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Gold Nanoparticles for Biology and Medicine

Angewandte Chemie International Edition · 2010 · Vol. 49(19) · pp. 3280–3294
David A. GiljohannDwight S. SeferosWeston L. DanielMatthew D. MassichPinal C. PatelChad A. Mirkin

Abstract

Gold colloids have fascinated scientists for over a century and are now heavily utilized in chemistry, biology, engineering, and medicine. Today these materials can be synthesized reproducibly, modified with seemingly limitless chemical functional groups, and, in certain cases, characterized with atomic-level precision. This Review highlights recent advances in the synthesis, bioconjugation, and cellular uses of gold nanoconjugates. There are now many examples of highly sensitive and selective assays based upon gold nanoconjugates. In recent years, focus has turned to therapeutic possibilities for such materials. Structures which behave as gene-regulating agents, drug carriers, imaging agents, and photoresponsive therapeutics have been developed and studied in the context of cells and many debilitating diseases. These structures are not simply chosen as alternatives to molecule-based systems, but rather for their new physical and chemical properties, which confer substantive advantages in cellular and medical applications.

Gold and Silver Nanoparticles Synthesis and ApplicationsAdvanced biosensing and bioanalysis techniquesRNA Interference and Gene DeliveryBioconjugationNanotechnologyColloidal goldContext (archaeology)Drug deliveryChemical biologyChemistryNanoparticleMaterials scienceBiology

MeSH terms

AnimalsContrast MediaDrug CarriersGoldHumansRNA, AntisensePhotosensitizing AgentsGene Transfer TechniquesMetal Nanoparticles
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