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The effect of alendronate doped calcium phosphates on bone cells activity

Academic Article
Publication Date:
2012
abstract:
This study demonstrates that octacalcium phosphate (OCP) is a suitable substrate for alendronate local action towards bone cells. The results of the structural, spectroscopic, and microscopic investigation show that soaking OCP into alendronate solutions provoked the deposition of long crystalline rod-shaped formations, most likely a calcium alendronate complex, onto the calcium phosphate. The amount of alendronate loaded onto OCP increased as a function of the bisphosphonate concentration in solution. Osteoblast and osteoclast response was tested in single and in co-cultures on OCP containing 6.4. wt.% AL (OCP-AL), and for comparison on hydroxyapatite (HA) containing a similar amount (5.9. wt.%) of AL (HA-AL), as well as on pure OCP and HA as reference materials. Alendronate loaded materials displayed a beneficial effect on osteoblast activity and differentiation, whereas they inhibited osteoclast proliferation and differentiation. Crosstalking between osteoblast-like MG63 cells and human osteoclasts enhanced their response to alendronate. Moreover, OCP displayed a greater stimulating effect than HA on osteoblast differentiation, and AL promotion of osteoblast differentiation and mineralization was enhanced in OCP-AL with respect to HA-AL. © 2012 Elsevier Inc.
Iris type:
01.01 Articolo in rivista
Keywords:
alendronic acid; calcium phosphate; hydroxyapatite; adult; article; binding affinity; cell activity; cell differentiation; cell proliferation; cell stimulation; complex formation; concentration response; controlled study; crystal structure; drug effect; human; human cell; molecular interaction; osteoblast; osteoclast; osteolysis; surface property; X ray diffraction; Alendronate; Calcium Phosphates; Cell Differentiation; Cell Line; Cell Proliferation; Cell Survival; Coculture Techniques; Diphosphonates; Durapatite; Humans; Microscopy; Electron; Scanning; Osteoblasts; Osteoclasts; X-Ray Diffraction
List of contributors:
Gazzano, Massimo
Handle:
https://iris.cnr.it/handle/20.500.14243/250719
Published in:
BONE
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