RRC ID 42812
Author Ohba T, Yamauch T, Higashiyama K, Takahashi N.
Title Potent anticancer activities of novel aminophenol analogues against various cancer cell lines.
Journal Bioorg Med Chem
Abstract Novel aminophenol analogues were synthesized based on the structure of fenretinide (N-(4-hydroxyphenyl)retinamide, 5), which is a potent anticancer agent. Our findings showed that the anticancer activities of 5 were due to the side chain attached to the aminophenol moiety. A p-octylaminophenol (p-OAP) provided the most potent anticancer activity among p-alkylaminophenols examined. In this study, we investigated anticancer activities against various cancer cell lines by the new aminophenols, p-dodecylaminophenol (1), p-decylaminophenol (2), N-(4-hydroxyphenyl)dodecananamide (3), and N-(4-hydroxyphenyl)decananamide (4), which exhibits a side chain as long as 5. Cell growth of breast cancer (MCF-7, MCF-7/Adr(R)), prostate cancer (DU-145), and leukemia (HL60) cells was suppressed by 1 and 2 in a fashion dependent on the length of the alkyl chain attached to the aminophenol. In contrast, 3 and 4 were extremely weak. Compound 5 was less potent than 1. Cell growth of liver cancer (HepG2) was not markedly affected by these compounds. In addition, apoptosis of HL60 cells was induced by 1 and 2 in a chain length-dependent manner, but not by 3 and 4. Incorporation of compounds into HL60 cells was in the order 1>2=3>4. These results indicated that anticancer activities for 1 and 2 are correlated with their incorporation into cancer cells and their capability to induce apoptosis, but not for 3 and 4. Compound 1, a potent anticancer agent with potency strikingly greater than 5, may potentially be useful in clinic.
Volume 15(2)
Pages 847-53
Published 2007-1-15
DOI 10.1016/j.bmc.2006.10.042
PII S0968-0896(06)00875-3
PMID 17092729
MeSH Aminophenols / chemical synthesis* Aminophenols / pharmacology* Antineoplastic Agents / chemical synthesis* Antineoplastic Agents / pharmacology* Breast Neoplasms / drug therapy Breast Neoplasms / pathology Cell Line, Tumor DNA Fragmentation / drug effects Electrophoresis, Agar Gel Female Fenretinide / analogs & derivatives* Fenretinide / chemical synthesis* Fenretinide / pharmacology HL-60 Cells Humans Male Prostatic Neoplasms / drug therapy Prostatic Neoplasms / pathology Structure-Activity Relationship
IF 3.073
Times Cited 8
WOS Category CHEMISTRY, ORGANIC CHEMISTRY, MEDICINAL BIOCHEMISTRY & MOLECULAR BIOLOGY
Resource
Human and Animal Cells