15 articles for thisTarget
The following articles (labelled with PubMed ID or TBD) are for your review
PMID
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Article Title
Organization
5
Potent Irreversible Inhibitors of LasR Quorum Sensing in Pseudomonas aeruginosa.

Rowan University
10
Thiolactone modulators of quorum sensing revealed through library design and screening.

University of Wisconsin-Madison
5
Theoretical and structural analysis of the active site of the transcriptional regulators LasR and TraR, using molecular docking methodology for identifying potential analogues of acyl homoserine lactones (AHLs) with anti-quorum sensing activity.

Universidad De Cartagena-Facultad De Ciencias Exactas Y
27
Medicinal chemistry as a conduit for the modulation of quorum sensing.

The Scripps Research Institute
6
Substituted lactam and cyclic azahemiacetals modulate Pseudomonas aeruginosa quorum sensing.

Florida International University
4
Design, synthesis, and molecular dynamic simulations of some novel benzo[d]thiazoles with anti-virulence activity against Pseudomonas aeruginosa.

October 6 University
27
Amide bioisosteric replacement in the design and synthesis of quorum sensing modulators.

Hubei University of Education
10
Synthetic non-toxic anti-biofilm agents as a strategy in combating bacterial resistance.

Pharmaceutical and Drug Industries Research Institute
1
Discovery of novel amide derivatives as potent quorum sensing inhibitors of Pseudomonas aeruginosa.

South China Agricultural University
21
Chemical probe of AHL modulators on quorum sensing in Gram-Negative Bacteria and as antiproliferative agents: A review.

Zhengzhou University
2
Design and synthesis of novel benzimidazole derivatives as potential Pseudomonas aeruginosa anti-biofilm agents inhibiting LasR: Evidence from comprehensive molecular dynamics simulation and in vitro investigation.

Modern University For Technology and Information Mti
58
Impact of the structure-activity relationship of AHL analogues on quorum sensing in Gram-negative bacteria.

Larkin University
16
Design, synthesis, and evaluation of compounds capable of reducing Pseudomonas aeruginosa virulence.

Texas Tech University Health Sciences Center
11
A comparative study of non-native N-acyl l-homoserine lactone analogs in two Pseudomonas aeruginosa quorum sensing receptors that share a common native ligand yet inversely regulate virulence.

University of Wisconsin-Madison
27
Pseudomonas aeruginosa Quorum Sensing Systems as Drug Discovery Targets: Current Position and Future Perspectives.

University of Nottingham