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Chemistry

D-Index
46
Citations
7006
World Ranking
16132
National Ranking
278

Overview

Tamis Darbre is a researcher affiliated with the University of Bern in Switzerland. Their work spans fields primarily within Biochemistry, Genetics and Molecular Biology, as well as Materials Science. More specifically, their subfields of study include Molecular Biology, Materials Chemistry, Polymers and Plastics, Organic Chemistry, and Biotechnology.

The scientist has contributed to various topics including:

  • Advanced biosensing and bioanalysis techniques
  • RNA Interference and Gene Delivery
  • Glycosylation and Glycoproteins Research
  • Dendrimers and Hyperbranched Polymers
  • Carbohydrate Chemistry and Synthesis
  • Advanced Nanomaterials in Catalysis
  • Nanocluster Synthesis and Applications

Tamis Darbre's recent papers reflect a diverse range of interests and multidisciplinary approaches. Selected publications include:

  • Structure and mechanism of the ER-based glucosyltransferase ALG6, 2020, Nature
  • A Gold Nanoparticle Nanonuclease Relying on a Zn(II) Mononuclear Complex, 2020, Angewandte Chemie International Edition
  • Transfecting tissue models with CRISPR/Cas9 plasmid DNA using peptide dendrimers, 2020, Chemical Communications
  • Structure, sequon recognition and mechanism of tryptophan C-mannosyltransferase, 2023, Nature Chemical Biology
  • Lipophilic Peptide Dendrimers for Delivery of Splice-Switching Oligonucleotides, 2021, Pharmaceutics

The work has been published in journals such as Nature, Angewandte Chemie International Edition, Chemical Communications, Nature Chemical Biology, and Pharmaceutics, highlighting a spread across highly specialized and interdisciplinary publication venues.

Tamis Darbre has collaborated extensively with several frequent co-authors, including Jean-Louis Reymond, Susanna Zamolo, Jérémy Boilevin, Kaspar P. Locher, and Joël S. Bloch. These collaborations point to a network engaged in both biochemical and materials science research.

Best Publications

  • Multivalent glycoconjugates as anti-pathogenic agents

    Anna Bernardi;Jesus Jimenez-Barbero;Alessandro Casnati;Christina De Castro

  • Inhibition and Dispersion of Pseudomonas aeruginosa Biofilms by Glycopeptide Dendrimers Targeting the Fucose-Specific Lectin LecB

    Emma M.V. Johansson;Shanika A. Crusz;Elena Kolomiets;Lieven Buts

  • Peptide dendrimers as artificial enzymes, receptors, and drug-delivery agents.

    Tamis Darbre;Jean-Louis Reymond

  • Structure and mechanism of an active lipid-linked oligosaccharide flippase.

    Camilo Perez;Sabina Gerber;Jérémy Boilevin;Monika Bucher

  • A Glycopeptide Dendrimer Inhibitor of the Galactose‐Specific Lectin LecA and of Pseudomonas aeruginosa Biofilms

    Rameshwar U. Kadam;Myriam Bergmann;Matthew Hurley;Divita Garg

  • A strong positive dendritic effect in a peptide dendrimer-catalyzed ester hydrolysis reaction.

    Estelle Delort;Tamis Darbre;Jean-Louis Reymond

  • Zn-Proline catalyzed direct aldol reaction in aqueous media

    Tamis Darbre;Miguel Machuqueiro

  • Glycopeptide dendrimers as Pseudomonas aeruginosa biofilm inhibitors

    Jean-Louis Reymond;Myriam Bergmann;Tamis Darbre

  • Prebiotic carbohydrate synthesis: zinc–proline catalyzes direct aqueous aldol reactions of α-hydroxy aldehydes and ketones

    Jacob Kofoed;Jean-Louis Reymond;Tamis Darbre

  • Correction: Corrigendum: Anti-Microbial Dendrimers against Multidrug-Resistant P. aeruginosa Enhance the Angiogenic Effect of Biological Burn-wound Bandages

    Philippe Abdel-Sayed;Ariane Kaeppeli;Thissa Siriwardena;Tamis Darbre

  • Overcoming antibiotic resistance in Pseudomonas aeruginosa biofilms using glycopeptide dendrimers.

    Gaëlle Michaud;Ricardo Visini;Myriam Bergmann;Gianluca Salerno

  • Combining Topology and Sequence Design for the Discovery of Potent Antimicrobial Peptide Dendrimers against Multidrug‐Resistant Pseudomonas aeruginosa

    Michaela Stach;Thissa N. Siriwardena;Thilo Köhler;Christian van Delden

  • Lipidated Peptide Dendrimers Killing Multidrug-Resistant Bacteria

    Thissa N. Siriwardena;Michaela Stach;Runze He;Bee-Ha Gan

  • CH-π "T-shape" interaction with histidine explains binding of aromatic galactosides to Pseudomonas aeruginosa lectin LecA.

    Rameshwar U. Kadam;Divita Garg;Julian Schwartz;Ricardo Visini

  • Mechanism of bacterial oligosaccharyltransferase: in vitro quantification of sequon binding and catalysis

    Sabina Gerber;Christian Lizak;Gaëlle Michaud;Monika Bucher

  • Dual mechanism of zinc-proline catalyzed aldol reactions in water

    Jacob Kofoed;Tamis Darbre;Jean-Louis Reymond

  • Artificial aldolases from peptide dendrimer combinatorial libraries.

    Jacob Kofoed;Tamis Darbre;Jean-Louis Reymond

  • Peptide and glycopeptide dendrimer apple trees as enzyme models and for biomedical applications

    Jean-Louis Reymond;Tamis Darbre

  • Selective catalysis with peptide dendrimers.

    Céline Douat-Casassus;Tamis Darbre;Jean-Louis Reymond

  • Peptide dendrimer/lipid hybrid systems are efficient DNA transfection reagents: structure--activity relationships highlight the role of charge distribution across dendrimer generations.

    Albert Kwok;Gabriela A. Eggimann;Jean-Louis Reymond;Tamis Darbre

  • A combinatorial approach to catalytic peptide dendrimers.

    Anthony Clouet;Tamis Darbre;Jean-Louis Reymond

Frequent Co-Authors

Jean-Louis Reymond
Jean-Louis Reymond University of Bern
Markus Aebi
Markus Aebi ETH Zurich
Anne Imberty
Anne Imberty Grenoble Alpes University
Karl-Erich Jaeger
Karl-Erich Jaeger Heinrich Heine University Düsseldorf
Thilo Köhler
Thilo Köhler University of Geneva
Florian Hollfelder
Florian Hollfelder University of Cambridge
Miguel Cámara
Miguel Cámara University of Nottingham
Paul Williams
Paul Williams University of Nottingham
Samir El Andaloussi
Samir El Andaloussi Karolinska Institute
Serge Cosnier
Serge Cosnier Grenoble Alpes University

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