Low hazard of silver nanoparticles and silver nitrate to the haematopoietic system of rainbow trout
-
Add time:09/09/2019 Source:sciencedirect.com
Silver nanoparticles (Ag NPs) are known for their antibacterial properties and are used in a growing number of nano-enabled products, with inevitable concerns for releases to the environment. Nanoparticles may also be antigenic and toxic to the haematopoietic system, but the immunotoxic effect of Ag NPs on non-target species such as fishes is poorly understood. This study aimed to assess the effect of Ag NP exposure via the water on the haematopoietic system of rainbow trout, Oncorhynchus mykiss, and to determine whether or not the hazard from Ag NPs was different from that of AgNO3. Fish were exposed for 7 days to a control (dechlorinated Plymouth freshwater), dispersant control, 1 µg l−1 Ag as AgNO3 or 100 µg l−1 Ag NPs. Animals were sampled on days 0, 4 and 7 for haematology, tissue trace metal concentration, biochemistry for evidence of oxidative stress/inflammation in the spleen and histopathology of the blood cells and spleen. The Ag NP treatment significantly increased the haematocrit, but the haematological changes were within the normal physiological range of the animal. Thrombocytes in spleen prints at day 4, and melanomacrophage deposits at day 7 in the spleen, of Ag NP exposed-fish displayed significant increases compared to all the other treatments within the time point. A dialysis experiment confirmed that dissolution rates were very low and any pathology observed is likely from the NP form rather than dissolved metal released from it. Overall, the data showed subtle differences in the effects of Ag NPs compared to AgNO3 on the haematopoietic system. The lack of pathology in the circulating blood cells and melanomacrophage deposits in the spleen suggests a compensatory physiological effort by the spleen to maintain normal circulating haematology during Ag NP exposure.
We also recommend Trading Suppliers and Manufacturers of SILVER LACTATE MONOHYDRATE (cas 15768-18-0). Pls Click Website Link as below: cas 15768-18-0 suppliers
Prev:Visual detection of trace lead ion based on aptamer and silver staining nano-metal composite
Next:Smartphone–based enzymatic biosensor for oral fluid L-lactate detection in one minute using confined multilayer paper reflectometry) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- ReviewMechanical properties of nano-silver joints as die attach materials09/27/2019
- Silver-induced lipid peroxidation in mice: Interactions with selenium and nickel09/26/2019
- Facile synthesis of Prussian blue nanocubes/silver nanowires network as a water-based ink for the direct screen-printed flexible biosensor chips09/25/2019
- Cellular uptake, intracellular trafficking and cytotoxicity of silver nanoparticles09/24/2019
- Smartphone–based enzymatic biosensor for oral fluid L-lactate detection in one minute using confined multilayer paper reflectometry09/10/2019
- Visual detection of trace lead ion based on aptamer and silver staining nano-metal composite09/08/2019
- Review articleCognitive effects of creatine monohydrate adjunctive therapy in patients with bipolar depression: Results from a randomized, double-blind, placebo-controlled trial09/07/2019
- Potentiometric sensor for non invasive lactate determination in human sweat09/06/2019
- Dual range lactate oxidase-based screen printed amperometric biosensor for analysis of lactate in diversified samples09/05/2019
-
Health and Chemical more >
-
Related Products


