Literature DB >> 22191781

Interaction of nanoparticles with immunocompetent cells: nanosafety considerations.

Diana Boraschi1, Luca Costantino, Paola Italiani.   

Abstract

Intentional delivery of high doses of nanoparticle-based drugs or diagnostic/imaging systems sets a new scenario in safety evaluation, compared with the environmentally borne unintentional exposure to engineered nanoparticles. Intravenously administered nanomedicines immediately interact with blood components such as serum proteins, changing their own characteristics and consequently the features of their interaction with cells and tissues. Of major importance is the interaction of nanomedicines with the immune system, which is essential in the recognition and elimination of foreign dangerous agents. Nanomedicines need to avoid immune recognition in order to reach their therapeutic target and display their effect, should not trigger defensive mechanisms that can damage the body tissues (e.g., complement activation or inflammation) and should not interfere with immunocompetent cells in order to avoid promoting immune-related diseases. This review will briefly cover these issues, and propose some knowledge-based approaches for future 'safe-by-design' nanomedicines.

Entities:  

Mesh:

Year:  2012        PMID: 22191781     DOI: 10.2217/nnm.11.169

Source DB:  PubMed          Journal:  Nanomedicine (Lond)        ISSN: 1743-5889            Impact factor:   5.307


  28 in total

Review 1.  Biomolecular coronas provide the biological identity of nanosized materials.

Authors:  Marco P Monopoli; Christoffer Aberg; Anna Salvati; Kenneth A Dawson
Journal:  Nat Nanotechnol       Date:  2012-12       Impact factor: 39.213

2.  In vivo immune cell distribution of gold nanoparticles in naïve and tumor bearing mice.

Authors:  Joao Paulo Mattos Almeida; Adam Yuh Lin; Robert James Langsner; Phillip Eckels; Aaron Edward Foster; Rebekah Anna Drezek
Journal:  Small       Date:  2013-09-23       Impact factor: 13.281

Review 3.  Immunosuppressive and anti-inflammatory properties of engineered nanomaterials.

Authors:  A N Ilinskaya; M A Dobrovolskaia
Journal:  Br J Pharmacol       Date:  2014-07-02       Impact factor: 8.739

Review 4.  Understanding the correlation between in vitro and in vivo immunotoxicity tests for nanomedicines.

Authors:  Marina A Dobrovolskaia; Scott E McNeil
Journal:  J Control Release       Date:  2013-06-03       Impact factor: 9.776

Review 5.  Implantable nanosensors: toward continuous physiologic monitoring.

Authors:  Timothy T Ruckh; Heather A Clark
Journal:  Anal Chem       Date:  2013-12-10       Impact factor: 6.986

Review 6.  Current understanding of interactions between nanoparticles and the immune system.

Authors:  Marina A Dobrovolskaia; Michael Shurin; Anna A Shvedova
Journal:  Toxicol Appl Pharmacol       Date:  2015-12-29       Impact factor: 4.219

7.  Differential Impact of Plasma Proteins on the Adhesion Efficiency of Vascular-Targeted Carriers (VTCs) in Blood of Common Laboratory Animals.

Authors:  Katawut Namdee; Daniel J Sobczynski; Peter J Onyskiw; Omolola Eniola-Adefeso
Journal:  Bioconjug Chem       Date:  2015-11-09       Impact factor: 4.774

8.  Subvisible Particles in IVIg Formulations Activate Complement in Human Serum.

Authors:  Carly F Chisholm; William Behnke; Yekaterina Pokhilchuk; Ashley A Frazer-Abel; Theodore W Randolph
Journal:  J Pharm Sci       Date:  2019-10-28       Impact factor: 3.534

Review 9.  Biological interactions of carbon-based nanomaterials: From coronation to degradation.

Authors:  Kunal Bhattacharya; Sourav P Mukherjee; Audrey Gallud; Seth C Burkert; Silvia Bistarelli; Stefano Bellucci; Massimo Bottini; Alexander Star; Bengt Fadeel
Journal:  Nanomedicine       Date:  2015-12-17       Impact factor: 5.307

10.  Enhancement of proinflammatory and procoagulant responses to silica particles by monocyte-endothelial cell interactions.

Authors:  Xin Liu; Yang Xue; Tingting Ding; Jiao Sun
Journal:  Part Fibre Toxicol       Date:  2012-09-18       Impact factor: 9.400

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