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Dive into the research topics where Markus Gude is active.

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Featured researches published by Markus Gude.


Bioorganic & Medicinal Chemistry Letters | 2010

Novel pyrazolo-tetrahydropyridines as potent orexin receptor antagonists.

Thierry Sifferlen; Christoph Boss; Emmanuelle Cottreel; Ralf Koberstein; Markus Gude; Hamed Aissaoui; Thomas Weller; John Gatfield; Catherine Brisbare-Roch; Francois Jenck

A novel series of dual orexin receptor antagonists was prepared by heteroaromatic five-membered ring system replacement of the dimethoxyphenyl moiety contained in the tetrahydroisoquinoline core skeleton of almorexant. Thus, replacement of the dimethoxyphenyl by a substituted pyrazole and additional optimization of the substitution pattern of the phenethyl motif allowed the identification of potent antagonists with low nanomolar affinity for hOX(1)R and hOX(2)R. The synthesis and structure-activity relationship of these novel antagonists will be discussed in this communication. These investigations furnished several suitable candidates for further evaluation in in vivo studies in rats.


Journal of Medicinal Chemistry | 2017

Discovery and Optimization of Isoquinoline Ethyl Ureas as Antibacterial Agents

Philippe Panchaud; Thierry Bruyère; Anne-Catherine Blumstein; Daniel Bur; Alain Chambovey; Eric A. Ertel; Markus Gude; Christian Hubschwerlen; Loïc Jacob; Thierry Kimmerlin; Thomas Pfeifer; Lars Prade; Peter Seiler; Daniel Ritz; Georg Rueedi

Our strategy to combat resistant bacteria consisted of targeting the GyrB/ParE ATP-binding sites located on bacterial DNA gyrase and topoisomerase IV and not utilized by marketed antibiotics. Screening around the minimal ethyl urea binding motif led to the identification of isoquinoline ethyl urea 13 as a promising starting point for fragment evolution. The optimization was guided by structure-based design and focused on antibacterial activity in vitro and in vivo, culminating in the discovery of unprecedented substituents able to interact with conserved residues within the ATP-binding site. A detailed characterization of the lead compound highlighted the potential for treatment of the problematic fluoroquinolone-resistant MRSA, VRE, and S. pneumoniae, and the possibility to offer patients an intravenous-to-oral switch therapy was supported by the identification of a suitable prodrug concept. Eventually, hERG K-channel block was identified as the main limitation of this chemical series, and efforts toward its minimization are reported.


Archive | 2007

3-AZA-BICYCLO[3.1.0]HEXANE DERIVATIVES

Hamed Aissaoui; Christoph Boss; Markus Gude; Ralf Koberstein; David Lehmann; Thierry Sifferlen; Daniel Trachsel


Archive | 2008

Trans-3-aza-bicyclo[3.1.0]hexane derivatives

Hamed Aissaoui; Christoph Boss; Markus Gude; Ralf Koberstein; David Lehman; Thierry Sifferlen; Daniel Trachsel


Archive | 2007

3-heteroaryl (amino or amido)-1- (biphenyl or phenylthiazolyl) carbonylpiperidine derivativesas orexin receptor inhibitors

Hamed Aissaoui; Christoph Boss; Markus Gude; Ralf Koberstein; Thierry Sifferlen


Archive | 2007

AZETIDINE COMPOUNDS AS OREXIN RECEPTOR ANTAGONISTS

Hamed Aissaoui; Christoph Boss; Markus Gude; Ralf Koberstein; Thierry Sifferlen


Archive | 2007

2-aza-bicyclo[3.1.0]hexane derivatives as orexin receptor antagonists

Hamed Aissaoui; Christoph Boss; Markus Gude; Ralf Koberstein; Thierry Sifferlen; Daniel Trachsel


Archive | 2008

2-aza-bicyclo[3.3.0]octane derivatives

Hamed Aissaoui; Christoph Boss; Markus Gude; Ralf Koberstein; Thierry Sifferlen; Daniel Trachsel


Archive | 2008

2-cyclopropyl-thiazole derivatives

Hamed Aissaoui; Christoph Boss; Markus Gude; Ralf Koberstein; Thierry Sifferlen


Archive | 2008

3-aza-bicyclo[3.3.0]octane compounds

Hamed Aissaoui; Christoph Boss; Markus Gude; Ralf Koberstein; Thierry Sifferlen

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