Morphologically discrete nanoarchitectures, which mimic the structural complexity of biological systems, are an increasingly popular design paradigm in the development of new nanomedical technologies. Herein, engineered polymeric stomatocytes are presented as a structural and functional mimic of red blood cells (RBCs) with multifunctional therapeutic features. Stomatocytes, comprising biodegradable poly(ethylene glycol) block-poly(D,L-lactide), possess an oblate-like morphology reminiscent of RBCs. This unique dual-compartmentalized structure is augmented via encapsulation of multifunctional cargo (oxygen-binding hemoglobin and the photosensitizer chlorin e6). Furthermore, stomatocytes are decorated with a cell membrane isolated from erythr...
Cancer therapies aim to eliminate malignant tumor tissues that grow uncontrollably within patients. ...
The advent of nanomedicine has had a tremendous impact on patient outcomes in the clinic. At the nan...
Poly(ethylene glycol)-Poly(lactic acid) block-copolymer (PEGPLA) was prepared and characterized usin...
Morphologically discrete nanoarchitectures, which mimic the structural complexity of biological syst...
\u3cp\u3eMorphologically discrete nanoarchitectures, which mimic the structural complexity of biolog...
Bowl-shaped biodegradable polymersomes, or stomatocytes, have much potential as drug delivery system...
Abstract Background RBC membrane derived nanoparticles (NPs) represent an emerging platform with pro...
Herein we describe the development of the Red Blood Cell coated nanoparticle, RBC-NP. Purified natur...
Cellular therapy has gained impressive momentum in recent years as has the promise to become the thi...
Cell membrane coated nanoparticles (NPs) is a biomimetic strategy developed to engineer therapeutic ...
In terms of the extremely small size and large specific surface area, nanomaterials often exhibit un...
Biomimetic-cell-membrane-camouflaged polymeric nanocarriers, possessing advantages related to the fu...
Nanoparticles camouflaged by red blood cell (RBC) membranes have attracted considerable attention ow...
Multiple cell plasma membranes have been utilized for surface functionalization of synthetic nanomat...
Cancer therapies aim to eliminate malignant tumor tissues that grow uncontrollably within patients. ...
The advent of nanomedicine has had a tremendous impact on patient outcomes in the clinic. At the nan...
Poly(ethylene glycol)-Poly(lactic acid) block-copolymer (PEGPLA) was prepared and characterized usin...
Morphologically discrete nanoarchitectures, which mimic the structural complexity of biological syst...
\u3cp\u3eMorphologically discrete nanoarchitectures, which mimic the structural complexity of biolog...
Bowl-shaped biodegradable polymersomes, or stomatocytes, have much potential as drug delivery system...
Abstract Background RBC membrane derived nanoparticles (NPs) represent an emerging platform with pro...
Herein we describe the development of the Red Blood Cell coated nanoparticle, RBC-NP. Purified natur...
Cellular therapy has gained impressive momentum in recent years as has the promise to become the thi...
Cell membrane coated nanoparticles (NPs) is a biomimetic strategy developed to engineer therapeutic ...
In terms of the extremely small size and large specific surface area, nanomaterials often exhibit un...
Biomimetic-cell-membrane-camouflaged polymeric nanocarriers, possessing advantages related to the fu...
Nanoparticles camouflaged by red blood cell (RBC) membranes have attracted considerable attention ow...
Multiple cell plasma membranes have been utilized for surface functionalization of synthetic nanomat...
Cancer therapies aim to eliminate malignant tumor tissues that grow uncontrollably within patients. ...
The advent of nanomedicine has had a tremendous impact on patient outcomes in the clinic. At the nan...
Poly(ethylene glycol)-Poly(lactic acid) block-copolymer (PEGPLA) was prepared and characterized usin...