摘要:
Disclosed are multimeric compounds of K1 domains from the Hepatocyte Growth Factor/Scatter Factor (HGF/SF) being able to induce activation of the tyrosine kinase receptor MET and their uses.
摘要:
Disclosed are proteins derived from the HGF/SF which are able to induce activation of the tyrosine kinase receptor MET and their uses, in particular to promote tissue regeneration. Further disclosed are nucleic acid molecules coding such protein, expression vectors containing such nucleic acid molecule, host cells containing such expression vectors, and related compositions.
摘要:
The present invention relates to a method for producing a polypeptide, including at least one native ligation step using a peptide functionalized with a selenium group. The invention further relates to selenium peptides and compounds.
摘要:
The present invention relates to the field of the detection of molecules of interest in a sample, preferably by mass spectrometry. The present invention concerns a label compound, a molecule labeled with said compound (a conjugate), a method of detection of a molecule of interest (a target molecule) in a sample involving said conjugate, a kit to implement said method and a process for the preparation of the label.
摘要:
The invention relates to a device for detecting analytes, including a plastic substrate at least partially covered by bonding polymers attached to the substrate in a non-covalent manner, said bonding polymers comprising a polysaccharide backbone provided with aromatic groupings and carboxylic acid groupings.
摘要:
The invention concerns a functionalised solid support for the synthesis of compounds comprising at least an alpha -oxoaldehyde function, its method for preparation and its uses, in particular for preparing a bank of organic compounds, a diagnostic reagent, a microtitration plate and a biochip, such as a DNA chip. The invention also concerns a method for the synthesis of organic compounds comprising at least an alpha -oxoaldehyde function and alpha -oxoaldehyde peptides obtained by said method.