Novel amino adamantane compounds and 3-amino adamantane 1-carboxylic acids

All previously known synthesis procedures for the production of adamantane derivatives require drastic reaction conditions like, for example, the use of concentrated acids and high temperatures. Thus, the range of functional groups that can be introduced is starkly restricted. Above all, from the group of pharmacologically relevant 3-amino adamantane 1-carboxylic acids, only a few individual compounds of this chemical class are currently accessible.

In contrast, the novel synthesis procedure enables the production of adamantane derivatives under mild reaction conditions and at lower temperatures. The syntheses are chemo- and regioselective, so that a multitude of functional groups can be selectively introduced. The production method of amino adamantane derivatives, based on the present invention, allows for the direct introduction of amido groups without prior halogenation and therewith offers an alternative to conventional methods. Further methods, based on the present invention, allow for the direct production of 5,7-substituted 3-amino adamantane 1-carboxylic acids, as well as their linkage to oligomers. Therapeutic uses of the novel compounds: antiviral agents, GABA modulation, components of peptide catalysts, artificial ion channels.

Further Information: PDF

TransMIT Gesellschaft für Technologietransfer mbH
Phone: +49 (0)641/943 64-12

Contact
Dr. Peter Stumpf

Media Contact

info@technologieallianz.de TechnologieAllianz e.V.

All latest news from the category: Technology Offerings

Back to home

Comments (0)

Write a comment

Newest articles

Machine learning algorithm reveals long-theorized glass phase in crystal

Scientists have found evidence of an elusive, glassy phase of matter that emerges when a crystal’s perfect internal pattern is disrupted. X-ray technology and machine learning converge to shed light…

Mapping plant functional diversity from space

HKU ecologists revolutionize ecosystem monitoring with novel field-satellite integration. An international team of researchers, led by Professor Jin WU from the School of Biological Sciences at The University of Hong…

Inverters with constant full load capability

…enable an increase in the performance of electric drives. Overheating components significantly limit the performance of drivetrains in electric vehicles. Inverters in particular are subject to a high thermal load,…

Partners & Sponsors