Home » Gold Nanoparticles Drug Delivery (Au, Purity: 99.9%, APS: 50-100nm)
|Molecular Weight||196.96 g/mol||Confirm|
|Melting Point||1064 °C||Confirm|
|Boiling Point||2970 °C||Confirm|
|Solubility||Insoluble in water|
|Quality Control||Each lot of Gold Nanopowder was tested successfully.|
|Main Inspect Verifier||Manager QC|
|All Other Metal||<850ppm|
Gold Nanoparticles Drug Delivery: Metal nanoparticles specifically gold nanoparticles have abundant use in the field of biotechnology and biomedicine because they have large surface bio conjugation with molecular probes and they also have many optical properties which are mainly concerned with localized plasmon resonance.
Gold Nanoparticles Drug Delivery: Nanoparticles cover a broad area of interest including electronics, medicine, food industry, environmental applications and cosmetics. Furthermore due to the metallic properties these metal nanoparticles exhibit photoelectric effect which neutralizes the photo bleaching concerns related with the conventional fluorescent dyes.
Gold Nanoparticles Drug Delivery: Nanoparticles have been used to enhance the selectivity and efficiency of the drug delivery system because they act as mediators of drug release. Nanoparticles have extremely small size and high surface area hence their surfaces has been available for further modification with hydrophobic, hydrophilic, cationic, anionic or any neutral moieties to the surrounding environment so they have many application in biological sciences.
Gold Nanoparticles Drug Delivery: Drug delivery systems based on nanoparticles have proved to be a great route for targeting malignant brain tumors where the conventional therapy is not as much effective. Enhanced permeability and retention (EPR) is the unique property of nanoparticles to accumulate and interact with the tumor cells.
Gold Nanoparticles have wide applications in the field of biomedicine such as to deliver pharmaceutics, for diagnostic approaches as well as for the therapeutic purposes because nanoparticles have very small sized particles, they can be used for targeted drug delivery and the metallic nanoparticles respond resonantly to the magnetic field which varies with time so they transfer enough toxic thermal energy to the tumor cells as hyperthermic agents.
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