Mikell Paige

Find an error

Name:
Organization: George Mason University
Department:
Title:
Co-reporter:Mikell Paige, George Kosturko, Güllay Bulut, Matthew Miessau, Said Rahim, Jeffrey A. Toretsky, Milton L. Brown, Aykut Üren
Bioorganic & Medicinal Chemistry 2014 Volume 22(Issue 1) pp:478-487
Publication Date(Web):1 January 2014
DOI:10.1016/j.bmc.2013.11.003
Respiratory failure due to pulmonary metastasis is the major cause of death for patients with osteosarcoma. However, the molecular basis for metastasis of osteosarcoma is poorly understood. Recently, ezrin, a member of the ERM family of proteins, has been associated with osteosarcoma metastasis to the lungs. The small molecule NSC 668394 was identified to bind to ezrin, inhibit in vitro and in vivo cell migration, invasion, and metastatic colony survival. Reported herein are the design and synthesis of analogues of NSC 668394, and subsequent functional ezrin inhibition studies. The binding affinity was characterized by surface plasmon resonance technique. Cell migration and invasion activity was determined by electrical cell impedance methodology. Optimization of a series of heterocyclic-dione analogues led to the discovery of compounds 21k and 21m as potential novel antimetastatic agents.
Phenol, 2,6-difluoro-4-(2-nitroethenyl)-
Phenol, 4-(2-aminoethyl)-2,6-dichloro-
Phenol, 4-(2-aminoethyl)-2,6-dichloro-, hydrochloride
5,8-QUINOLINEDIONE, 7-[[2-(3,5-DIBROMO-4-HYDROXYPHENYL)ETHYL]AMINO]-
5,8-Phthalazinedione
Gelatinase B
5,8-Quinolinedione, 7-[[2-(4-hydroxyphenyl)ethyl]amino]-
Benzothiazole, 2,2'-dithiobis[4-methyl-
Phenol, 4-(2-aminoethyl)-2,6-difluoro-, hydrochloride