Incurable implant-related infection may cause catastrophic consequences due to the existence of a biofilm that resists the infiltration of host immune cells and antibiotics. Innovative approaches inspired by nanomedicine, e.g., engineering innovative multifunctional bionic coating systems on the surface of implants, are becoming increasingly attractive. Herein, 2D black phosphorus nanosheets (BPs) were loaded onto a hydroxyapatite (HA)-coated metal implant to construct a BPs@HA composite coating. With its photothermal conversion effect and in situ biomineralization, the BPs@HA coating shows excellent performances in ablating the bacterial biofilm and accelerating fracture healing, which were verified through both in vitro and in vivo studie...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2016.Cata...
Biomimetic modification of hydroxyapatite on a polymer surface is a potent strategy for activating b...
Current trends in biomaterials science address the issue of integrating artificial materials as orth...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2014.Cata...
Bone osteogenesis is a complex phenomenon dependent on numerous microenvironmental cues, with their ...
Effective bone regeneration remains a challenge for bone-tissue engineering. In this study, we propo...
Abstract At bio-safe concentrations, black phosphorus nanoparticles activated TG2, and promote the e...
Bone osteogenesis is a complex phenomenon dependent on numerous microenvironmental cues, with their ...
International audienceBone mimicking coatings provide a complex microenvironment in which material, ...
Effective osteogenesis remains a challenge in the treatment of bone defects. The emergence of artifi...
The functional success of a biomedical implant critically depends on its stable bonding with the hos...
Recurrent bacterial infection is one of the main reasons of implant failure, hugely impacting the pa...
As a biodegradable material, black phosphorus (BP) has been considered as an efficient agent for can...
A combination of bioceramics and polymeric nanofibers holds promising potential for bone tissue engi...
A combination of bioceramics and polymeric nanofibers holds promising potential for bone tissue engi...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2016.Cata...
Biomimetic modification of hydroxyapatite on a polymer surface is a potent strategy for activating b...
Current trends in biomaterials science address the issue of integrating artificial materials as orth...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2014.Cata...
Bone osteogenesis is a complex phenomenon dependent on numerous microenvironmental cues, with their ...
Effective bone regeneration remains a challenge for bone-tissue engineering. In this study, we propo...
Abstract At bio-safe concentrations, black phosphorus nanoparticles activated TG2, and promote the e...
Bone osteogenesis is a complex phenomenon dependent on numerous microenvironmental cues, with their ...
International audienceBone mimicking coatings provide a complex microenvironment in which material, ...
Effective osteogenesis remains a challenge in the treatment of bone defects. The emergence of artifi...
The functional success of a biomedical implant critically depends on its stable bonding with the hos...
Recurrent bacterial infection is one of the main reasons of implant failure, hugely impacting the pa...
As a biodegradable material, black phosphorus (BP) has been considered as an efficient agent for can...
A combination of bioceramics and polymeric nanofibers holds promising potential for bone tissue engi...
A combination of bioceramics and polymeric nanofibers holds promising potential for bone tissue engi...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2016.Cata...
Biomimetic modification of hydroxyapatite on a polymer surface is a potent strategy for activating b...
Current trends in biomaterials science address the issue of integrating artificial materials as orth...