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Silica nanoparticles increase human adipose tissue-derived stem cell proliferation through ERK1/2 activation SCIE SCOPUS

Title
Silica nanoparticles increase human adipose tissue-derived stem cell proliferation through ERK1/2 activation
Authors
Kim, KJJoe, YAKim, MKLee, SJRyu, YHCho, DWRhie, JW
Date Issued
2015-01
Publisher
DOVE MEDICAL PRESS LTD
Abstract
Background: Silicon dioxide composites have been found to enhance the mechanical properties of scaffolds and to support growth of human adipose tissue-derived stem cells (hADSCs) both in vitro and in vivo. Silica (silicon dioxide alone) exists as differently sized particles when suspended in culture medium, but it is not clear whether particle size influences the beneficial effect of silicon dioxide on hADSCs. In this study, we examined the effect of different sized particles on growth and mitogen-activated protein kinase signaling in hADSCs. Methods: Silica gel was prepared by a chemical reaction using hydrochloric acid and sodium silicate, washed, sterilized, and suspended in serum-free culture medium for 48 hours, and then sequentially filtered through a 0.22 mu m filter (filtrate containing nanoparticles smaller than 220 nm; silica NPs). hADSCs were incubated with silica NPs or 3 mu m silica microparticles (MPs), examined by transmission electron microscopy, and assayed for cell proliferation, apoptosis, and mitogen-activated protein kinase signaling. Results: Eighty-nine percent of the silica NPs were around 50-120 nm in size. When hADSCs were treated with the study particles, silica NPs were observed in endocytosed vacuoles in the cytosol of hADSCs, but silica MPs showed no cell entry. Silica NPs increased the proliferation of hADSCs, but silica MPs had no significant effect in this regard. Instead, silica MPs induced slight apoptosis. Silica NPs increased phosphorylation of extracellular signal-related kinase (ERK) 1/2, while silica MPs increased phosphorylation of p38. Silica NPs had no effect on phosphorylation of Janus kinase or p38. Pretreatment with PD98059, a MEK inhibitor, prevented the ERK1/2 phosphorylation and proliferation induced by silica NPs. Conclusion: Scaffolds containing silicon dioxide for tissue engineering may enhance cell growth through ERK1/2 activation only when NPs around 50-120 nm in size are included, and single component silica-derived NPs could be useful for bioscaffolds in stem cell therapy.
Keywords
article; ceramic; biomaterial; mesenchymal stem cells; ERK; IN-VITRO; OSTEOGENIC DIFFERENTIATION; SCAFFOLDS; CERAMICS; CALCIUM; P38; RESPONSES; IMPLANTS; TITANIUM; ADHESION
URI
https://oasis.postech.ac.kr/handle/2014.oak/13025
DOI
10.2147/IJN.S71925
ISSN
1178-2013
Article Type
Article
Citation
INTERNATIONAL JOURNAL OF NANOMEDICINE, vol. 10, page. 2261 - 2272, 2015-01
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조동우CHO, DONG WOO
Dept of Mechanical Enginrg
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