article Open AccessTop 10% cited
Discovery of 4-aryl-4H-chromenes as a new series of apoptosis inducers using a cell- and caspase-based high-throughput screening assay. 2. Structure–activity relationships of the 7- and 5-, 6-, 8-positions
Bioorganic & Medicinal Chemistry Letters · 2005 · Vol. 15(21) · pp. 4745–4751
William Kemnitzer(Maxim Integrated (United States))Shailaja Kasibhatla(Maxim Integrated (United States))Songchun Jiang(Maxim Integrated (United States))Hong Zhang(Maxim Integrated (United States))Jianghong Zhao(Maxim Integrated (United States))Shaojuan Jia(Maxim Integrated (United States))Lifen Xu(Maxim Integrated (United States))Candace Crogan‐Grundy(Maxim Integrated (United States))Réal DenisNancy BarriaultLouis VaillancourtSylvie CharronJennifer A. DoddGiorgio AttardoDenis LabrecqueSerge LamotheHenriette GourdeauBen Tseng(Maxim Integrated (United States))John Drewe(Maxim Integrated (United States))Sui Xiong Cai✉(Maxim Integrated (United States))
Synthesis of Organic CompoundsSynthesis and Biological ActivityMulticomponent Synthesis of HeterocyclesChemistryArylStereochemistryApoptosisLead compoundStructure–activity relationshipCaspase 3Function (biology)Cell growthSubstitution (logic)
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Facile and One-Pot Access to Diverse and Densely Functionalized 2-Amino-3-cyano-4<i>H</i>-pyrans and Pyran-Annulated Heterocyclic Scaffolds via an Eco-Friendly Multicomponent Reaction at Room Temperature Using Urea as a Novel Organo-Catalyst
ACS Sustainable Chemistry & Engineering · 2013 · 310 citations
References
Mitochondria and Apoptosis
Science · 1998 · 8,971 citations
Caspase structure, proteolytic substrates, and function during apoptotic cell death
Cell Death and Differentiation · 1999 · 1,540 citations
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