Ischemic injuries and local hypoxia can result in osteocytes dysfunction and play a key role in the pathogenesis of avascular osteonecrosis. Conventional imaging techniques including magnetic resonance imaging (MRI) and computed tomography (CT) can reveal structural and functional changes within bony anatomy; however, characterization of osteocyte behavioral dynamics in the setting of osteonecrosis at the single cell resolution is limited. Here, we demonstrate an optical approach to study real-time osteocyte functions in vivo. Using nicotinamide adenine dinucleotide (NADH) as a biomarker for metabolic dynamics in osteocytes, we showed that NADH level within osteocytes transiently increase significantly after local ischemia through non-invas...
Millions of cases of bone injury or loss due to trauma, osteoporosis, and cancer occur in the United...
AbstractThe turnover of bone is a tightly regulated process between bone formation and resorption to...
Osteoclasts are bone-resorbing cells derived from the monocyte/macrophage lineage. Excess osteoclast...
Ischemic injuries and local hypoxia can result in osteocytes dysfunction and play a key role in the ...
Osteoclasts, the multinucleated bone-resorbing cells, are involved in the destructive breakdown of b...
It is widely hypothesized that osteocytes are the mechano-sensors residing in the bone's mineralized...
We show the intracellular upregulation of NO production after mechanical stimulation, an essential c...
Hasegawa T., Kikuta J., Ishii M.. Imaging the bone-immune cell interaction in bone destruction. Fron...
Bone is a highly dynamic organ that is continuously being remodeled by the reciprocal interactions b...
In vivo two-photon fluorescence imaging is a powerful modality to monitor cell dynamics in biomedica...
Osteocytes are cells that reside in the mineralized bone matrix. They are the cells that sense mecha...
We employ a clinical multiphoton microscope to monitor in vivo and noninvasively the changes in redu...
Preclinical imaging in osteoarthritis is a rapidly growing area with three principal objectives: to ...
Osteocytes are vital for regulating bone remodeling by sensing the flow-induced mechanical stimuli a...
The physiological activity of osteoblasts is known to be closely related to increased intracellular ...
Millions of cases of bone injury or loss due to trauma, osteoporosis, and cancer occur in the United...
AbstractThe turnover of bone is a tightly regulated process between bone formation and resorption to...
Osteoclasts are bone-resorbing cells derived from the monocyte/macrophage lineage. Excess osteoclast...
Ischemic injuries and local hypoxia can result in osteocytes dysfunction and play a key role in the ...
Osteoclasts, the multinucleated bone-resorbing cells, are involved in the destructive breakdown of b...
It is widely hypothesized that osteocytes are the mechano-sensors residing in the bone's mineralized...
We show the intracellular upregulation of NO production after mechanical stimulation, an essential c...
Hasegawa T., Kikuta J., Ishii M.. Imaging the bone-immune cell interaction in bone destruction. Fron...
Bone is a highly dynamic organ that is continuously being remodeled by the reciprocal interactions b...
In vivo two-photon fluorescence imaging is a powerful modality to monitor cell dynamics in biomedica...
Osteocytes are cells that reside in the mineralized bone matrix. They are the cells that sense mecha...
We employ a clinical multiphoton microscope to monitor in vivo and noninvasively the changes in redu...
Preclinical imaging in osteoarthritis is a rapidly growing area with three principal objectives: to ...
Osteocytes are vital for regulating bone remodeling by sensing the flow-induced mechanical stimuli a...
The physiological activity of osteoblasts is known to be closely related to increased intracellular ...
Millions of cases of bone injury or loss due to trauma, osteoporosis, and cancer occur in the United...
AbstractThe turnover of bone is a tightly regulated process between bone formation and resorption to...
Osteoclasts are bone-resorbing cells derived from the monocyte/macrophage lineage. Excess osteoclast...