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Dive into the research topics where Monika Ermann is active.

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Featured researches published by Monika Ermann.


Bioorganic & Medicinal Chemistry Letters | 2008

Arylsulfonamide CB2 receptor agonists: SAR and optimization of CB2 selectivity.

Monika Ermann; Doris Riether; Edward Walker; Innocent Mushi; James Edward Jenkins; Beatriz Noya-Marino; Mark L. Brewer; Malcolm Taylor; Patricia Amouzegh; Stephen Peter East; Brian W. Dymock; Mark J. Gemkow; Andreas Kahrs; Andreas Ebneth; Sabine Löbbe; Kathy O’Shea; Daw-Tsun Shih; David S. Thomson

A high-throughput screening campaign resulted in the discovery of a highly potent dual cannabinoid receptor 1 (CB1) and 2 (CB2) agonist. Following a thorough SAR exploration, a series of selective CB2 full agonists were identified.


Bioorganic & Medicinal Chemistry Letters | 2011

1,4-Diazepane compounds as potent and selective CB2 agonists: optimization of metabolic stability.

Doris Riether; Lifen Wu; Pier F. Cirillo; Angela Berry; Edward Walker; Monika Ermann; Beatriz Noya-Marino; James Edward Jenkins; Dan Albaugh; Claudia Albrecht; Michael B. Fisher; Mark J. Gemkow; Heather Grbic; Sabine Löbbe; Clemens Möller; Kathy O’Shea; Achim Sauer; Daw-Tsun Shih; David S. Thomson

A high-throughput screening campaign has identified 1,4-diazepane compounds which are potent Cannabinoid receptor 2 agonists with excellent selectivity against the Cannabinoid receptor 1. This class of compounds suffered from low metabolic stability. Following various strategies, compounds with a good stability in liver microsomes and rat PK profile have been identified.


Bioorganic & Medicinal Chemistry Letters | 2015

Selective CB2 receptor agonists. Part 1: The identification of novel ligands through computer-aided drug design (CADD) approaches

Eugene R. Hickey; Renee M. Zindell; Pier F. Cirillo; Lifen Wu; Monika Ermann; Angela Berry; David S. Thomson; Claudia Albrecht; Mark J. Gemkow; Doris Riether

Computer-aided drug design scaffold hopping strategies were utilized to identify new classes of CB2 agonists when compounds of an established series with low nanomolar potency were challenging to optimize for good drug-like properties. Use of ligand-based design strategies through BI Builder (a tool for de novo design) and PharmShape (a virtual screening software package) approaches led to the discovery of new chemotypes. Specifically, compounds containing azetidine-, proline-, and piperidine-based cores were found to have low nanomolar and picomolar CB2 agonist activities with drug-like properties considered appropriate for early profiling.


Bioorganic & Medicinal Chemistry Letters | 2011

Aryl 1,4-diazepane compounds as potent and selective CB2 agonists: optimization of drug-like properties and target independent parameters.

Renee M. Zindell; Edward Walker; John Scott; Patricia Amouzegh; Lifen Wu; Monika Ermann; David S. Thomson; Micheal B. Fisher; Cody Lee Fullenwider; Heather Grbic; Paul Kaplita; Brian Linehan; Mita Patel; Monica Patel; Sabine Löbbe; Svenja Block; Claudia Albrecht; Mark J. Gemkow; Daw-Tsun Shih; Doris Riether

A high throughput screening campaign identified aryl 1,4-diazepane compounds as potent and selective cannabinoid receptor 2 agonists as compared to cannabinoid receptor 1. This class of compounds suffered from poor drug-like parameters as well as low microsomal stability and poor solubility. Structure-activity relationships are described with a focus on improving the drug-like parameters resulting in compounds with improved solubility and permeability.


