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Dive into the research topics where David Francis Alain Lançois is active.

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Featured researches published by David Francis Alain Lançois.


Antimicrobial Agents and Chemotherapy | 2012

Novel Antibiotics Targeting Respiratory ATP Synthesis in Gram-Positive Pathogenic Bacteria

W Balemans; Luc Vranckx; N. Lounis; Ovidiu Pop; Jérôme Emile Georges Guillemont; Karen Vergauwen; Selena Mol; Ron Gilissen; Magali Motte; David Francis Alain Lançois; Miguel F.C. De Bolle; Kristien Bonroy; Holger Lill; Koen Andries; Dirk Bald; Anil Koul

ABSTRACT Emergence of drug-resistant bacteria represents a high, unmet medical need, and discovery of new antibacterials acting on new bacterial targets is strongly needed. ATP synthase has been validated as an antibacterial target in Mycobacterium tuberculosis, where its activity can be specifically blocked by the diarylquinoline TMC207. However, potency of TMC207 is restricted to mycobacteria with little or no effect on the growth of other Gram-positive or Gram-negative bacteria. Here, we identify diarylquinolines with activity against key Gram-positive pathogens, significantly extending the antibacterial spectrum of the diarylquinoline class of drugs. These compounds inhibited growth of Staphylococcus aureus in planktonic state as well as in metabolically resting bacteria grown in a biofilm culture. Furthermore, time-kill experiments showed that the selected hits are rapidly bactericidal. Drug-resistant mutations were mapped to the ATP synthase enzyme, and biochemical analysis as well as drug-target interaction studies reveal ATP synthase as a target for these compounds. Moreover, knockdown of the ATP synthase expression strongly suppressed growth of S. aureus, revealing a crucial role of this target in bacterial growth and metabolism. Our data represent a proof of principle for using the diarylquinoline class of antibacterials in key Gram-positive pathogens. Our results suggest that broadening the antibacterial spectrum for this chemical class is possible without drifting off from the target. Development of the diarylquinolines class may represent a promising strategy for combating Gram-positive pathogens.


Archive | 2005

Quinoline derivatives for use as mycobacterial inhibitors

Jérôme Emile Georges Guillemont; Elisabeth Thérèse Jeanne Pasquier; David Francis Alain Lançois


Archive | 2011

Novel mycobacterial inhibitors

Jérôme Emile Georges Guillemont; Elisabeth Thérèse Jeanne Pasquier; David Francis Alain Lançois


Archive | 2006

Quinoline derivatives as antibacterical agents

Koenraad Jozef Lodewijk Marcel Andries; Anil Koul; Jérôme Emile Georges Guillemont; Elisabeth Thérèse Jeanne Pasquier; David Francis Alain Lançois


Archive | 2012

Antibacterial piperidinyl substituted 3,4-dihydro-1h-[1,8]naphthyridinones

Jérôme Emile Georges Guillemont; David Francis Alain Lançois; Magali Madeleine Simone Motte; Anil Koul; W Balemans


Archive | 2017

3,4-di-hidro-1h-[1,8]naftiridinonas substituídas com ciclopenta[c]pirrol antibacterianas, composição farmacêutica compreendendo os referidos compostos, processos para preparação destes e uso.

Anil Koul; David Francis Alain Lançois; Jérôme Emile Georges Guillemont; Magali Madeleine Simone Motte; W Balemans


Archive | 2017

Functionalized pentanoic acids for use in influenza viral infections

Jérôme Emile Georges Guillemont; W Balemans; Gowan David Craig Mc; Magali Madeleine Simone Motte; David Francis Alain Lançois; Emilie Marie Lambert


Archive | 2015

Qunioline Derivatives as Antibacterial Agents

Jérôme Emile Georges Guillemont; Elizabeth Therese Jeanne Pasquier; David Francis Alain Lançois; Koenraad Jozef Lodewijk Marcel Andries; Anil Koul; Leo Jacobus Jozef Dackx; Lieven Meerpoel


Archive | 2013

Dérivés de quinoléine antibactériens

Jérôme Emile Georges Guillemont; Magali Madeleine Simone Motte; David Francis Alain Lançois; W Balemans


Archive | 2007

Antibakterielle chinolinderivate Antibacterial quinoline derivatives

Jérôme Emile Georges Guillemont; Ismet Dorange; David Francis Alain Lançois; Jose Manuel Villalgordo-Soto; Yvan Rene Ferdinand Simonnet; Magali Madeleine Simone Motte; Koenraad Jozef Lodewijk Marcel Andries; Anil Koul

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