Zobrazeno 1 - 5
of 5
pro vyhledávání: '"Clinton S. George"'
Autor:
Tracy E. Strecker, Chen-Ming Lin, Clinton S. George, Ernest Hamel, Christine A. Herdman, Mary Lynn Trawick, Kevin G. Pinney, Ralph P. Mason, Laxman Devkota, David J. Chaplin, Li Liu, Haichan Niu, Ramona Lopez, Rajendra P. Tanpure
Publikováno v:
Bioorganic & Medicinal Chemistry. 23:7497-7520
The discovery of 3-methoxy-9-(3′,4′,5′-trimethoxyphenyl)-6,7-dihydro-5H-benzo[7]annulen-4-ol (a benzosuberene-based analogue referred to as KGP18) was originally inspired by the natural products colchicine and combretastatin A-4 (CA4). The rela
Autor:
Kevin G. Pinney, Rajendra P. Tanpure, Christine A. Herdman, Chen-Ming Lin, David J. Chaplin, Matthew T. MacDonough, Laxman Devkota, Mary Lynn Trawick, Justin K. Tidmore, Tracy E. Strecker, Clinton S. George, Madhavi Sriram
Publikováno v:
Bioorganic & Medicinal Chemistry. 21:8019-8032
Diversely functionalized, fused aryl-alkyl ring systems hold a prominent position as well-established molecular frameworks for a variety of anti-cancer agents. The benzosuberene (6,7 fused, also referred to as dihydro-5H-benzo[7]annulene and benzocyc
Autor:
Kevin G. Pinney, Clinton S. George, Madhavi Sriram, David J. Chaplin, Rajendra P. Tanpure, Samuel O. Odutola, Amanda K. Charlton-Sevcik, Mary Lynn Trawick, Tracy E. Strecker, Justin K. Tidmore
Publikováno v:
The FASEB Journal. 26
Autor:
Samuel O. Odutola, Rajendra P. Tanpure, Kevin G. Pinney, Clinton S. George, Tracy E. Strecker, David J. Chaplin, Madhavi Sriram, Justin K. Tidmore, Mary Lynn Trawick, Amanda K. Charlton-Sevcik
Publikováno v:
The FASEB Journal. 26
Autor:
Kevin G. Pinney, Mary Lynn Trawick, David J. Chaplin, Tracy E. Strecker, Rajendra P. Tanpure, Amanda K. Charlton-Sevcik, Justin K. Tidmore, Ernest Hamel, Clinton S. George, Madhavi Sriram
Publikováno v:
MedChemComm. 3:720
The recent discovery of a small-molecule benzosuberene-based phenol that demonstrates remarkable picomolar cytotoxicity against selected human cancer cell lines and strongly inhibits tubulin polymerization (1–2 µM) inspired the design and synthesi