Bioorganic & Medicinal Chemistry Letters | 2015

Selective CB2 receptor agonists. Part 2: Structure–activity relationship studies and optimization of proline-based compounds

Doris Riether; Renee M. Zindell; Lifen Wu; Raj Betageri; James Edward Jenkins; Someina Khor; Angela Berry; Eugene R. Hickey; Monika Ermann; Claudia Albrecht; Angelo Ceci; Mark J. Gemkow; Nelamangala Nagaraja; Helmut Romig; Achim Sauer; David S. Thomson

Through a ligand-based pharmacophore model (S)-proline based compounds were identified as potent cannabinoid receptor 2 (CB2) agonists with high selectivity over the cannabinoid receptor 1 (CB1). Structure-activity relationship investigations for this compound class lead to oxo-proline compounds 21 and 22 which combine an impressive CB1 selectivity profile with good pharmacokinetic properties. In a streptozotocin induced diabetic neuropathy model, 22 demonstrated a dose-dependent reversal of mechanical hyperalgesia.


Archive | 2007

Compounds Which Modulate The CB2 Receptor

Angela Berry; Pier F. Cirillo; Eugene R. Hickey; Doris Riether; David S. Thomson; Renee M. Zindell; Nigel James Blumire; Chandana Chowdhury; Monika Ermann; James Edward Jenkins; Innocent Mushi; Christopher Francis Palmer; Malcolm Taylor


Journal of Medicinal Chemistry | 2008

Structure-Based Design of Novel 2-Amino-6-phenyl-pyrimido[5′,4′:5,6]pyrimido[1,2-a]benzimidazol-5(6H)-ones as Potent and Orally Active Inhibitors of Lymphocyte Specific Kinase (Lck): Synthesis, SAR, and In Vivo Anti-Inflammatory Activity

Matthew W. Martin; John Newcomb; Joseph J. Nunes; Christina Boucher; Lilly Chai; Linda F. Epstein; Theodore Faust; Sylvia Flores; Paul Gallant; Anu Gore; Yan Gu; Faye Hsieh; Xin Huang; Joseph L. Kim; Scot Middleton; Kurt Morgenstern; Antonio Oliveira-dos-Santos; Vinod F. Patel; David Powers; Paul Rose; Yanyan Tudor; Susan M. Turci; Andrew A. Welcher; Debra Zack; Huilin Zhao; Li Zhu; Xiaotian Zhu; Chiara Ghiron; Monika Ermann; David B. R. Johnston


Journal of Medicinal Chemistry | 2006

Novel 2-aminopyrimidine carbamates as potent and orally active inhibitors of Lck: synthesis, SAR, and in vivo antiinflammatory activity.

Matthew W. Martin; John Newcomb; Joseph J. Nunes; David C. Mcgowan; David M. Armistead; Christina Boucher; John L. Buchanan; William H. Buckner; Lilly Chai; Daniel Elbaum; Linda F. Epstein; Theodore Faust; Shaun Flynn; Paul Gallant; Anu Gore; Yan Gu; Faye Hsieh; Xin Huang; Josie H. Lee; Daniela Metz; Scot Middleton; Deanna Mohn; Kurt Morgenstern; Michael J. Morrison; Perry M. Novak; Antonio Oliveira-dos-Santos; David Powers; Paul Rose; Stephen Schneider; Stephanie Sell


Archive | 2008

Diazepane Compounds Which Modulate The CB2 Receptor

Pier F. Cirillo; Eugene R. Hickey; Doris Riether; Lifen Wu; Renee M. Zindel; Patricia Amouzegh; Monika Ermann; Edward Walker


Archive | 2009

Compounds which selectively modulate the cb2 receptor

Alessandra Bartolozzi; Angela Berry; Eugene R. Hickey; Markus Ostermeier; Doris Riether; Achim Sauer; David S. Thomson; Lifen Wu; Renee M. Zindell; Patricia Amouzegh; Nigel James Blumire; Stephen Peter East; Monika Ermann; Someina Khor; Innocent Mushi

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Lifen Wu

Boehringer Ingelheim

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