Literature DB >> 24198499

The effect of nanoparticle uptake on cellular behavior: disrupting or enabling functions?

Alice Panariti1, Giuseppe Miserocchi, Ilaria Rivolta.   

Abstract

Nanoparticles (NPs) are materials with overall dimensions in the nanoscale range. They have unique physicochemical properties, and have emerged as important players in current research in modern medicine. In the last few decades, several types of NPs and microparticles have been synthesized and proposed for use as contrast agents for diagnostics and imaging and for drug delivery; for example, in cancer therapy. Yet specific targeting that will improve their delivery still represents an unsolved challenge. The mechanism by which NPs enter the cell has important implications not only for their fate but also for their impact on biological systems. Several papers in the literature discuss the potential risks related to NP exposure, and more recently the concept that even sublethal doses of NPs may elicit a cell response has been proposed. In this review, we intend to present an overall view of cell mechanisms that may be perturbed by cell-NP interaction. Published data, in fact, emphasize that NPs should no longer be viewed only as simple carriers for biomedical applications, but that they can also play an active role in mediating biological effects.

Entities:  

Keywords:  bio compatibility; intracellular trafficking; nanoparticles; uptake

Year:  2012        PMID: 24198499      PMCID: PMC3781724          DOI: 10.2147/NSA.S25515

Source DB:  PubMed          Journal:  Nanotechnol Sci Appl        ISSN: 1177-8903


  97 in total

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2.  Privileged delivery of polymer nanoparticles to the perinuclear region of live cells via a non-clathrin, non-degradative pathway.

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4.  In vitro study on influence of nano particles of CuO on CA1 pyramidal neurons of rat hippocampus potassium currents.

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5.  Zinc oxide nanoparticle disruption of store-operated calcium entry in a muscarinic receptor signaling pathway.

Authors:  Hsiu-Jen Wang; Anna C Growcock; Tso-hao Tang; Jennifer O'Hara; Yue-wern Huang; Robert S Aronstam
Journal:  Toxicol In Vitro       Date:  2010-08-12       Impact factor: 3.500

6.  Superparamagnetic iron oxide nanoparticles change endothelial cell morphology and mechanics via reactive oxygen species formation.

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7.  Influences of nanoparticle zinc oxide on acutely isolated rat hippocampal CA3 pyramidal neurons.

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8.  Effects of transport inhibitors on the cellular uptake of carboxylated polystyrene nanoparticles in different cell lines.

Authors:  Tiago dos Santos; Juan Varela; Iseult Lynch; Anna Salvati; Kenneth A Dawson
Journal:  PLoS One       Date:  2011-09-19       Impact factor: 3.240

9.  Cytoplasmic dynein-dependent vesicular transport from early to late endosomes.

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Journal:  J Cell Biol       Date:  1993-12       Impact factor: 10.539

10.  pH-responsive high-density lipoprotein-like nanoparticles to release paclitaxel at acidic pH in cancer chemotherapy.

Authors:  Jae-Yoon Shin; Yoosoo Yang; Paul Heo; Ji-Chun Lee; Byoungjae Kong; Jae Youl Cho; Keejung Yoon; Cheol-Su Shin; Jin-Ho Seo; Sung-Gun Kim; Dae-Hyuk Kweon
Journal:  Int J Nanomedicine       Date:  2012-06-06
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  72 in total

1.  Loss of membrane asymmetry alters the interactions of erythrocytes with engineered silica nanoparticles.

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Authors:  Gamaleldin I Harisa; Tarek M Faris
Journal:  J Membr Biol       Date:  2019-08-02       Impact factor: 1.843

4.  Endothelial barrier dysfunction induced by nanoparticle exposure through actin remodeling via caveolae/raft-regulated calcium signalling.

Authors:  Yizhong Liu; Eunsoo Yoo; Gretchen J Mahler; Amber L Doiron
Journal:  NanoImpact       Date:  2018-02-21

Review 5.  Hyperthermia using nanoparticles--Promises and pitfalls.

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Journal:  Int J Hyperthermia       Date:  2016-01-12       Impact factor: 3.914

6.  Anti-cancer activity of curcumin loaded nanoparticles in prostate cancer.

Authors:  Murali M Yallapu; Sheema Khan; Diane M Maher; Mara C Ebeling; Vasudha Sundram; Neeraj Chauhan; Aditya Ganju; Swathi Balakrishna; Brij K Gupta; Nadeem Zafar; Meena Jaggi; Subhash C Chauhan
Journal:  Biomaterials       Date:  2014-07-12       Impact factor: 12.479

Review 7.  Crosstalk of Nanosystems Induced Extracellular Vesicles as Promising Tools in Biomedical Applications.

Authors:  Gamaleldin I Harisa; Mohamed M Badran; Fars K Alanazi; Sabry M Attia
Journal:  J Membr Biol       Date:  2017-11-10       Impact factor: 1.843

8.  Self-assembled, ellipsoidal polymeric nanoparticles for intracellular delivery of therapeutics.

Authors:  Prachi Desai; Anjana Venkataramanan; Rebecca Schneider; Manish K Jaiswal; James K Carrow; Alberto Purwada; Ankur Singh; Akhilesh K Gaharwar
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9.  Nanoparticle formulation of ormeloxifene for pancreatic cancer.

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Review 10.  Therapeutic Potential of Natural Product-Based Oral Nanomedicines for Stroke Prevention.

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Journal:  J Med Food       Date:  2016-05-02       Impact factor: 2.786

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