We demonstrate for the first time the potential of zeolitic-imidazolate framework-8 nanoparticles to be incorporated within a renal scaffold while retaining their ability to remove uremic toxins (mainly hydrophobic toxins like p-cresol) under flow conditions. This work may pave the way for the future development of novel adsorbents for dialysis and/or artificial kidneys
The aim of this study is to explore the kidney-targeting capability of mesoscale nanoparticles (MNPs...
Acute kidney injury (AKI) is a serious kidney disease without specific medications currently except ...
Mixed Matrix Membrane Adsorbers (MMMAs) based on Cellulose Acetate (CA) were prepared and tested for...
We demonstrate for the first time the potential of zeolitic-imidazolate framework-8 nanoparticles to...
This report describes the compositional and structural design strategy of a zeolite-polymer composit...
Kidney disease management and treatment are currently causing a substantial global burden. The kidne...
Hemodialysis, developed in 1960s, has served as a treatment for patients with end stage renal diseas...
The design of miniaturized hemodialysis devices, such as wearable artificial kidneys, requires regen...
More than 3 million patients are treated for kidney failure worldwide. Azotaemic uraemic toxins, suc...
A nanofiber mesh was prepared for the adsorption of indoxyl sulfate (IS), a toxin associated with ch...
Uremic toxins often accumulate in patients with compromised kidney function, like those with chronic...
Nanoscale size controllable and surface modifiable zeolitic imidazolate framework-8–poly(acrylic ac...
The kidneys are vital organs performing several essential functions. Their primary function is the f...
After contextualising the generic frameworks of nanotechnology and nanomedicine, the 2disciplines ar...
Adsorbents designed with porosity which allows the removal of protein bound and high molecular weigh...
The aim of this study is to explore the kidney-targeting capability of mesoscale nanoparticles (MNPs...
Acute kidney injury (AKI) is a serious kidney disease without specific medications currently except ...
Mixed Matrix Membrane Adsorbers (MMMAs) based on Cellulose Acetate (CA) were prepared and tested for...
We demonstrate for the first time the potential of zeolitic-imidazolate framework-8 nanoparticles to...
This report describes the compositional and structural design strategy of a zeolite-polymer composit...
Kidney disease management and treatment are currently causing a substantial global burden. The kidne...
Hemodialysis, developed in 1960s, has served as a treatment for patients with end stage renal diseas...
The design of miniaturized hemodialysis devices, such as wearable artificial kidneys, requires regen...
More than 3 million patients are treated for kidney failure worldwide. Azotaemic uraemic toxins, suc...
A nanofiber mesh was prepared for the adsorption of indoxyl sulfate (IS), a toxin associated with ch...
Uremic toxins often accumulate in patients with compromised kidney function, like those with chronic...
Nanoscale size controllable and surface modifiable zeolitic imidazolate framework-8–poly(acrylic ac...
The kidneys are vital organs performing several essential functions. Their primary function is the f...
After contextualising the generic frameworks of nanotechnology and nanomedicine, the 2disciplines ar...
Adsorbents designed with porosity which allows the removal of protein bound and high molecular weigh...
The aim of this study is to explore the kidney-targeting capability of mesoscale nanoparticles (MNPs...
Acute kidney injury (AKI) is a serious kidney disease without specific medications currently except ...
Mixed Matrix Membrane Adsorbers (MMMAs) based on Cellulose Acetate (CA) were prepared and tested for...