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1.
Mol Cancer Ther ; 6(1): 193-202, 2007 Jan.
Article in English | MEDLINE | ID: mdl-17237279

ABSTRACT

D-501036 [2,5-bis(5-hydroxymethyl-2-selenienyl)-3-hydroxymethyl-N-methylpyrrole] is herein identified as a novel antineoplastic agent with a broad spectrum of antitumoral activity against several human cancer cells and an IC(50) value in the nanomolar range. The IC(50) values for D-501036 in the renal proximal tubule, normal bronchial epithelial, and fibroblast cells were >10 mumol/L. D-501036 exhibited no cross-resistance with vincristine- and paclitaxel-resistant cell lines, whereas a low level of resistance toward the etoposide-resistant KB variant was observed. Cell cycle analysis established that D-501036 treatment resulted in a dose-dependent accumulation in S phase with concomitant loss of both the G(0)-G(1) and G(2)-M phase in both Hep 3B and A-498 cells. Pulsed-field gel electrophoresis showed D-501036-induced, concentration-dependent DNA breaks in both Hep 3B and A-498 cells. These breaks did not involve interference with either topoisomerase-I and topoisomerase-II function or DNA binding. Rapid reactive oxygen species production and formation of Se-DNA adducts were evident following exposure of cells to D-501036, indicating that D-501036-mediated DNA breaks were attributable to the induction of reactive oxygen species and DNA adduct formation. Moreover, D-501036-induced DNA damage activated ataxia telangiectasia-mutated nuclear protein kinase, leading to hyperphosphorylation of Chk1, Chk2, and p53, decreased expression of CDC25A, and up-regulation of p21(WAF1) in both p53-proficient and p53-deficient cells. Collectively, the results indicate that D-501036-induced cell death was associated with DNA damage-mediated induction of ataxia telangiectasia-mutated activation, and p53-dependent and -independent apoptosis pathways. Notably, D-501036 shows potent activity against the growth of xenograft tumors of human renal carcinoma A-498 cells. Thus, D-501036 is a promising anticancer compound that has strong potential for the management of human cancers.


Subject(s)
Antineoplastic Agents/pharmacology , Cell Cycle Proteins/metabolism , DNA Damage , DNA-Binding Proteins/metabolism , Heterocyclic Compounds, 3-Ring/pharmacology , Organoselenium Compounds/pharmacology , Protein Serine-Threonine Kinases/metabolism , Pyrroles/pharmacology , Tumor Suppressor Proteins/metabolism , Animals , Apoptosis/drug effects , Ataxia Telangiectasia Mutated Proteins , Carcinoma, Renal Cell/pathology , DNA Adducts/drug effects , Drug Resistance, Neoplasm/drug effects , Enzyme Activation/drug effects , Flow Cytometry , HT29 Cells , HeLa Cells , Humans , Male , Mice , Mice, Nude , Protein Kinase C/metabolism , Protein Kinase C beta , Protein Kinase C-alpha/metabolism , Reactive Oxygen Species/metabolism , S Phase/drug effects , Signal Transduction/drug effects , Xenograft Model Antitumor Assays
2.
Bioorg Med Chem Lett ; 15(11): 2824-8, 2005 Jun 02.
Article in English | MEDLINE | ID: mdl-15911262

ABSTRACT

Liver X receptors are nuclear receptors that regulate metabolism of cholesterol. They are activated by oxysterols resulting in increased transcription of the ABCA1 gene, promoting cholesterol efflux and HDL formation. We have identified podocarpic acid anhydride as a 1nM agonist of LXRalpha and beta receptors. Functionally this agonist was over 8-10-fold better activator of LXR receptors compared to one of the natural ligands, 22-(R)-hydroxy cholesterol, in HEK-293 cells. An imide analog increased the level of HDL by 26%, decreased LDL by 10.6%, and increased triglyceride by 51% in hamsters. Discovery, synthesis, SAR and details of the activities of dimers have been described.


Subject(s)
Abietanes/pharmacology , Cholesterol, HDL/blood , Phenanthrenes/pharmacology , Receptors, Cytoplasmic and Nuclear/agonists , Abietanes/chemistry , Abietanes/pharmacokinetics , Animals , Area Under Curve , Biotransformation , Cell Line , Cricetinae , Dimerization , Humans , Male , Mice , Phenanthrenes/chemistry , Phenanthrenes/pharmacokinetics , Rats , Rats, Sprague-Dawley , Structure-Activity Relationship
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