Related Experiment Video
Updated: Jan 6, 2026

Facile Preparation of 4-Substituted Quinazoline Derivatives
Published on: February 15, 2016
Aminated Quinolinequinones With EDG(s) as a Prostate Cancer Inhibitor: Mechanistic Insights and Pharmacokinetic
Ayse Tarbin Jannuzzi1, Ayse Mine Yilmaz2, Abanish Biswas3
1Department of Pharmaceutical Toxicology, Faculty of Pharmacy, İstanbul University, İstanbul, Türkiye.
Abstract:
In this study, we investigated the effects of aminated quinolinequinones (AQQ6-16) on cancer cell lines previously selected by the National Cancer Institute (NCI). Analysis of the NCI-60 screening data from the Developmental Therapeutics Program (DTP) of the NCI revealed that 11 AQQs exhibited significant growth inhibitory activity across multiple cancer cell lines and were subsequently advanced to the five-dose assay. Most AQQs effectively suppressed the proliferation of all leukemia cell lines in the single-dose and five-dose assays. Encouraged by these findings, we further examined the cytotoxic effects of selected AQQs (AQQ6 and AQQ9) in three human cancer cell lines, including HCT-116 (colon cancer), DU-145 (prostate cancer), and MDA-MB-231 (breast cancer), as well as in a normal cell line (HUVEC). Among the tested compounds, AQQ6 demonstrated the highest potency against DU-145 cells, with an IC50 value of 3.13 ± 0.15 µM. To gain mechanistic insights, the effects of AQQ6 on apoptosis, cell cycle distribution, and oxidative stress were evaluated. AQQ6 inhibited DU-145 cell proliferation by inducing apoptosis/necrosis, accompanied by G0/G1 phase cell cycle arrest. In metabolic stability assays using human liver microsomes, AQQ6 exhibited relatively low intrinsic clearance (Clint) and an improved half-life (T1/2) compared to verapamil. However, pharmacokinetic studies in rats indicated poor oral bioavailability (%F = 4.2), likely due to extensive hepatic metabolism in rat liver microsomes. Molecular dynamics simulations targeting MAPK8, the protein likely involved in AQQ6 activity, were conducted to elucidate molecular-level binding interactions.
Insights
Aminated quinolinequinones (AQQs) show potent anticancer activity, particularly AQQ6 against prostate cancer cells by inducing apoptosis and cell cycle arrest. Further research is needed to improve oral bioavailability for potential therapeutic use.
Area of Science:
- Medicinal Chemistry
- Cancer Biology
- Pharmacology
Background:
- The National Cancer Institute (NCI) screens compounds for anticancer potential.
- Aminated quinolinequinones (AQQs) are a class of compounds investigated for therapeutic applications.
Purpose of the Study:
- To evaluate the anticancer activity of aminated quinolinequinones (AQQ6-16) against various cancer cell lines.
- To investigate the mechanism of action and pharmacokinetic properties of promising AQQ compounds.
Main Methods:
- Screening of AQQ compounds using the NCI-60 cell line panel.
- Cytotoxicity assays, apoptosis/necrosis assessment, cell cycle analysis, metabolic stability, and pharmacokinetic studies.
- Molecular dynamics simulations to understand protein-ligand interactions.
Main Results:
- Eleven AQQs demonstrated significant growth inhibition across multiple cancer cell lines.
- AQQ6 showed high potency against DU-145 (prostate cancer) cells (IC50 = 3.13 µM), inducing apoptosis and G0/G1 cell cycle arrest.
- AQQ6 exhibited favorable metabolic stability but poor oral bioavailability in rats.
Conclusions:
- Aminated quinolinequinones, especially AQQ6, possess significant anticancer potential.
- AQQ6's mechanism involves apoptosis induction and cell cycle arrest.
- Further optimization is required to enhance the oral bioavailability of AQQ6 for clinical development.
More Related Videos
07:25A Bioluminescent and Fluorescent Orthotopic Syngeneic Murine Model of Androgen-dependent and Castration-resistant Prostate Cancer
Published on: March 6, 2018
09:39Drug-induced Sensitization of Adenylyl Cyclase: Assay Streamlining and Miniaturization for Small Molecule and siRNA Screening Applications
Published on: January 27, 2014
Related Concept Videos
Oxidation of Phenols to Quinones
o-hydroxy phenols are oxidized to o-quinones and p-hydroxy phenols to p-quinones. Such redox reactions involve the transfer of two electrons and two protons. The reversible redox...
The Electron Transport Chain
Inhibitors of the electron transport chain
Rotenone, a widely used pesticide, prevents electron transfer from Fe-S cluster to ubiquinone or Q...
Targeted Cancer Therapies
There are several types of targeted therapies against...
Cholinergic Antagonists: Pharmacokinetics