We investigated the biophysical effects (cell elasticity and spring constant) caused on Saos-2 human osteoblast-like cells by nanosized metal (Co and Ti) wear debris, as well as the adhesive characteristics of cells after exposure to the metal nanoparticles. Cell mitochondrial activity was investigated using the MTT assays; along with LDH assay, metal uptake, cell apoptosis and mineralisation output (alizarin red assay) of the cells. Osteoblasts mitochondrial activity was not affected by Ti nanoparticles at concentrations up to 1 mg/ml and by Cobalt nanoparticles at concentrations < 0.5 mg/ml; however elasticity and spring constant were significantly modified by the exposure to nanoparticles of these metals in agreement with the alterati...
Aim: To demonstrate that cobalt nanoparticles doses are safe for use in humans and to understand the...
Karolina Niska,1 Katarzyna Pyszka,1 Cecylia Tukaj,2 Michal Wozniak,1 Marek Witold Radomski,3–5...
Aim: To demonstrate that cobalt nanoparticles doses are safe for use in humans and to understand the...
We investigated the biophysical effects (cell elasticity and spring constant) caused on Saos-2 human...
We investigated the biophysical effects (cell elasticity and spring constant) caused on Saos-2 human...
We investigated the biophysical effects (cell elasticity and spring constant) caused on Saos-2 human...
Bone cells are damaged by wear particles originating from total joint replacement implants. We inves...
Periprosthetic osteolysis and implant loosening are the outcomes of wear debris generation in total ...
Periprosthetic osteolysis and implant loosening are the outcomes of wear debris generation in total ...
Although several studies assess the biological effects of micro and titanium dioxide nanoparticles (...
Hip resurfacing with cobalt–chromium (CoCr) alloy was developed as a surgical alternative to total h...
The aim of this study was to compare the effects of two types of nanomaterials, cobalt-exchanged hyd...
Cobalt (Co) and chromium (Cr) ions and nanoparticles equivalent to those released through tribo-corr...
Aim: To demonstrate that cobalt nanoparticles doses are safe for use in humans and to understand the...
Aim: To demonstrate that cobalt nanoparticles doses are safe for use in humans and to understand the...
Aim: To demonstrate that cobalt nanoparticles doses are safe for use in humans and to understand the...
Karolina Niska,1 Katarzyna Pyszka,1 Cecylia Tukaj,2 Michal Wozniak,1 Marek Witold Radomski,3–5...
Aim: To demonstrate that cobalt nanoparticles doses are safe for use in humans and to understand the...
We investigated the biophysical effects (cell elasticity and spring constant) caused on Saos-2 human...
We investigated the biophysical effects (cell elasticity and spring constant) caused on Saos-2 human...
We investigated the biophysical effects (cell elasticity and spring constant) caused on Saos-2 human...
Bone cells are damaged by wear particles originating from total joint replacement implants. We inves...
Periprosthetic osteolysis and implant loosening are the outcomes of wear debris generation in total ...
Periprosthetic osteolysis and implant loosening are the outcomes of wear debris generation in total ...
Although several studies assess the biological effects of micro and titanium dioxide nanoparticles (...
Hip resurfacing with cobalt–chromium (CoCr) alloy was developed as a surgical alternative to total h...
The aim of this study was to compare the effects of two types of nanomaterials, cobalt-exchanged hyd...
Cobalt (Co) and chromium (Cr) ions and nanoparticles equivalent to those released through tribo-corr...
Aim: To demonstrate that cobalt nanoparticles doses are safe for use in humans and to understand the...
Aim: To demonstrate that cobalt nanoparticles doses are safe for use in humans and to understand the...
Aim: To demonstrate that cobalt nanoparticles doses are safe for use in humans and to understand the...
Karolina Niska,1 Katarzyna Pyszka,1 Cecylia Tukaj,2 Michal Wozniak,1 Marek Witold Radomski,3–5...
Aim: To demonstrate that cobalt nanoparticles doses are safe for use in humans and to understand the...