Progressive aging harms bone tissue structure and function and, thus, requires effective therapies focusing on permanent tissue regeneration rather than partial cure, beginning with regenerative medicine. Due to advances in tissue engineering, stimulating osteogenesis with biomimetic nanoparticles to create a regenerative niche has gained attention for its efficacy and cost-effectiveness. In particular, hydroxyapatite (HAP, Ca10(PO4)6(OH)2) has gained significant interest in orthopedic applications as a major inorganic mineral of native bone. Recently, magnetic nanoparticles (MNPs) have also been noted for their multifunctional potential for hyperthermia, MRI contrast agents, drug delivery, and mechanosensitive receptor manipulation to indu...
Targeting cancer cells without injuring normal cells is the prime objective in treatment of cancer. ...
There have been many applications in biomedical fields based on hydroxyapatite nanoparticles (HA NPs...
[[abstract]]The development of a novel alloplastic graft with both osteoinductive and osteoconductiv...
Progressive aging harms bone tissue structure and function and, thus, requires effective therapies f...
Nanoscale materials continue to amaze researchers due to their fascinating versatile properties. One...
Nanoscale materials continue to amaze researchers due to their fascinating versatile properties. One...
There are several metal ions including iron oxide nanoparticles, which has been used for doping hydr...
Beyond their well-known applications in bone tissue engineering, hydroxyapatite nanoparticles (HAp N...
Hydroxyapatite, the main inorganic material in natural bone, has been used widely for orthopaedic ap...
Hydroxyapatite, the main inorganic material in natural bone, has been used widely for orthopaedic ap...
Biomedical applications utilizing magnetic nanoparticles have the ability to impact diagnostic and t...
Biomedical applications utilizing magnetic nanoparticles have the ability to impact diagnostic and t...
Biomedical applications utilizing magnetic nanoparticles have the ability to impact diagnostic and t...
Xiao Bo Zeng, Hao Hu, Li Qin Xie, Fang Lan, Wen Jiang, Yao Wu, Zhong Wei GuNational Engineering Rese...
Targeting cancer cells without injuring normal cells is the prime objective in treatment of cancer. ...
Targeting cancer cells without injuring normal cells is the prime objective in treatment of cancer. ...
There have been many applications in biomedical fields based on hydroxyapatite nanoparticles (HA NPs...
[[abstract]]The development of a novel alloplastic graft with both osteoinductive and osteoconductiv...
Progressive aging harms bone tissue structure and function and, thus, requires effective therapies f...
Nanoscale materials continue to amaze researchers due to their fascinating versatile properties. One...
Nanoscale materials continue to amaze researchers due to their fascinating versatile properties. One...
There are several metal ions including iron oxide nanoparticles, which has been used for doping hydr...
Beyond their well-known applications in bone tissue engineering, hydroxyapatite nanoparticles (HAp N...
Hydroxyapatite, the main inorganic material in natural bone, has been used widely for orthopaedic ap...
Hydroxyapatite, the main inorganic material in natural bone, has been used widely for orthopaedic ap...
Biomedical applications utilizing magnetic nanoparticles have the ability to impact diagnostic and t...
Biomedical applications utilizing magnetic nanoparticles have the ability to impact diagnostic and t...
Biomedical applications utilizing magnetic nanoparticles have the ability to impact diagnostic and t...
Xiao Bo Zeng, Hao Hu, Li Qin Xie, Fang Lan, Wen Jiang, Yao Wu, Zhong Wei GuNational Engineering Rese...
Targeting cancer cells without injuring normal cells is the prime objective in treatment of cancer. ...
Targeting cancer cells without injuring normal cells is the prime objective in treatment of cancer. ...
There have been many applications in biomedical fields based on hydroxyapatite nanoparticles (HA NPs...
[[abstract]]The development of a novel alloplastic graft with both osteoinductive and osteoconductiv...