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Nanoscale Stiffness Distribution in Bone Metastasis
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作者 Ludovic Richert Laetitia Keller +8 位作者 Quentin Wagner Fabien Bornert catherine gros Sophie Bahi Francois Clauss William Bacon Philippe Clézardin Nadia Benkirane-Jessel Florence Fioretti 《World Journal of Nano Science and Engineering》 2015年第4期219-228,共10页
Nanomechanical heterogeneity is expected to have an effect on elasticity, injury and bone remodelling. In normal bone, we have two types of cells (osteoclasts and osteoblasts) working together to maintain existing bon... Nanomechanical heterogeneity is expected to have an effect on elasticity, injury and bone remodelling. In normal bone, we have two types of cells (osteoclasts and osteoblasts) working together to maintain existing bone. Bone cancers can produce factors that make the osteoclasts work harder. This means that more bone is destroyed than rebuilt, and leads to weakening of the affected bone. We report here the first demonstration of the nanoscale stiffness distribution in bone metastases before and after treatment of animals with the bisphosphonate Risedronate, a drug which is currently used for the treatment of bone metastases in patients with advanced cancers. The strategy used here is applicable to a wide class of biological tissues and may serve as a new reflection for biologically inspired scaffolds technologies. 展开更多
关键词 Bone Metastasis STIFFNESS RISEDRONATE
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