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Titlebook: Biomedical Nanomaterials; From design and synt Rostyslav S. Stoika Book 2022 The Editor(s) (if applicable) and The Author(s), under exclusi

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https://doi.org/10.1007/978-94-009-9954-1) carriers for addressed drug delivery that can also diminish the negative side effects of drug action in the treated organism; (2) drug forms that are capable of overcoming biological barriers in the body, in particular multiple drug resistance, which blocks the action of traditional drugs; (3) nan
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T. Berman,S. Serruya,G. Stanhill,J. Neumannantitumor agents demonstrating general toxicity in the body that significantly restricts their use. An efficient way to overcome this problem is to use a multifunctional nanocarrier of the drug that will allow the toxic antitumor agent to act at the site of its delivery to targeted cells in specific
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T. Berman,S. Serruya,G. Stanhill,J. Neumannf the nanoparticles are quite dangerous since the materials they use are not easily compatible with human tissue and provoke inflammation and immune responses. However, our body has developed the response on how to cope with those nanoparticles which are causing damaging effects to cells and tissues
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Late Quaternary Limnological Historye international pharmacological market. The leading positions in the field of drug delivery belong to the biocompatible and biodegradable multifunctional nanoscale materials capable of forming water-soluble forms of drugs, providing their addressed delivery, and crossing the biological barriers in t
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Microbial Ecology of Lake Kivu,ndustry sectors, especially in medicine. Most frequently, these Me-NPs contain zinc (Zn), titanium (Ti), silver (Ag), copper (Cu), cadmium (Cd), as well as some other metals or their cations, noted in the Introduction. Therefore, the evaluation of the bioavailability of these particles seems to be c
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