Multivalent, bifunctional dendrimers prepared by click chemistry. 2005

Peng Wu, and Michael Malkoch, and Jasmine N Hunt, and Robert Vestberg, and Eiton Kaltgrad, and M G Finn, and Valery V Fokin, and K Barry Sharpless, and Craig J Hawker
The Scripps Research Institute, Department of Chemistry, La Jolla, CA 92037, USA.

Unsymmetrical dendrimers, containing both mannose binding units and coumarin fluorescent units, have been prepared using click chemistry and shown to be highly efficient, dual-purpose recognition/detection agents for the inhibition of hemagglutination.

UI MeSH Term Description Entries
D000114 Acetylene The simplest two carbon alkyne with the formula HCCH. Ethyne
D015394 Molecular Structure The location of the atoms, groups or ions relative to one another in a molecule, as well as the number, type and location of covalent bonds. Structure, Molecular,Molecular Structures,Structures, Molecular
D050091 Dendrimers Tree-like, highly branched, polymeric compounds. They grow three-dimensionally by the addition of shells of branched molecules to a central core. The overall globular shape and presence of cavities gives potential as drug carriers and CONTRAST AGENTS. Dendrimer,Dendritic Compounds,Dendritic Polymers,Dendrons,Compound, Dendritic,Dendritic Compound,Dendritic Polymer,Polymer, Dendritic,Polymers, Dendritic
D057927 Hydrophobic and Hydrophilic Interactions The thermodynamic interaction between a substance and WATER. Hydrophilic Interactions,Hydrophilic and Hydrophobic Interactions,Hydrophilicity,Hydrophobic Interactions,Hydrophobicity,Hydrophilic Interaction,Hydrophilicities,Hydrophobic Interaction,Hydrophobicities,Interaction, Hydrophilic,Interaction, Hydrophobic,Interactions, Hydrophilic,Interactions, Hydrophobic
D019032 Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization A mass spectrometric technique that is used for the analysis of large biomolecules. Analyte molecules are embedded in an excess matrix of small organic molecules that show a high resonant absorption at the laser wavelength used. The matrix absorbs the laser energy, thus inducing a soft disintegration of the sample-matrix mixture into free (gas phase) matrix and analyte molecules and molecular ions. In general, only molecular ions of the analyte molecules are produced, and almost no fragmentation occurs. This makes the method well suited for molecular weight determinations and mixture analysis. Laser Desorption-Ionization Mass Spectrometry, Matrix-Assisted,MALD-MS,MALDI,Mass Spectrometry, Matrix-Assisted Laser Desorption-Ionization,Mass Spectroscopy, Matrix-Assisted Laser Desorption-Ionization,Matrix-Assisted Laser Desorption-Ionization Mass Spectrometry,Spectroscopy, Mass, Matrix-Assisted Laser Desorption-Ionization,MALDI-MS,MS-MALD,SELDI-TOF-MS,Surface Enhanced Laser Desorption Ionization Mass Spectrometry,Laser Desorption Ionization Mass Spectrometry, Matrix Assisted,MALDI MS,Mass Spectrometry, Matrix Assisted Laser Desorption Ionization,Mass Spectroscopy, Matrix Assisted Laser Desorption Ionization,Matrix Assisted Laser Desorption Ionization Mass Spectrometry

Related Publications

Peng Wu, and Michael Malkoch, and Jasmine N Hunt, and Robert Vestberg, and Eiton Kaltgrad, and M G Finn, and Valery V Fokin, and K Barry Sharpless, and Craig J Hawker
July 2009, Bioconjugate chemistry,
Peng Wu, and Michael Malkoch, and Jasmine N Hunt, and Robert Vestberg, and Eiton Kaltgrad, and M G Finn, and Valery V Fokin, and K Barry Sharpless, and Craig J Hawker
February 2014, Journal of peptide science : an official publication of the European Peptide Society,
Peng Wu, and Michael Malkoch, and Jasmine N Hunt, and Robert Vestberg, and Eiton Kaltgrad, and M G Finn, and Valery V Fokin, and K Barry Sharpless, and Craig J Hawker
May 2011, Chemical communications (Cambridge, England),
Peng Wu, and Michael Malkoch, and Jasmine N Hunt, and Robert Vestberg, and Eiton Kaltgrad, and M G Finn, and Valery V Fokin, and K Barry Sharpless, and Craig J Hawker
August 2013, The Journal of organic chemistry,
Peng Wu, and Michael Malkoch, and Jasmine N Hunt, and Robert Vestberg, and Eiton Kaltgrad, and M G Finn, and Valery V Fokin, and K Barry Sharpless, and Craig J Hawker
February 2009, Chemical communications (Cambridge, England),
Peng Wu, and Michael Malkoch, and Jasmine N Hunt, and Robert Vestberg, and Eiton Kaltgrad, and M G Finn, and Valery V Fokin, and K Barry Sharpless, and Craig J Hawker
September 2023, Bioconjugate chemistry,
Peng Wu, and Michael Malkoch, and Jasmine N Hunt, and Robert Vestberg, and Eiton Kaltgrad, and M G Finn, and Valery V Fokin, and K Barry Sharpless, and Craig J Hawker
August 2008, European journal of organic chemistry,
Peng Wu, and Michael Malkoch, and Jasmine N Hunt, and Robert Vestberg, and Eiton Kaltgrad, and M G Finn, and Valery V Fokin, and K Barry Sharpless, and Craig J Hawker
September 2014, Chemistry (Weinheim an der Bergstrasse, Germany),
Peng Wu, and Michael Malkoch, and Jasmine N Hunt, and Robert Vestberg, and Eiton Kaltgrad, and M G Finn, and Valery V Fokin, and K Barry Sharpless, and Craig J Hawker
November 2015, Carbohydrate research,
Peng Wu, and Michael Malkoch, and Jasmine N Hunt, and Robert Vestberg, and Eiton Kaltgrad, and M G Finn, and Valery V Fokin, and K Barry Sharpless, and Craig J Hawker
November 2010, Organic & biomolecular chemistry,
Copied contents to your clipboard!