Protein-assisted one-pot synthesis and biofunctionalization of spherical gold nanoparticles for selective targeting of cancer cells.
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- Type
- article
- Published
- 2012-09-10
- Cited by
- 50
- References
- 26
- OpenAlex
- https://openalex.org/W2028367577
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:41031737
Keywords
Colloidal gold, Nanoparticle, Nanotechnology, Cancer cell, Membrane
References
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- Single-domain protein A-engineered magnetic nanoparticles: toward a universal strategy to site-specific labeling of antibodies for targeted detection of tumor cells.
- Selection of biomolecules capable of mediating the formation of nanocrystals.
- The golden age: gold nanoparticles for biomedicine
- Universal tools for biomolecular attachment to surfaces
- Protein- and peptide-directed syntheses of inorganic materials.
- Functionalization of thioctic acid-capped gold nanoparticles for specific immobilization of histidine-tagged proteins.
- Protein oriented ligation on nanoparticles exploiting O6-alkylguanine-DNA transferase (SNAP) genetically encoded fusion.
- Noble-metal nanoparticles directly conjugated to globular proteins.
- HER2 expression in breast cancer cells is downregulated upon active targeting by antibody-engineered multifunctional nanoparticles in mice.
- Functionalization of inorganic nanoparticles for bioimaging applications.
- Biological applications of gold nanoparticles.
- Investigating the structural biofunctionality of antibodies conjugated to magnetic nanoparticles.
- Goldnanopartikel in Biologie und Medizin
- Ligand design and bioconjugation of colloidal gold nanoparticles.
- HER2 targeting as a two-sided strategy for breast cancer diagnosis and treatment: Outlook and recent implications in nanomedical approaches.
- Ligandendesign und Biokonjugation kolloidaler Gold‐Nanopartikel
- Quantitative replacement of cetyl trimethylammonium bromide by cationic thiol ligands on the surface of gold nanorods and their extremely large uptake by cancer cells.
- Recognition-Mediated Activation of Therapeutic Gold Nanoparticles Inside Living Cells
- Gold Nanoparticles for Biology and Medicine
Cited by
- One-pot, green synthesis of gold nanoparticles by gelatin and investigation of their biological effects on Osteoblast cells.
- Colloidal Gold--Collagen Protein Core--Shell Nanoconjugate: One-Step Biomimetic Synthesis, Layer-by-Layer Assembled Film, and Controlled Cell Growth.
- Modelling the adsorption of peptides at aqueous quartz and gold interfaces
- First-principles-based force field for the interaction of proteins with Au(100)(5 × 1) : an extension of GolP-CHARMM
- A DNAzyme-Gold Nanoparticle Probe for Uranyl Ion in Living Cells
- Aqueous citrate: a first-principles and force-field molecular dynamics study
- A method for separating PEGylated Au nanoparticle ensembles as a function of grafting density and core size.
- Ultrasmall biomolecule-anchored hybrid GdVO4 nanophosphors as a metabolizable multimodal bioimaging contrast agent.
- Delivering Colloidal Nanoparticles to Mammalian Cells: A Nano–Bio Interface Perspective
- One-step nucleotide-programmed growth of porous upconversion nanoparticles: application to cell labeling and drug delivery.
- Enzymatic self-sacrificial display of an active protein on gold nanoparticles
- Structure and properties of citrate overlayers adsorbed at the aqueous Au(111) interface.
- Polymer coated gold nanoparticle-protein agglomerates as nanocarriers for hydrophobic drug delivery.
- Enzymes as bionanoreactors: glucose oxidase for the synthesis of catalytic Au nanoparticles and Au nanoparticle-polyaniline nanocomposites.
- Assessing the in vivo targeting efficiency of multifunctional nanoconstructs bearing antibody-derived ligands.
- DNA-mediated biomineralization of rare-earth nanoparticles for simultaneous imaging and stimuli-responsive drug delivery.
- Biogenic Growth of Alloys and Core-Shell Nanostructures Using Urease as a Nanoreactor at Ambient Conditions
- GolP-CHARMM: First-Principles Based Force Fields for the Interaction of Proteins with Au(111) and Au(100).
- Gold nanoparticles stabilized using a fluorescent propargylic ester terminal alkyne at room temperature
- Biotechnological approaches toward nanoparticle biofunctionalization.
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