Stem cell senescence is one of the most representative events of organism aging and is responsible for many physiological abnormalities and disorders. In the scenario of orthopedic disease treatment, stem cell aging may affect the implantation outcome and even lead to operation failure. To explore whether stem cell aging will affect the osteointegration effect of titanium implant, a widely used micronano titanium (MNT) was fabricated. We first verified the expected osteointegration effect of the MNT, which could be attributed to the improvement of stem cell adhesion and osteogenic differentiation. Then, we obtained aged-derived bone marrow mesenchymal stem cells (BMSCs) and studied their biological behaviors on MNT both in vitro and in vivo...
peer reviewedTissue accumulation of p16INK4a-positive senescent cells is associated with age-related...
Age-related bone loss is attributed to the accumulation of senescent cells and their increasing prod...
Mesenchymal stromal cells (MSCs) from older donors have limited potential for bone tissue formation ...
Abstract As societal aging intensifies, senile osteoporosis has become a global public health concer...
ABSTRACT Aging negatively affects bone/titanium implant interactions. Our hypothesis is that the unb...
Mesenchymal stem cells (MSCs) are stem cells with the potential ability to differentiate into variou...
Chemical and topographical surface modifications on dental implants aim to increase the bone surface...
Titanium (Ti) is widely used as a biomaterial for endosseous implants due to its relatively inert su...
Macrophages and osteoclasts are both derived from monocyte/macrophage lineage, which plays as the os...
Abstract Dental implants are widely used to replace missing teeth, providing patients with unparalle...
BACKGROUND: The topography of an implant surface can serve as a powerful signaling cue for attached ...
Metallic implants have great application in clinical orthopedics. Implants wear out in vivo due to l...
Purpose: Human mesenchymal stem cells (MSCs) have the ability to differentiate into bone-forming ost...
Implant longevity is desired for all bone replacements and fixatives. Titanium (Ti) implants fail du...
Periosteum contains resident progenitor cells (PDPCs) representing an attractive alternative source ...
peer reviewedTissue accumulation of p16INK4a-positive senescent cells is associated with age-related...
Age-related bone loss is attributed to the accumulation of senescent cells and their increasing prod...
Mesenchymal stromal cells (MSCs) from older donors have limited potential for bone tissue formation ...
Abstract As societal aging intensifies, senile osteoporosis has become a global public health concer...
ABSTRACT Aging negatively affects bone/titanium implant interactions. Our hypothesis is that the unb...
Mesenchymal stem cells (MSCs) are stem cells with the potential ability to differentiate into variou...
Chemical and topographical surface modifications on dental implants aim to increase the bone surface...
Titanium (Ti) is widely used as a biomaterial for endosseous implants due to its relatively inert su...
Macrophages and osteoclasts are both derived from monocyte/macrophage lineage, which plays as the os...
Abstract Dental implants are widely used to replace missing teeth, providing patients with unparalle...
BACKGROUND: The topography of an implant surface can serve as a powerful signaling cue for attached ...
Metallic implants have great application in clinical orthopedics. Implants wear out in vivo due to l...
Purpose: Human mesenchymal stem cells (MSCs) have the ability to differentiate into bone-forming ost...
Implant longevity is desired for all bone replacements and fixatives. Titanium (Ti) implants fail du...
Periosteum contains resident progenitor cells (PDPCs) representing an attractive alternative source ...
peer reviewedTissue accumulation of p16INK4a-positive senescent cells is associated with age-related...
Age-related bone loss is attributed to the accumulation of senescent cells and their increasing prod...
Mesenchymal stromal cells (MSCs) from older donors have limited potential for bone tissue formation ...