Abstract:
The present invention provides hTERT modulators and methods for producing and using the same. In particular, the present invention provide a compound of the formula as described herein. Some aspects of the invention are based on the characterization of the effect of hTERT core promoter region mutants on the 5-12 G-quadruplex structure and its stability. It is believed that some of the compounds of the invention bind selectively to the G-quadruplex in the hTERT core promoter mutant, which results in reversal of the effect of mutant promoter activation.
Abstract:
Described are compounds that inhibit androgen receptor action, pharmaceutical compositions including the compounds, and methods of using the compounds and compositions for treating disorders and conditions in a subject.
Abstract:
Provided are compounds comprising two DNA supramolecular binding molecules covalently joined by a linker group. Also provided are multisignal labeling reagents comprising (i) an oligomer of nucleotides or nucleotide analogs; (ii) a DNA supramolecular binding molecule noncovalently bound to the oligomer; and (iii) a first reactive group or a first partner of a first binding pair covalently bound to the oligomer. Additionally provided are methods of producing multisignal labeling reagents.
Abstract:
Provided are compounds comprising two DNA supramolecular binding molecules covalently joined by a linker group. Also provided are multisignal labeling reagents comprising (i) an oligomer of nucleotides or nucleotide analogs; (ii) a DNA supramolecular binding molecule noncovalently bound to the oligomer; and (iii) a first reactive group or a first partner of a first binding pair covalently bound to the oligomer. Additionally provided are methods of producing multisignal labeling reagents.
Abstract:
Provided are a compound represented by Formula 1 and an organic light-emitting device including the same: wherein substituents of Formula 1 are understood by referring to the description provided in the detailed description.
Abstract:
This invention relates to a novel hindered phenol compound of Formula (I) (wherein the groups R and R′ are as defined in the specification), preparation thereof and use thereof as an antioxidant. By using the hindered phenol compound of this invention as an antioxidant, it is possible to produce a lubricant oil composition exhibiting excellent oxidation resistance at elevated temperatures.
Abstract:
Provided are compounds comprising two DNA supramolecular binding molecules covalently joined by a linker group. Also provided are multisignal labeling reagents comprising (i) an oligomer of nucleotides or nucleotide analogs; (ii) a DNA supramolecular binding molecule noncovalently bound to the oligomer; and (iii) a first reactive group or a first partner of a first binding pair covalently bound to the oligomer. Additionally provided are methods of producing multisignal labeling reagents.
Abstract:
The present invention relates to compounds of formulas III and V that are useful as pharmaceutical agents, particularly as autophagy inhibitors.
Abstract:
The present invention relates to the use of a compound of formula (I): in which R1 represents a radionuclide, Ar represents an aromatic nucleus, m is an integer varying from 2 to 4, R2 and R3 represent, independently of one another, a hydrogen atom, a (C1-C6)alkyl group, a (C1-C6)alkenyl group or an aryl group chosen from a phenyl, benzyl, imidazolyl, pyridyl, pyrimidinyl, pyrazinyl, indolyl, indazolyl, furyl and thienyl group, and their addition salts with pharmaceutically acceptable acids, in the preparation of a radiopharmaceutical composition intended for the diagnosis and/or treatment of melanoma.
Abstract:
This invention provides compounds of formula 1, having the structure which are useful as inhibitors of protein tyrosine kinase and are antiproliferative agents.