A deeper understanding of the detailed mechanism of in vivo tissue healing is necessary for the development of novel regenerative therapies. Among several external factors, environmental pH is one of the crucial parameters that greatly affects enzyme activity and cellular biochemical reactions involving tissue repair and homeostasis. In this study, in order to analyze the microenvironmental conditions during bone healing, we first measured the pH in vivo at the bone healing site using a high-resolution fiber optic pH microsensor directly in femur defects and tooth extraction sockets. The pH was shown to decrease from physiological 7.4 to 6.8 during the initial two days of healing (inflammatory phase). In the same initial stages of the infla...
Bone tissue engineering is a promising field of regenerative medicine in which cultured cells, scaff...
A myriad of pH-sensitive scaffolds has been reported in recent decades. Information on their behavio...
Several inflammatory processes underlie excessive bone formation, including chronic inflammation of ...
The stem cell fraction of a cell population is finely tuned by stimuli from the external microenviro...
We investigated the effects of alkaline pH on developing osteoblasts. Cells of the osteoblast-like c...
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...
The objective of this study was to address the hypothesis that changes in extracellular pH alter col...
Context: Bone marrow (BM) pH has rarely been measured, and the long BM has barely been studied at al...
In scenario of osteoporotic fracture, significantly higher activity of osteoclasts than osteoblasts...
It is generally accepted that biodegradable materials greatly influence the nearby microenvironment ...
BACKGROUND AND PURPOSE: Growth factors released from platelets have potent effects on fracture and w...
A new paradigm is coming to the forefront of chronic wound research and a potential treatment target...
STUDY DESIGN: Responses of mesenchymal stem cells (MSCs) from 2 age groups was analyzed under chemic...
Abstract Purpose Osseointegration at the titanium surface-bone interface is one of the key factors a...
Bone tissue engineering is a promising field of regenerative medicine in which cultured cells, scaff...
A myriad of pH-sensitive scaffolds has been reported in recent decades. Information on their behavio...
Several inflammatory processes underlie excessive bone formation, including chronic inflammation of ...
The stem cell fraction of a cell population is finely tuned by stimuli from the external microenviro...
We investigated the effects of alkaline pH on developing osteoblasts. Cells of the osteoblast-like c...
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...
The objective of this study was to address the hypothesis that changes in extracellular pH alter col...
Context: Bone marrow (BM) pH has rarely been measured, and the long BM has barely been studied at al...
In scenario of osteoporotic fracture, significantly higher activity of osteoclasts than osteoblasts...
It is generally accepted that biodegradable materials greatly influence the nearby microenvironment ...
BACKGROUND AND PURPOSE: Growth factors released from platelets have potent effects on fracture and w...
A new paradigm is coming to the forefront of chronic wound research and a potential treatment target...
STUDY DESIGN: Responses of mesenchymal stem cells (MSCs) from 2 age groups was analyzed under chemic...
Abstract Purpose Osseointegration at the titanium surface-bone interface is one of the key factors a...
Bone tissue engineering is a promising field of regenerative medicine in which cultured cells, scaff...
A myriad of pH-sensitive scaffolds has been reported in recent decades. Information on their behavio...
Several inflammatory processes underlie excessive bone formation, including chronic inflammation of ...