Ivan Huc Group
@akhuc.bsky.social
330 followers 390 following 10 posts
Group specialized in the synthesis of foldamers based on aromatic oligoamides & biological applications 🧬 | LMU Munich, Germany | huc.cup.uni-muenchen.de #ChemBio #Supra (account run by postdoc @lggchem.eu)
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Reposted by Ivan Huc Group
lggchem.eu
Immensely happy to have received this poster prize for the use of foldamers on disordered proteins 🧬
Warm thanks to the organizers of this fantastic @foldnetuk.bsky.social symposium and to the Huc group in Munich @akhuc.bsky.social 🌍
Reposted by Ivan Huc Group
foldnetuk.bsky.social
Ivan Huc Group @akhuc.bsky.social at the Banquet last night #Foldamers #Symposium
akhuc.bsky.social
Congratulations to Manu for his great communication on his (numerous!) PhD works on DNA mimics at the Foldamer Symposium! 🧬
Reposted by Ivan Huc Group
foldnetuk.bsky.social
The countdown is on! Registrations close in three days on Friday 27 June, 23:59 GMT.

🔗Register now: foldamers2025.com

#conference #foldamers #chemistry #chemsky

@kingsnmes.bsky.social @andrecobb.bsky.social @anbismillah.bsky.social
akhuc.bsky.social
You can check out this paper to know how we achieved automated synthesis of aromatic oligoamide foldamers with a very wide variety of biogenic side chains! 🤖 pubs.acs.org/doi/10.1021/...
Development of Aromatic Foldamer Building Blocks Bearing Multiple Biogenic Side Chains
Aromatic oligoamides, with their intrinsic rigidity and well-defined conformations, are recognized for their potential in medical applications. Similar structures are present in several naturally occurring antibiotics and have been explored for their ability to bind to various proteins and B-DNA (canonical right-handed DNA helix). This study introduces a synthetic approach to produce quinoline amino acid monomers bearing diversified side chain combinations in positions 4, 5, and 6 of the quinoline ring, designed to enhance the side chain density on helical foldamers. By increasing the number of side chains on each monomer, we aim to mimic the dense side chain presentation of α-peptides, thus improving the potential for protein surface recognition. This synthetic strategy involves efficient functionalization through cross-coupling reactions, enabling the installation of diverse side chains at strategic positions on the quinoline ring. The process has been optimized for automated solid-phase synthesis, successfully producing a 20-unit oligoamide with good purity. This foldamer, featuring multiple cationic, anionic, polar, and hydrophobic side chains, demonstrates the potential for molecular recognition in drug discovery and therapeutic applications. The methodology described here represents a significant advancement in the construction of aromatic oligoamide foldamers, providing a robust platform for further exploration of biological systems.
pubs.acs.org
akhuc.bsky.social
That's a German tradition for defenses — many group members participate in the making of the PhD hat !
akhuc.bsky.social
Congratulations to the new doctor Shuhe Wang for this Chem. Sci. publication on bundles of three aromatic helices! 🏗️
pubs.rsc.org/en/content/a...
akhuc.bsky.social
Check out our article in @angewandtechemie.bsky.social about the design of foldamers that aggregate into abiotic quaternary structures 🧩 Congrats to Shuhe! onlinelibrary.wiley.com/doi/10.1002/...
onlinelibrary.wiley.com