagnosis facilitates the discovery of an impending disease. A complete and accurate treatment of ca...
Iron oxide nanoparticle (IONPs) have become a subject of interest in various biomedical fields due t...
Abstract: Today, technologies based on magnetic nanoparticles (MNPs) are routinely applied to biolog...
Nanoparticles (NPs) with easily modified surfaces have been playing an important role in biomedicine...
The past two decades have seen a surge in the development and application of nanoparticles for biome...
The use of magnetic nanoparticles for sensing and theranostics of cancer has grown substantially in ...
Background: Nanomaterials are at the leading edge of the rapidly developing field of nanotechnology....
Magnetic nanoparticles have attracted attention because of their current and potential usefulness as...
Abstract Magnetic nanoparticles (MNPs) offer tremendous potentialities in biomedical applications fo...
Nanomedicine is an emerging field, which constitutes a new direction in the treatment of cancer. Mag...
Current advances in targeted magnetic nanotheranostics are summarized in this review. Unique structu...
Magnetic nanoparticles (MNPs) have been extensively studied for their potential applications to canc...
Magnetic nanoparticles offer potential advances in cancer treatment. One example is cancer theranost...
Magnetic nanomaterials have recently emerged, playing an increasingly essential role in life science...
Technological development is in constant progress in the oncological field. The search for new conce...
Diagnosis facilitates the discovery of an impending disease. A complete and accurate treatment of ca...
Iron oxide nanoparticle (IONPs) have become a subject of interest in various biomedical fields due t...
Abstract: Today, technologies based on magnetic nanoparticles (MNPs) are routinely applied to biolog...
Nanoparticles (NPs) with easily modified surfaces have been playing an important role in biomedicine...
The past two decades have seen a surge in the development and application of nanoparticles for biome...
The use of magnetic nanoparticles for sensing and theranostics of cancer has grown substantially in ...
Background: Nanomaterials are at the leading edge of the rapidly developing field of nanotechnology....
Magnetic nanoparticles have attracted attention because of their current and potential usefulness as...
Abstract Magnetic nanoparticles (MNPs) offer tremendous potentialities in biomedical applications fo...
Nanomedicine is an emerging field, which constitutes a new direction in the treatment of cancer. Mag...
Current advances in targeted magnetic nanotheranostics are summarized in this review. Unique structu...