Piezoelectricity is considered to be one of the key functionalities in biomaterials to boost bone tissue regeneration, however, integrating biocompatibility, biodegradability and 3D structure with pronounced piezoresponse remains a material challenge. Herein, novel hybrid biocompatible 3D scaffolds based on biodegradable poly(3-hydroxybutyrate) (PHB) and reduced graphene oxide (rGO) flakes have been developed. Nanoscale insights revealed a more homogenous distribution and superior surface potential values of PHB fibers (33 +/- 29 mV) with increasing rGO content up to 1.0 wt% (314 +/- 31 mV). The maximum effective piezoresponse was detected at 0.7 wt% rGO content, demonstrating 2.5 and 1.7 times higher out-of-plane and in-plane values, respe...
As the next generation of materials for bone reconstruction, we propose a multifunctional bioactive ...
The incidence of bone disorders worldwide is increasing and new and more effective strategies for bo...
International audienceLead-free alternative materials for converting mechanical energy into electric...
Piezoelectricity is considered to be one of the key functionalities in biomaterials to boost bone ti...
Endogenous bioelectrical signals are one of the most relevant cues to determine tissue function in e...
Piezoelectric materials are promising for biomedical applications because they can provide mechanica...
Electrical and ultrasonic stimulation have both shown great potential for promoting cell proliferati...
Elaboration of novel biocomposites providing simultaneously both biodegradability and stimulated bon...
The authors thanks to Mr. A. Anyugin and A. Zviagin for the assistance with experiments. The authors...
This is a comprehensive study on the reinforcement of electrospun poly(3-hydroxybutyrate) (PHB) scaf...
Bone defects resulting from trauma, disease or surgery are a significant health problem worldwide. T...
Elaboration of novel biocomposites providing simultaneously both biodegradability and stimulated bon...
In this paper, we describe three-dimensional (3D) hierarchical graphene–hydroxyapatite hybrid biosca...
An important aspect of bone tissue engineering (BTE) is bone regeneration, an interdisciplinary proc...
Lead-free alternative materials for converting mechanical energy into electrical energy through piez...
As the next generation of materials for bone reconstruction, we propose a multifunctional bioactive ...
The incidence of bone disorders worldwide is increasing and new and more effective strategies for bo...
International audienceLead-free alternative materials for converting mechanical energy into electric...
Piezoelectricity is considered to be one of the key functionalities in biomaterials to boost bone ti...
Endogenous bioelectrical signals are one of the most relevant cues to determine tissue function in e...
Piezoelectric materials are promising for biomedical applications because they can provide mechanica...
Electrical and ultrasonic stimulation have both shown great potential for promoting cell proliferati...
Elaboration of novel biocomposites providing simultaneously both biodegradability and stimulated bon...
The authors thanks to Mr. A. Anyugin and A. Zviagin for the assistance with experiments. The authors...
This is a comprehensive study on the reinforcement of electrospun poly(3-hydroxybutyrate) (PHB) scaf...
Bone defects resulting from trauma, disease or surgery are a significant health problem worldwide. T...
Elaboration of novel biocomposites providing simultaneously both biodegradability and stimulated bon...
In this paper, we describe three-dimensional (3D) hierarchical graphene–hydroxyapatite hybrid biosca...
An important aspect of bone tissue engineering (BTE) is bone regeneration, an interdisciplinary proc...
Lead-free alternative materials for converting mechanical energy into electrical energy through piez...
As the next generation of materials for bone reconstruction, we propose a multifunctional bioactive ...
The incidence of bone disorders worldwide is increasing and new and more effective strategies for bo...
International audienceLead-free alternative materials for converting mechanical energy into electric...