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While nanotechnology is providing exponentially new products based on nano-tools, equipment and nanoparticles, the
study of their toxicity would be essential. The reduction in size to nano-scale leads to change their surface properties
and also increases their chemical activity that causes toxicity. The knowledge of nanoparticles entrance mechanism into the
body is useful in evaluation of nanoparticle content into the cell. Here, we are able to answer some of the questions about
toxicity. Endocytosis, membrane flows, channels and adherence reactions are some of their entrance mechanisms into the
cell. A variety of nanoparticles have different size, shape, surface and chemical composition and they have different toxicity
mechanism in the interface with living systems. We will focus on the interaction of nanoparticles with cells, blood and immune
system and, finally on when immune system interact with nanoparticles as drug delivery vehicles, resist and take protective
reactions. Nanoparticles influence on blood factors too will be discussed. Complement system, blood cells and hemostatic
system which are three important parts of blood that are affected by the nanoparticle. We will briefly express the steps of
toxicity identification of nanomaterial because it is necessary for identifying their toxicity.