Fabrication of magnetic nanocarriers that demonstrate enhanced biocompatibility and excellent colloidal stability is critical for the application of magnetic-motored drug delivery, and it remains a challenge. Herein, a novel approach to synthesize mesoporous magnetic colloidal nanocrystal clusters (MMCNCs) that are stabilized by agarose is described; these clusters demonstrate high magnetization, large surface area and pore volume, excellent colloidal stability, enhanced biocompatibility, and acid degradability. The hydroxyl groups of agarose, which cover the surface of the magnetic nanocrystals, are modified with vinyl groups, followed by click reaction with mercaptoacetyl hydrazine to form the terminal hydrazide (–CONHNH2). The anticancer...
We demonstrate a single-step facile approach for the fabrication of citric acid functionalized (citr...
Coating a layer of PEG functionalized porous silica shell onto doxorubicin-conjugated Fe3O4 nanopart...
A size tunable synthesis of mesoporous MgFe2O4 magnetic nanoassemblies (MMNs) through a PEG-diacid m...
The fabrication of hierarchical magnetic nanomaterials with welldefined structure, high magnetic res...
One of the major challenges of drug delivery is the development of suitable carriers for therapeutic...
Doxorubicin-conjugated magnetic nanoparticles containing hydrolyzable hydrazone bonds were developed...
One of the major challenges of drug delivery is the development of suitable carriers for therapeutic...
One of the major challenges of antitumor drugs delivery is the development of suitable carriers for ...
To develop vehicles for efficient chemotherapeutic cancer therapy, we report a remotely triggered dr...
To develop vehicles for efficient chemotherapeutic cancer therapy, we report a remotely triggered dr...
Herein, we developed a magnetic drug delivery system based on magnetic Fe3O4 nanoparticles with doub...
Doxorubicin is one of the most widely used anti-cancer drugs, but side effects and selectivity probl...
The objective of this study was to describe the magnetic nanoparticle–drug conjugates for improved c...
We demonstrate a single-step facile approach for the fabrication of citric acid functionalized (citr...
New biomimetic magnetite nanoparticles (hereafter BMNPs) with sizes larger than most common superpar...
We demonstrate a single-step facile approach for the fabrication of citric acid functionalized (citr...
Coating a layer of PEG functionalized porous silica shell onto doxorubicin-conjugated Fe3O4 nanopart...
A size tunable synthesis of mesoporous MgFe2O4 magnetic nanoassemblies (MMNs) through a PEG-diacid m...
The fabrication of hierarchical magnetic nanomaterials with welldefined structure, high magnetic res...
One of the major challenges of drug delivery is the development of suitable carriers for therapeutic...
Doxorubicin-conjugated magnetic nanoparticles containing hydrolyzable hydrazone bonds were developed...
One of the major challenges of drug delivery is the development of suitable carriers for therapeutic...
One of the major challenges of antitumor drugs delivery is the development of suitable carriers for ...
To develop vehicles for efficient chemotherapeutic cancer therapy, we report a remotely triggered dr...
To develop vehicles for efficient chemotherapeutic cancer therapy, we report a remotely triggered dr...
Herein, we developed a magnetic drug delivery system based on magnetic Fe3O4 nanoparticles with doub...
Doxorubicin is one of the most widely used anti-cancer drugs, but side effects and selectivity probl...
The objective of this study was to describe the magnetic nanoparticle–drug conjugates for improved c...
We demonstrate a single-step facile approach for the fabrication of citric acid functionalized (citr...
New biomimetic magnetite nanoparticles (hereafter BMNPs) with sizes larger than most common superpar...
We demonstrate a single-step facile approach for the fabrication of citric acid functionalized (citr...
Coating a layer of PEG functionalized porous silica shell onto doxorubicin-conjugated Fe3O4 nanopart...
A size tunable synthesis of mesoporous MgFe2O4 magnetic nanoassemblies (MMNs) through a PEG-diacid m...