نتایج جستجو برای: bioceramics

تعداد نتایج: 455  

Journal: :Acta biomaterialia 2009
A Macchetta I G Turner C R Bowen

A room temperature camphene-based freeze-casting method was used to fabricate hydroxyapatite/tricalcium phosphate (HA/TCP) ceramic scaffolds. By varying the solid loading of the mixture and the freezing temperature, a range of structures with different pore sizes and strength characteristics were achieved. The macropore size of the HA/TCP bioceramics was in the range of 100-200 microm, 40-80 mi...

Journal: :International Journal of Nanomedicine 2008
Montserrat Colilla Miguel Manzano María Vallet-Regí

Research in the development of new bioceramics with local drug delivery capability for bone regeneration technologies is receiving great interest by the scientific biomedical community. Among bioceramics, silica-based ordered mesoporous materials are excellent candidates as bone implants due to two main reasons: first, the bioactive behavior of such materials in contact with simulated body flui...

2018
Chris Steffi Zhilong Shi Chee Hoe Kong Wilson Wang

Biomaterial integration in bone depends on bone remodelling at the bone-implant interface. Optimal balance of bone resorption by osteoclasts and bone deposition by osteoblasts is crucial for successful implantation, especially in orthopaedic surgery. Most studies examined osteoblast differentiation on biomaterials, yet few research has been conducted to explore the effect of different orthopaed...

Journal: :Acta biomaterialia 2012
Ayako Oyane Xiupeng Wang Yu Sogo Atsuo Ito Hideo Tsurushima

In this review, the surface-mediated gene transfer system using calcium phosphate composite layers is described. Calcium phosphate ceramics are osteoconductive bioceramics used typically in orthopedic and dental applications. Additionally, calcium phosphate particles precipitated by a liquid-phase process have long been used as a safe and biocompatible transfection reagent in molecular biology....

2017
Yufei Tang Cong Wu Zixiang Wu Long Hu Wei Zhang Kang Zhao

The piezoelectric effect of biological piezoelectric materials promotes bone growth. However, the material should be subjected to stress before it can produce an electric charge that promotes bone repair and reconstruction conducive to fracture healing. A novel method for in vitro experimentation of biological piezoelectric materials with physiological load is presented. A dynamic loading devic...

Journal: :Journal of Functional Biomaterials 2010

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