It is generally accepted that biodegradable materials greatly influence the nearby microenvironment where cells reside; however, the range of interfacial properties has seldom been discussed due to technical bottlenecks. This study aims to depict biomaterial microenvironment boundaries by correlating interfacial H+ distribution with surrounding cell behaviors. Using a disuse-related osteoporotic mouse model, we confirmed that the abnormal activated osteoclasts could be suppressed under relatively alkaline conditions. The differentiation and apatite-resorption capability of osteoclasts were “switched off” when cultured in titrated material extracts with pH values higher than 7.8. To generate a localized alkaline microenvironment, a series of...
Bone is a sophisticated organic-inorganic hybrid material, whose formation involves a complex spatio...
Abstract Purpose Osseointegration at the titanium surface-bone interface is one of the key factors a...
A biomimetic approach involving the self-assembly of mineral within the pores of 3-dimensional porou...
In scenario of osteoporotic fracture, significantly higher activity of osteoclasts than osteoblasts...
The present study aimed at elucidating the effect of local pH in the extracellular microenvironment ...
International audienceThe present study aimed at elucidating the effect of local pH in the extracell...
We investigated the effects of alkaline pH on developing osteoblasts. Cells of the osteoblast-like c...
The interactions between material surfaces and bacteria/cells have been widely investigated, based o...
The objective of this study was to address the hypothesis that changes in extracellular pH alter col...
Bone is capable of adjusting size, shape, and quality to maintain its strength, toughness, and stiff...
A deeper understanding of the detailed mechanism of in vivo tissue healing is necessary for the deve...
Background: Surface topography is a key parameter in bone cells–biomaterials interactions. This stud...
Bone is a biomaterial undergoing continuous renewal. The renewal process is known as bone remodellin...
Bone is a biomaterial undergoing continuous renewal. The renewal process is known as bone remodellin...
Osteogenesis was studied using rat bone cells cultured on hydroxyapatite (HA) or titanium (Ti) coat...
Bone is a sophisticated organic-inorganic hybrid material, whose formation involves a complex spatio...
Abstract Purpose Osseointegration at the titanium surface-bone interface is one of the key factors a...
A biomimetic approach involving the self-assembly of mineral within the pores of 3-dimensional porou...
In scenario of osteoporotic fracture, significantly higher activity of osteoclasts than osteoblasts...
The present study aimed at elucidating the effect of local pH in the extracellular microenvironment ...
International audienceThe present study aimed at elucidating the effect of local pH in the extracell...
We investigated the effects of alkaline pH on developing osteoblasts. Cells of the osteoblast-like c...
The interactions between material surfaces and bacteria/cells have been widely investigated, based o...
The objective of this study was to address the hypothesis that changes in extracellular pH alter col...
Bone is capable of adjusting size, shape, and quality to maintain its strength, toughness, and stiff...
A deeper understanding of the detailed mechanism of in vivo tissue healing is necessary for the deve...
Background: Surface topography is a key parameter in bone cells–biomaterials interactions. This stud...
Bone is a biomaterial undergoing continuous renewal. The renewal process is known as bone remodellin...
Bone is a biomaterial undergoing continuous renewal. The renewal process is known as bone remodellin...
Osteogenesis was studied using rat bone cells cultured on hydroxyapatite (HA) or titanium (Ti) coat...
Bone is a sophisticated organic-inorganic hybrid material, whose formation involves a complex spatio...
Abstract Purpose Osseointegration at the titanium surface-bone interface is one of the key factors a...
A biomimetic approach involving the self-assembly of mineral within the pores of 3-dimensional porou...