The highly porous nature of metal-organic frameworks (MOFs) offers great potential for the delivery of therapeutic agents. Here, we show that highly porous metal-organic frameworks can be used to deliver multiple therapeutic agents—a biologically active gas, an antibiotic drug molecule, and an active metal ion—simultaneously but at different rates. The possibilities offered by delivery of multiple agents with different mechanisms of action and, in particular, variable timescales may allow new therapy approaches. Here, we show that the loaded MOFs are highly active against various strains of bacteria
Metal-organic framework (MOF) is an exciting class of porous biomaterials that have been considered ...
The research presented in this thesis aims to assess the capacity of metal organic frameworks for p...
Effective penetration into cells, or binding to cell membranes is an essential property of an effect...
The highly porous nature of metal-organic frameworks (MOFs) offers great potential for the delivery ...
There has been substantial progress in the field of metal–organic frameworks (MOFs) and their nanosc...
Nanoparticle-based therapeutics have received increasing attention, as these systems can alleviate m...
The composition and topology of metal-organic frameworks (MOFs) are exceptionally tailorable; moreov...
Open metalorganic frameworks (MOFs) have been widely studied as adsorbents of gases or small molecul...
Metal‐organic frameworks (MOFs) are emerging as leading candidates for nanoscale drug delivery, as a...
Metal-organic frameworks (MOFs) have found uses in adsorption, catalysis, gas storage and other indu...
Metal-organic frameworks (MOFs) are a class of highly crystalline nanoporous materials that self-ass...
Dual on‐demand delivery of therapeutic cargos and energy by transporters can latently mitigate side ...
We have used a family of Zr-based metal-organic frameworks (MOFs) with different functionalized (bro...
A new fabrication of {[H3O][Cu6(tpta)3(DMA)4(COO)]∙12H2O∙7DMA} (1) was used as a drug vehicle of 5-f...
The precision tenability of metal-organic frameworks (MOFs) enables the efficient encapsulation of a...
Metal-organic framework (MOF) is an exciting class of porous biomaterials that have been considered ...
The research presented in this thesis aims to assess the capacity of metal organic frameworks for p...
Effective penetration into cells, or binding to cell membranes is an essential property of an effect...
The highly porous nature of metal-organic frameworks (MOFs) offers great potential for the delivery ...
There has been substantial progress in the field of metal–organic frameworks (MOFs) and their nanosc...
Nanoparticle-based therapeutics have received increasing attention, as these systems can alleviate m...
The composition and topology of metal-organic frameworks (MOFs) are exceptionally tailorable; moreov...
Open metalorganic frameworks (MOFs) have been widely studied as adsorbents of gases or small molecul...
Metal‐organic frameworks (MOFs) are emerging as leading candidates for nanoscale drug delivery, as a...
Metal-organic frameworks (MOFs) have found uses in adsorption, catalysis, gas storage and other indu...
Metal-organic frameworks (MOFs) are a class of highly crystalline nanoporous materials that self-ass...
Dual on‐demand delivery of therapeutic cargos and energy by transporters can latently mitigate side ...
We have used a family of Zr-based metal-organic frameworks (MOFs) with different functionalized (bro...
A new fabrication of {[H3O][Cu6(tpta)3(DMA)4(COO)]∙12H2O∙7DMA} (1) was used as a drug vehicle of 5-f...
The precision tenability of metal-organic frameworks (MOFs) enables the efficient encapsulation of a...
Metal-organic framework (MOF) is an exciting class of porous biomaterials that have been considered ...
The research presented in this thesis aims to assess the capacity of metal organic frameworks for p...
Effective penetration into cells, or binding to cell membranes is an essential property of an effect...