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HuR-targeted nanotherapy in combination with AMD3100 suppresses CXCR4 expression, cell growth, migration, and invasion in lung cancer

The CXCR4 chemokine receptor plays an important role in cancer cell metastasis. The CXCR4 antagonist, AMD3100, has limited efficacy in controlling metastasis. HuR, an RNA-binding protein, regulates CXCR4 in cancer cells. We therefore investigated whether targeting HuR using a siRNA-based nanoparticl...

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Autores principales: Muralidharan, Ranganayaki, Panneerselvam, Janani, Chen, Allshine, Zhao, Yan Daniel, Munshi, Anupama, Ramesh, Rajagopal
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4679684/
https://www.ncbi.nlm.nih.gov/pubmed/26494555
http://dx.doi.org/10.1038/cgt.2015.55
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author Muralidharan, Ranganayaki
Panneerselvam, Janani
Chen, Allshine
Zhao, Yan Daniel
Munshi, Anupama
Ramesh, Rajagopal
author_facet Muralidharan, Ranganayaki
Panneerselvam, Janani
Chen, Allshine
Zhao, Yan Daniel
Munshi, Anupama
Ramesh, Rajagopal
author_sort Muralidharan, Ranganayaki
collection PubMed
description The CXCR4 chemokine receptor plays an important role in cancer cell metastasis. The CXCR4 antagonist, AMD3100, has limited efficacy in controlling metastasis. HuR, an RNA-binding protein, regulates CXCR4 in cancer cells. We therefore investigated whether targeting HuR using a siRNA-based nanoparticle plus AMD3100 would suppress CXCR4 and inhibit lung cancer metastasis. We treated human H1299 lung cancer cell with HuR-specific siRNA contained in a folate-targeted lipid nanoparticle (HuR-FNP) plus AMD3100, and compared this with AMD3100 alone, HuR-FNP alone and no treatment. HuR-FNP plus AMD3100 treatment produced a G1 phase cell-cycle arrest and reduced cell viability above and beyond the effects of AMD3100 alone. HuR and CXCR4 mRNA and protein expression levels were markedly reduced in all treatment groups. Phosphorylated (p) AKT(S473) protein was also reduced. P27 protein expression increased with HuR-FNP and combination treatment. Promoter-based reporter studies showed that the combination inhibited CXCR4 promoter activity more than did either treatment alone. Cell migration and invasion was significantly reduced with all treatment; the combination provided the most inhibition. Reduced matrix metalloprotease (MMP) -2 and -9 expression was associated with reduced invasion in all treatment groups. Thus, we found that combined HuR and CXCR4 targeting effectively controlled lung cancer metastasis.
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spelling pubmed-46796842016-05-18 HuR-targeted nanotherapy in combination with AMD3100 suppresses CXCR4 expression, cell growth, migration, and invasion in lung cancer Muralidharan, Ranganayaki Panneerselvam, Janani Chen, Allshine Zhao, Yan Daniel Munshi, Anupama Ramesh, Rajagopal Cancer Gene Ther Article The CXCR4 chemokine receptor plays an important role in cancer cell metastasis. The CXCR4 antagonist, AMD3100, has limited efficacy in controlling metastasis. HuR, an RNA-binding protein, regulates CXCR4 in cancer cells. We therefore investigated whether targeting HuR using a siRNA-based nanoparticle plus AMD3100 would suppress CXCR4 and inhibit lung cancer metastasis. We treated human H1299 lung cancer cell with HuR-specific siRNA contained in a folate-targeted lipid nanoparticle (HuR-FNP) plus AMD3100, and compared this with AMD3100 alone, HuR-FNP alone and no treatment. HuR-FNP plus AMD3100 treatment produced a G1 phase cell-cycle arrest and reduced cell viability above and beyond the effects of AMD3100 alone. HuR and CXCR4 mRNA and protein expression levels were markedly reduced in all treatment groups. Phosphorylated (p) AKT(S473) protein was also reduced. P27 protein expression increased with HuR-FNP and combination treatment. Promoter-based reporter studies showed that the combination inhibited CXCR4 promoter activity more than did either treatment alone. Cell migration and invasion was significantly reduced with all treatment; the combination provided the most inhibition. Reduced matrix metalloprotease (MMP) -2 and -9 expression was associated with reduced invasion in all treatment groups. Thus, we found that combined HuR and CXCR4 targeting effectively controlled lung cancer metastasis. 2015-10-23 2015-12 /pmc/articles/PMC4679684/ /pubmed/26494555 http://dx.doi.org/10.1038/cgt.2015.55 Text en http://www.nature.com/authors/editorial_policies/license.html#terms Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Muralidharan, Ranganayaki
Panneerselvam, Janani
Chen, Allshine
Zhao, Yan Daniel
Munshi, Anupama
Ramesh, Rajagopal
HuR-targeted nanotherapy in combination with AMD3100 suppresses CXCR4 expression, cell growth, migration, and invasion in lung cancer
title HuR-targeted nanotherapy in combination with AMD3100 suppresses CXCR4 expression, cell growth, migration, and invasion in lung cancer
title_full HuR-targeted nanotherapy in combination with AMD3100 suppresses CXCR4 expression, cell growth, migration, and invasion in lung cancer
title_fullStr HuR-targeted nanotherapy in combination with AMD3100 suppresses CXCR4 expression, cell growth, migration, and invasion in lung cancer
title_full_unstemmed HuR-targeted nanotherapy in combination with AMD3100 suppresses CXCR4 expression, cell growth, migration, and invasion in lung cancer
title_short HuR-targeted nanotherapy in combination with AMD3100 suppresses CXCR4 expression, cell growth, migration, and invasion in lung cancer
title_sort hur-targeted nanotherapy in combination with amd3100 suppresses cxcr4 expression, cell growth, migration, and invasion in lung cancer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4679684/
https://www.ncbi.nlm.nih.gov/pubmed/26494555
http://dx.doi.org/10.1038/cgt.2015.55
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