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Anti-metastatic Inhibitors of Lysyl Oxidase (LOX): Design and Structure-Activity Relationships.

Leo M H LeungDan Niculescu-DuvazDeborah SmithenFilipa LopesCedric CallensRobert McLearyGrazia SaturnoLawrence DaviesMohammed AljarahMichael BrownLouise JohnsonAlfonso ZambonTim ChambersDelphine MénardNatasha BaylissRuth KnightLaura FishRae LawrenceMairi ChallinorHaoRan TangRichard MaraisCaroline Springer
Published in: Journal of medicinal chemistry (2019)
Lysyl oxidase (LOX) is a secreted copper-dependent amine oxidase that cross-links collagens and elastin in the extracellular matrix and is a critical mediator of tumor growth and metastatic spread. LOX is a target for cancer therapy, and thus the search for therapeutic agents against LOX has been widely sought. We report herein the medicinal chemistry discovery of a series of LOX inhibitors bearing an aminomethylenethiophene (AMT) scaffold. High-throughput screening provided the initial hits. Structure-activity relationship (SAR) studies led to the discovery of AMT inhibitors with sub-micromolar half-maximal inhibitory concentrations (IC50) in a LOX enzyme activity assay. Further SAR optimization yielded the orally bioavailable LOX inhibitor CCT365623 with good anti-LOX potency, selectivity, pharmacokinetic properties, as well as anti-metastatic efficacy.
Keyphrases
  • low density lipoprotein
  • extracellular matrix
  • squamous cell carcinoma
  • small cell lung cancer
  • cancer therapy
  • high throughput
  • small molecule
  • blood pressure
  • body composition
  • heart rate