Phenotypic Screening To Discover Novel Chemical Series as Efficient Antihemorrhagic Agents

In an effort to find novel chemical series as antifibrinolytic agents, we explore α-phenylsulfonyl-α-spiropiperidines bearing different zinc-binding groups (ZBGs) to target those metalloproteinases involved in the fibrinolytic process: MMP3 and MMP10. Surprisingly, all these new chemical series were...

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Veröffentlicht in:ACS medicinal chemistry letters 2018-05, Vol.9 (5), p.428-433
Hauptverfasser: de Miguel, Irene, Orbe, Josune, Sánchez-Arias, Juan A, Rodríguez, José A, Salicio, Agustina, Rabal, Obdulia, Belzunce, Miriam, Sáez, Elena, Xu, Musheng, Wu, Wei, Tan, Haizhong, Ma, Hongyu, Páramo, José A, Oyarzabal, Julen
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Sprache:eng
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Zusammenfassung:In an effort to find novel chemical series as antifibrinolytic agents, we explore α-phenylsulfonyl-α-spiropiperidines bearing different zinc-binding groups (ZBGs) to target those metalloproteinases involved in the fibrinolytic process: MMP3 and MMP10. Surprisingly, all these new chemical series were inactive against these metalloproteinases; however, several new molecules retained the antifibrinolytic activity in a phenotypic functional assay using thromboelastometry and human whole blood. Further optimization led to compound 38 as a potent antifibrinolytic agent in vivo, three times more efficacious than the current standard-of-care (tranexamic acid, TXA) at 300 times lower dose. Finally, in order to decipher the underlying mode-of-action leading to this phenotypic response, an affinity-based probe 39 was successfully designed to identify the target involved in this response: a potentially unknown mechanism-of-action in the fibrinolytic process.
ISSN:1948-5875
1948-5875
DOI:10.1021/acsmedchemlett.7b00549