PEGylated TiO2 nanoparticles mediated inhibition of cell migration via integrin beta 1

Nanoparticles (NPs) elicit various physiological responses in cellular environment, and the effect of NPs on cell migration is of high interest. In this work, the effects of NPs on cell migration and their possible mechanisms were studied. Here, we showed that after exposure to pegylated titanium di...

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Main Authors: Qingqing Sun, Koki Kanehira, Akiyoshi Taniguchi
Format: Article
Language:English
Published: Taylor & Francis Group 2018-12-01
Series:Science and Technology of Advanced Materials
Subjects:
Online Access:http://dx.doi.org/10.1080/14686996.2018.1444318
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spelling doaj-5eeb912151574361a82032d772f839ed2020-11-25T00:38:30ZengTaylor & Francis GroupScience and Technology of Advanced Materials1468-69961878-55142018-12-0119127128110.1080/14686996.2018.14443181444318PEGylated TiO2 nanoparticles mediated inhibition of cell migration via integrin beta 1Qingqing Sun0Koki Kanehira1Akiyoshi Taniguchi2National Institute for Materials ScienceTOTO Ltd. Research InstituteNational Institute for Materials ScienceNanoparticles (NPs) elicit various physiological responses in cellular environment, and the effect of NPs on cell migration is of high interest. In this work, the effects of NPs on cell migration and their possible mechanisms were studied. Here, we showed that after exposure to pegylated titanium dioxide nanoparticles (TiO2-PEG NPs, where PEG stands for the polyethylene glycol), NCI-H292 cells exhibited slower migration than control cells. Furthermore, larger NPs inhibited cell migration much stronger than smaller NPs. Following NP exposure, the cells showed decreased expression of integrin beta 1 and phosphorylated focal adhesion kinase (pFAK), and disrupted F-actin structures. We demonstrated that a possible mechanism involved NP-mediated promotion of the lysosomal degradation of integrin beta 1, thus leading to reduced expression of pFAK and cytoskeletal disruption and inhibited cell migration. Therefore, our results showed that inhibition of NCI-H292 cell migration by NPs is mediated through integrin beta 1, which provides useful information for the application of NPs in cancer therapy and related fields.http://dx.doi.org/10.1080/14686996.2018.1444318Cell migrationinhibitionintegrin beta 1pFAKTiO2-PEG NPs
collection DOAJ
language English
format Article
sources DOAJ
author Qingqing Sun
Koki Kanehira
Akiyoshi Taniguchi
spellingShingle Qingqing Sun
Koki Kanehira
Akiyoshi Taniguchi
PEGylated TiO2 nanoparticles mediated inhibition of cell migration via integrin beta 1
Science and Technology of Advanced Materials
Cell migration
inhibition
integrin beta 1
pFAK
TiO2-PEG NPs
author_facet Qingqing Sun
Koki Kanehira
Akiyoshi Taniguchi
author_sort Qingqing Sun
title PEGylated TiO2 nanoparticles mediated inhibition of cell migration via integrin beta 1
title_short PEGylated TiO2 nanoparticles mediated inhibition of cell migration via integrin beta 1
title_full PEGylated TiO2 nanoparticles mediated inhibition of cell migration via integrin beta 1
title_fullStr PEGylated TiO2 nanoparticles mediated inhibition of cell migration via integrin beta 1
title_full_unstemmed PEGylated TiO2 nanoparticles mediated inhibition of cell migration via integrin beta 1
title_sort pegylated tio2 nanoparticles mediated inhibition of cell migration via integrin beta 1
publisher Taylor & Francis Group
series Science and Technology of Advanced Materials
issn 1468-6996
1878-5514
publishDate 2018-12-01
description Nanoparticles (NPs) elicit various physiological responses in cellular environment, and the effect of NPs on cell migration is of high interest. In this work, the effects of NPs on cell migration and their possible mechanisms were studied. Here, we showed that after exposure to pegylated titanium dioxide nanoparticles (TiO2-PEG NPs, where PEG stands for the polyethylene glycol), NCI-H292 cells exhibited slower migration than control cells. Furthermore, larger NPs inhibited cell migration much stronger than smaller NPs. Following NP exposure, the cells showed decreased expression of integrin beta 1 and phosphorylated focal adhesion kinase (pFAK), and disrupted F-actin structures. We demonstrated that a possible mechanism involved NP-mediated promotion of the lysosomal degradation of integrin beta 1, thus leading to reduced expression of pFAK and cytoskeletal disruption and inhibited cell migration. Therefore, our results showed that inhibition of NCI-H292 cell migration by NPs is mediated through integrin beta 1, which provides useful information for the application of NPs in cancer therapy and related fields.
topic Cell migration
inhibition
integrin beta 1
pFAK
TiO2-PEG NPs
url http://dx.doi.org/10.1080/14686996.2018.1444318
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AT kokikanehira pegylatedtio2nanoparticlesmediatedinhibitionofcellmigrationviaintegrinbeta1
AT akiyoshitaniguchi pegylatedtio2nanoparticlesmediatedinhibitionofcellmigrationviaintegrinbeta1
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