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Titlebook: Biological Responses to Nanoscale Particles; Molecular and Cellul Peter Gehr,Reinhard Zellner Book 2019 Springer Nature Switzerland AG 2019

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Nanoparticle-Cell Interactions: Overview of Uptake, Intracellular Fate and Induction of Cell Responsding biopersistence, exocytosis and/or transfer to other cells. The aim of this book chapter is to discuss, on the basis of existing literature, the interaction of NPs with single cells including the intracellular fate and their interference with signaling pathways.
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Interactions of Nanoparticles with Skiniously disrupted. Increased nanoparticle penetration may result in biologically relevant effects, e.g. cytotoxic cellular effects induced by silver ions released from wound dressings incorporating silver nanoparticles.
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Book 2019ted. The focus is on manufacturing and characterization of nanosized materials, their interactions with biological molecules such as proteins, the mechanisms of transport across biological membranes as well as their effects on biological functions. Fundamental molecular and cellular aspects are in t
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https://doi.org/10.1007/978-3-030-12461-8Biological responses and health effects; Membrane transfer and intercellular Trafficking; Interactions
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978-3-030-12463-2Springer Nature Switzerland AG 2019
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H. K. Breddin,Th. Karasch,H. Rieger nanostructures. Confined to the nanometer scale, materials may display properties that are different from the equivalent bulk compounds. To meet the requirements for various applications, numerous production techniques were developed to control particle size, morphology, aggregation state, crystal
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C. Höller,C.-R. Maeck,C. Eckardttility to cover a wide range of mesoscopic properties for sophisticated applications. However, making and applying smart nanoparticles is inevitably linked to a deep understanding of the overall physico-chemical principle of their formation and their interaction with their surroundings.
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