Literature DB >> 25680544

Bioactive silica nanoparticles reverse age-associated bone loss in mice.

M Neale Weitzmann1,2,3, Shin-Woo Ha2, Tatyana Vikulina2, Susanne Roser-Page1,2, Jin-Kyu Lee4, George R Beck1,2,3.   

Abstract

We recently reported that in vitro, engineered 50nm spherical silica nanoparticles promote the differentiation and activity of bone building osteoblasts but suppress bone-resorbing osteoclasts. Furthermore, these nanoparticles promote bone accretion in young mice in vivo. We have now investigated the capacity of these nanoparticles to reverse bone loss in aged mice, a model of human senile osteoporosis. Aged mice received nanoparticles weekly and bone mineral density (BMD), bone structure, and bone turnover were quantified. Our data revealed a significant increase in BMD, bone volume, and biochemical markers of bone formation. Biochemical and histological examinations failed to identify any abnormalities caused by nanoparticle administration. Our studies demonstrate that silica nanoparticles effectively blunt and reverse age-associated bone loss in mice by a mechanism involving promotion of bone formation. The data suggest that osteogenic silica nanoparticles may be a safe and effective therapeutic for counteracting age-associated bone loss. FROM THE CLINICAL EDITOR: Osteoporosis poses a significant problem in the society. Based on their previous in-vitro findings, the authors' group investigated the effects of spherical silica nanoparticles in reversing bone loss in a mouse model of osteoporosis. The results showed that intra-peritoneal injections of silica nanoparticles could increase bone mineral density, with little observed toxic side effects. This novel method may prove important in future therapy for combating osteoporosis. Published by Elsevier Inc.

Entities:  

Keywords:  Aging; Bone formation; Osteoporosis; Silica nanoparticles; Toxicity

Mesh:

Substances:

Year:  2015        PMID: 25680544      PMCID: PMC4441562          DOI: 10.1016/j.nano.2015.01.013

Source DB:  PubMed          Journal:  Nanomedicine        ISSN: 1549-9634            Impact factor:   5.307


  35 in total

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4.  Bio-active engineered 50 nm silica nanoparticles with bone anabolic activity: therapeutic index, effective concentration, and cytotoxicity profile in vitro.

Authors:  Shin-Woo Ha; James A Sikorski; M Neale Weitzmann; George R Beck
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5.  Incidence and economic burden of osteoporosis-related fractures in the United States, 2005-2025.

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6.  Bioactive silica-based nanoparticles stimulate bone-forming osteoblasts, suppress bone-resorbing osteoclasts, and enhance bone mineral density in vivo.

Authors:  George R Beck; Shin-Woo Ha; Corinne E Camalier; Masayoshi Yamaguchi; Yan Li; Jin-Kyu Lee; M Neale Weitzmann
Journal:  Nanomedicine       Date:  2011-11-16       Impact factor: 5.307

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8.  Size-dependent cytotoxicity of monodisperse silica nanoparticles in human endothelial cells.

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4.  Zirconia Nanoparticles-Induced Toxic Effects in Osteoblast-Like 3T3-E1 Cells.

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Review 6.  Understanding the mechanisms of silica nanoparticles for nanomedicine.

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