Literature DB >> 21269688

Combined cytotoxic and anti-invasive properties of redox-active nanoparticles in tumor-stroma interactions.

Lirija Alili1, Maren Sack, Ajay S Karakoti, Sarah Teuber, Katharina Puschmann, Suzanne M Hirst, Christopher M Reilly, Klaus Zanger, Wilhelm Stahl, Soumen Das, Sudipta Seal, Peter Brenneisen.   

Abstract

Tumor-stroma interaction plays an important role in tumor progression. Myofibroblasts, pivotal for tumor progression, populate the microecosystem of reactive stroma. The formation of myofibroblasts is mediated by tumor derived transforming growth factor β1 (TGFβ1) which initiates a reactive oxygen species cell type dependent expression of alpha-smooth muscle actin, a biomarker for myofibroblastic cells. Myofibroblasts express and secrete proinvasive factors significantly increasing the invasive capacity of tumor cells via paracrine mechanisms. Although antioxidants prevent myofibroblast formation, the same antioxidants increase the aggressive behavior of the tumor cells. In this study, the question was addressed of whether redox-active polymer-coated cerium oxide nanoparticles (CNP, nanoceria) affect myofibroblast formation, cell toxicity, and tumor invasion. Herein, nanoceria downregulate both the expression of alpha-smooth muscle actin positive myofibroblastic cells and the invasion of tumor cells. Furthermore, concentrations of nanoceria being non-toxic for normal (stromal) cells show a cytotoxic effect on squamous tumor cells. The treatment with redox-active CNP may form the basis for protection of stromal cells from the dominating influence of tumor cells in tumor-stroma interaction, thus being a promising strategy for chemoprevention of tumor invasion.
Copyright © 2011 Elsevier Ltd. All rights reserved.

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Year:  2011        PMID: 21269688     DOI: 10.1016/j.biomaterials.2010.12.056

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   12.479


  47 in total

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2.  Mammalian Cells Exhibit a Range of Sensitivities to Silver Nanoparticles that are Partially Explicable by Variations in Antioxidant Defense and Metallothionein Expression.

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3.  Beneficial effects of cerium oxide nanoparticles in development of chondrocyte-seeded hydrogel constructs and cellular response to interleukin insults.

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4.  Preparation and Characterization Challenges to Understanding Environmental and Biological Impacts of Nanoparticles.

Authors:  A S Karakoti; P Munusamy; K Hostetler; V Kodali; S Kuchibhatla; G Orr; J G Pounds; J G Teeguarden; B D Thrall; D R Baer
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5.  Decreased Uptake and Enhanced Mitochondrial Protection Underlie Reduced Toxicity of Nanoceria in Human Monocyte-Derived Macrophages.

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Journal:  J Biomed Nanotechnol       Date:  2016-12       Impact factor: 4.099

6.  Shifts in oxidation states of cerium oxide nanoparticles detected inside intact hydrated cells and organelles.

Authors:  Craig J Szymanski; Prabhakaran Munusamy; Cosmin Mihai; Yumei Xie; Dehong Hu; Mary K Gilles; Tolek Tyliszczak; Suntharampillai Thevuthasan; Donald R Baer; Galya Orr
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Review 7.  Neuroprotective potential of cerium oxide nanoparticles for focal cerebral ischemic stroke.

Authors:  Da Zhou; Ting Fang; Lin-Qing Lu; Li Yi
Journal:  J Huazhong Univ Sci Technolog Med Sci       Date:  2016-07-28

Review 8.  Development of individualized anti-metastasis strategies by engineering nanomedicines.

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Review 9.  Modifying the tumor microenvironment using nanoparticle therapeutics.

Authors:  Aniruddha Roy; Shyh-Dar Li
Journal:  Wiley Interdiscip Rev Nanomed Nanobiotechnol       Date:  2016-04-01

10.  The Yin: An adverse health perspective of nanoceria: uptake, distribution, accumulation, and mechanisms of its toxicity.

Authors:  Robert A Yokel; Salik Hussain; Stavros Garantziotis; Philip Demokritou; Vincent Castranova; Flemming R Cassee
Journal:  Environ Sci Nano       Date:  2014-10-01
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