It has long been hypothesized that elastic modulus governs the biodistribution and circulation times of particles and cells in blood; however, this notion has never been rigorously tested. We synthesized hydrogel microparticles with tunable elasticity in the physiological range, which resemble red blood cells in size and shape, and tested their behavior in vivo. Decreasing the modulus of these particles altered their biodistribution properties, allowing them to bypass several organs, such as the lung, that entrapped their more rigid counterparts, resulting in increasingly longer circulation times well past those of conventional microparticles. An 8-fold decrease in hydrogel modulus correlated to a greater than 30-fold increase in the elimin...
In spite of the development of cardio-vascular prosthetic devices, prosthetic heart valves, pulsatil...
Human red blood cells (RBCs) need to deform in order to pass through capillaries in human vasculatur...
The ability to create cell-laden fluidic models that mimic the geometries and physical properties of...
It has long been hypothesized that elastic modulus governs the biodistribution and circulation times...
There is a growing recognition that the deformability of particles used for drug delivery plays a si...
This work utilized PRINT (particle replication in non-wetting templates) technology to fabricate ext...
We synthesized extremely deformable red blood cell-like microgel particles and loaded them with bovi...
Prolonging the circulation time (CT) of microparticles (MPs) in the blood is key for a successful mi...
available in PMC 2011 July 15Recent advances in the synthesis of polymeric colloids have opened the ...
Lowering the modulus of hydrogel particles could enable them to bypass in vivo physical barriers tha...
We synthesized extremely deformable red blood cell-like microgel particles and loaded them with bovi...
Peptide receptor radionuclide therapy is used to treat solid tumors by locally delivering radiation....
Keeping the stemness of human mesenchymal stem cells (hMSCs) and their adipocyte differentiation pot...
We report the engineering of poly(ethylene glycol) (PEG) hydrogel particles using a mesoporous silic...
Microfluidic devices are an extremely useful tool to explore in vitro the pathophysiology of many di...
In spite of the development of cardio-vascular prosthetic devices, prosthetic heart valves, pulsatil...
Human red blood cells (RBCs) need to deform in order to pass through capillaries in human vasculatur...
The ability to create cell-laden fluidic models that mimic the geometries and physical properties of...
It has long been hypothesized that elastic modulus governs the biodistribution and circulation times...
There is a growing recognition that the deformability of particles used for drug delivery plays a si...
This work utilized PRINT (particle replication in non-wetting templates) technology to fabricate ext...
We synthesized extremely deformable red blood cell-like microgel particles and loaded them with bovi...
Prolonging the circulation time (CT) of microparticles (MPs) in the blood is key for a successful mi...
available in PMC 2011 July 15Recent advances in the synthesis of polymeric colloids have opened the ...
Lowering the modulus of hydrogel particles could enable them to bypass in vivo physical barriers tha...
We synthesized extremely deformable red blood cell-like microgel particles and loaded them with bovi...
Peptide receptor radionuclide therapy is used to treat solid tumors by locally delivering radiation....
Keeping the stemness of human mesenchymal stem cells (hMSCs) and their adipocyte differentiation pot...
We report the engineering of poly(ethylene glycol) (PEG) hydrogel particles using a mesoporous silic...
Microfluidic devices are an extremely useful tool to explore in vitro the pathophysiology of many di...
In spite of the development of cardio-vascular prosthetic devices, prosthetic heart valves, pulsatil...
Human red blood cells (RBCs) need to deform in order to pass through capillaries in human vasculatur...
The ability to create cell-laden fluidic models that mimic the geometries and physical properties of...