Nanoparticle-Macrophage Interactions : Implications for Nanosafety and Nanomedicine

Nanoparticles (NPs) offer unique properties for biomedical applications, leading to new nanomedicines. Recent examples of advanced nanoparticle-based nanomedicines are COVID-19 RNA vaccines. Regardless of the delivery route of the NPs into the body (intravenous or subcutaneous injection, oral, intra...

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Year of Publication:2022
Language:English
Physical Description:1 electronic resource (208 p.)
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spelling Bondarenko, Olesja edt
Nanoparticle-Macrophage Interactions Implications for Nanosafety and Nanomedicine
Nanoparticle-Macrophage Interactions
MDPI - Multidisciplinary Digital Publishing Institute 2022
1 electronic resource (208 p.)
text txt rdacontent
computer c rdamedia
online resource cr rdacarrier
Nanoparticles (NPs) offer unique properties for biomedical applications, leading to new nanomedicines. Recent examples of advanced nanoparticle-based nanomedicines are COVID-19 RNA vaccines. Regardless of the delivery route of the NPs into the body (intravenous or subcutaneous injection, oral, intranasal, etc.), NPs inevitably come into contact with immune cells, such as macrophages. Macrophages are phagocytizing cells that determine the fate and the lifetime of NPs in relevant biological fluids or tissues, which has consequences for both nanosafety and nanomedicine. The aim of this Special Issue is to cover recent advancements in our understanding of NP–macrophage interactions, with a focus on in vitro models for nanosafety and novel nanomedicine approaches that allow the modulation of the immunological profile of macrophages. The current Special Issue compiles nine papers: seven research articles and two review articles. The original articles include studies on the interaction of different nanomaterials, such as multi-walled carbon nanotubes (MWCNTs), amorphous silica, gold nanoparticles, lipid carriers, and microspheres, with macrophages in different scenarios.
English
Medicine bicssc
chronic wound
device
foot ulcer
inflammation
wound healing
macrophage
nanomaterial
nanoparticle
drug delivery
immune system
anti-inflammatory
innate immunity
osteoarthritis
rifabutin
nanostructured lipid carriers
cell uptake
Caco-2 cells
oral administration
Crohn's disease
nanomaterials
macrophages
class A type 1 scavenger receptors
cytotoxicity
macrophage-nanoparticle interaction
monocytes
gold nanoparticles
in vitro models
innate memory
2D cultures
3D cultures
carbon nanotube
scavenger receptor
phagocytosis
protein corona
bovine serum albumin
synthetic amorphous silica
in vitro testing
NR8383 alveolar macrophage
ICP-MS analysis of cell bound SiO2
multi-walled carbon nanotubes
nanoparticles
chemokines
transcriptomics
zebrafish
3-0365-4599-9
Torres Andón, Fernando edt
Bondarenko, Olesja oth
Torres Andón, Fernando oth
language English
format eBook
author2 Torres Andón, Fernando
Bondarenko, Olesja
Torres Andón, Fernando
author_facet Torres Andón, Fernando
Bondarenko, Olesja
Torres Andón, Fernando
author2_variant o b ob
a f t af aft
author2_role HerausgeberIn
Sonstige
Sonstige
title Nanoparticle-Macrophage Interactions Implications for Nanosafety and Nanomedicine
spellingShingle Nanoparticle-Macrophage Interactions Implications for Nanosafety and Nanomedicine
title_sub Implications for Nanosafety and Nanomedicine
title_full Nanoparticle-Macrophage Interactions Implications for Nanosafety and Nanomedicine
title_fullStr Nanoparticle-Macrophage Interactions Implications for Nanosafety and Nanomedicine
title_full_unstemmed Nanoparticle-Macrophage Interactions Implications for Nanosafety and Nanomedicine
title_auth Nanoparticle-Macrophage Interactions Implications for Nanosafety and Nanomedicine
title_alt Nanoparticle-Macrophage Interactions
title_new Nanoparticle-Macrophage Interactions
title_sort nanoparticle-macrophage interactions implications for nanosafety and nanomedicine
publisher MDPI - Multidisciplinary Digital Publishing Institute
publishDate 2022
physical 1 electronic resource (208 p.)
isbn 3-0365-4600-6
3-0365-4599-9
illustrated Not Illustrated
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