Dependence of Nanoparticle Toxicity on Their Physical and Chemical Properties

Зависимость токсичности наночастиц от их физических и химических свойств
Alyona Sukhanova, Svetlana Bozrova, Pavel Sokolov, M. A. Berestovoy, А. В. Караулов, Igor Nabiev
2018-02-07

nanoparticle synthesisnanoparticle toxicityphotodynamic therapyphysical and chemical propertiestargeted drug delivery
Studies on the methods of nanoparticle (NP) synthesis, analysis of their characteristics, and exploration of new fields of their applications are at the forefront of modern nanotechnology. The possibility of engineering water-soluble NPs has paved the way to their use in various basic and applied biomedical researches. At present, NPs are used in diagnosis for imaging of numerous molecular markers of genetic and autoimmune diseases, malignant tumors, and many other disorders. NPs are also used for targeted delivery of drugs to tissues and organs, with controllable parameters of drug release and accumulation. In addition, there are examples of the use of NPs as active components, e.g., photosensitizers in photodynamic therapy and in hyperthermic tumor destruction through NP incorporation and heating. However, a high toxicity of NPs for living organisms is a strong limiting factor that hinders their use in vivo. Current studies on toxic effects of NPs aimed at identifying the targets and mechanisms of their harmful effects are carried out in cell culture models; studies on the patterns of NP transport, accumulation, degradation, and elimination, in animal models. This review systematizes and summarizes available data on how the mechanisms of NP toxicity for living systems are related to their physical and chemical properties.
1
High nanoparticle toxicity in living organisms remains a major limitation for their in vivo biomedical use.
2
Nanoparticle toxicity research investigates harmful-effect targets and mechanisms primarily in cell cultures, while transport, accumulation, degradation, and elimination are studied in animal models.
3
The review systematizes evidence linking nanoparticle toxicity mechanisms to their physical and chemical properties.
4
Water-soluble nanoparticles enable biomedical applications including molecular imaging, targeted drug delivery, controlled release, photodynamic therapy, and tumor hyperthermia.

nanoparticles in living systems

the dependence of nanoparticle toxicity, including its harmful-effect mechanisms, on nanoparticle physical and chemical properties

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Publication Date
2018-02-07
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Alyona Sukhanova
Svetlana Bozrova
Pavel Sokolov
M. A. Berestovoy
А. В. Караулов
Igor Nabiev
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