A unique delivery system to reversibly and controllably load and release proteins under physiological conditions is desirable for protein therapeutics. We fabricate an ultrafast exponentially growing nanoporous multilayer structure comprised of two weak polyelectrolytes, poly(ethyleneimine) and alginate with thickness and chemical composition controlled by the assembly pH. For the first time, the assembled multilayered structure demonstrates stimuli-free reversible protein loading and release capability at physiological conditions by a synthetic material. The protein loading and release time can also be controlled by the assembled bilayer number. The highest loading capacity for the target protein and longest release time of proteins for la...
This review deals with the layer-by-layer (LbL) assembly of polyelectrolyte multilayers of biopolyme...
Many applications using drug-carrying biomedical materials require on-demand, localized delivery of ...
The design of smart hydrogel actuators fully constructed from natural polymers for assessing the bio...
A unique delivery system to reversibly and controllably load and release proteins under physiologica...
Exponentially growing layer-by-layer hierarchical nanoporous films have been used as a promising sys...
Polyelectrolyte multilayer (PEM) thin film composed of weak polyelectrolytes was designed by layer-b...
Herein long-term delivery of proteins from biodegradable thin film devices is demonstrated, where a ...
Recent research has highlighted degradable multilayer films that enable the programmed release of di...
Layer-by-layer (LbL) self-assembled weak polyelectrolyte-based multilayered films have shown superio...
Multidrug regimens can sometimes treat recalcitrant diseases when single-drug therapies fail. Recapi...
Thesis: Ph. D. in Biological Chemistry, Massachusetts Institute of Technology, Department of Chemist...
Herein long-term delivery of proteins from biodegradable thin film devices is demonstrated, where a ...
Many applications using drug-carrying biomedical materials require on-demand, localized delivery of ...
The ability to control the timing and order of release of different therapeutic drugs will play a pi...
Layer-by-layer (LBL) assembly is an attractive platform for controlled release of biologics given it...
This review deals with the layer-by-layer (LbL) assembly of polyelectrolyte multilayers of biopolyme...
Many applications using drug-carrying biomedical materials require on-demand, localized delivery of ...
The design of smart hydrogel actuators fully constructed from natural polymers for assessing the bio...
A unique delivery system to reversibly and controllably load and release proteins under physiologica...
Exponentially growing layer-by-layer hierarchical nanoporous films have been used as a promising sys...
Polyelectrolyte multilayer (PEM) thin film composed of weak polyelectrolytes was designed by layer-b...
Herein long-term delivery of proteins from biodegradable thin film devices is demonstrated, where a ...
Recent research has highlighted degradable multilayer films that enable the programmed release of di...
Layer-by-layer (LbL) self-assembled weak polyelectrolyte-based multilayered films have shown superio...
Multidrug regimens can sometimes treat recalcitrant diseases when single-drug therapies fail. Recapi...
Thesis: Ph. D. in Biological Chemistry, Massachusetts Institute of Technology, Department of Chemist...
Herein long-term delivery of proteins from biodegradable thin film devices is demonstrated, where a ...
Many applications using drug-carrying biomedical materials require on-demand, localized delivery of ...
The ability to control the timing and order of release of different therapeutic drugs will play a pi...
Layer-by-layer (LBL) assembly is an attractive platform for controlled release of biologics given it...
This review deals with the layer-by-layer (LbL) assembly of polyelectrolyte multilayers of biopolyme...
Many applications using drug-carrying biomedical materials require on-demand, localized delivery of ...
The design of smart hydrogel actuators fully constructed from natural polymers for assessing the bio...