化学
磷脂酶A2
药理学
花生四烯酸
酶
生物化学
磷脂酶
受体
磷脂酶A
生物活性
酶抑制剂
消炎药
脂质信号
炎症
二十烷酸
胞浆
结构-活动关系
甲芬那酸
铅化合物
药代动力学
防御素
衍生工具(金融)
巨噬细胞
体内
磷脂酶C
尿素
趋化性
小分子
单核细胞
U937电池
化学合成
前药
作者
Gernot Langer,Nico Bräuer,Daryl Walter,Stuart Flanagan,Olivier Rémi Barbeau,Wei Tsung Yau,James Jenkins,Dennis Wegener,Daren Fearon,Anne-Marie Coelho,Benjamin Bader,Anders Friberg,Hartmut Beck,Vera Pütter,Frank Sacher
标识
DOI:10.1021/acs.jmedchem.6c00488
摘要
Human Phospholipase A2 Group V (hPLA2-G5) is elevated in inflammatory conditions and promotes neutrophil and macrophage recruitment. Its enzymatic activity activates lipid receptors and cytosolic phospholipase A2 (cPLA2), leading to arachidonic acid release and PGE2 production─key mediators of chronic inflammation. Thus, hPLA2-G5 represents a promising therapeutic target for diseases with inflammatory pain, such as in endometriosis─a highly debilitating disease characterized by the ectopic growth of endometriotic cells in the abdominal cavity. High-throughput and fragment-based screening identified structurally related small molecule hits. Optimization of the physicochemical and pharmacokinetic properties of the HTS hit led to the identification of BAY-439, a potent and selective hPLA2-G5 inhibitor with single-digit nanomolar activity. Accepted as a donated chemical probe by the Structural Genomics Consortium, both BAY-439 and the inactive negative probe BAY-163 are freely available as valuable pharmacological tools to investigate the role of hPLA2-G5 both under physiological and pathological conditions.
科研通智能强力驱动
Strongly Powered by AbleSci AI