Li_2023_Eur.J.Med.Chem_259_115708

Reference

Title : New bysspectin A derivatives as potent inhibitors of human carboxylesterase 2A - Li_2023_Eur.J.Med.Chem_259_115708
Author(s) : Li W , Zhang Y , Wu Y , Zhu G , Liu X , Song Y , Ma B , Lin S , Ge G , Jiao X , Xie P
Ref : Eur Journal of Medicinal Chemistry , 259 :115708 , 2023
Abstract :

Human carboxylesterase 2A (hCES2A), the most abundant carboxylesterase in the human gut, plays a crucial role in the metabolic clearance and activation of various ester-bearing drugs, environmental toxins and carcinogens. Inhibition of intestinal hCES2A can alleviate irinotecan-induced gut toxicity and modulate the oral bioavailability of hCES2A-substrate drugs. Bysspectin A, a natural product isolated from the endophytic fungus Byssochlamys spectabilis, has been identified as a highly selective hCES2A inhibitor. Herein, two sets of bysspectin A derivatives have been designed and synthesized, utilizing a Cu-catalyzed domino Sonogashira-cyclization as the key step. Following two rounds of structure activity relationship (SAR) studies and structural optimizations, compound 20w was identified as the most potent hCES2A inhibitor, with an IC(50) value of 1.6 nM, an approximately 1000-fold improvement over bysspectin A. Further investigation showed that 20w potently inhibited hCES2A in a mixed inhibition manner, while this agent could also potently inhibit intracellular hCES2A in living cells and exhibited suitable metabolic stability. In summary, our findings demonstrate that a new bysspectin A derivative (20w) is a promising candidate for the development of clinically used hCES2A inhibitor.

PubMedSearch : Li_2023_Eur.J.Med.Chem_259_115708
PubMedID: 37544184

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Citations formats

Li W, Zhang Y, Wu Y, Zhu G, Liu X, Song Y, Ma B, Lin S, Ge G, Jiao X, Xie P (2023)
New bysspectin A derivatives as potent inhibitors of human carboxylesterase 2A
Eur Journal of Medicinal Chemistry 259 :115708

Li W, Zhang Y, Wu Y, Zhu G, Liu X, Song Y, Ma B, Lin S, Ge G, Jiao X, Xie P (2023)
Eur Journal of Medicinal Chemistry 259 :115708