40nm diameter, amine functionalized, PEG 5000 coated, OD 50, dispersion in H₂O
Storage Temp
Store at 2-8°C
Shipped In
Wet ice
Product Description
Description
Gold nanoparticles (AuNPs) ranging from 2-200nm in diameter find applications in diverse fields. They show excellent biocompatibility and attractive physicochemical properties. AuNPs, as aggregates, is shown to be highly sensitive colloidal biosensors. Poly (ethylene) glycol (PEG) surface coating on gold nanoparticles helps in the reduction of protein adsorption, reduces nonspecific interactions with cells and greatly improves the pharmokinetics of these nanoparticles and disables aggregation of the nanoparticles. PEG layer density depends inversely on the AuNP curvature. Denser coating was possible on smaller AuNPs. AuNPs coated with PEG 5000 exhibited highest colloidal stability. Amine functionalized GNPs which has Poly Ethylene Glycol (PEG) as the ligand or carrier molecule forms a conjugate with siRNA and is extremely useful in RNAi technology. Since it adheres to cell membranes, it may find use in cellular and intracellular targeting in targeted drug delivery applications and also used in biodistribution studies.Functionalized particles have been extensively used to study cellular uptake of nanoparticles and targeted drug delivery.Several other specific applications have been listed below:Since they adhere to cell membranes, AuNPs are used in cellular and intracellular targeting in targeted drug delivery applications and can also be used in biodistribution studiesAuNPs may also be used in photothermal therapy and radiotherapy.AuNPs ranging from 10 to 250 nm, were studied to have been absorbed primarily by liver and spleen, when injected intravenously in rats.They may also be used in carrying siRNA which acts against human prostate carcinoma cells by inhibiting a specific cancer gene.
1.Sarah D Brown,Paola Nativo,Jo-Ann Smith,David Stirling,Paul R Edwards,Balaji Venugopal,David J Flint,Jane A Plumb,Duncan Graham,Nial J Wheate. (2010-03-17) Gold nanoparticles for the improved anticancer drug delivery of the active component of oxaliplatin.. Journal of the American Chemical Society, 132 ((13)):(4678-4684). [PMID:20225865]
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