TY - JOUR
T1 - Novel 9-Benzylaminoacridine Derivatives as Dual Inhibitors of Phosphodiesterase 5 and Topoisomerase II for the Treatment of Colon Cancer
AU - Ammar, Lina
AU - Lin, Hung Yu
AU - Shih, Shou Ping
AU - Tsai, Tsen Ni
AU - Syu, Yu Ting
AU - Abdel-Halim, Mohammad
AU - Hwang, Tsong Long
AU - Abadi, Ashraf H.
N1 - Publisher Copyright:
© 2023 by the authors.
PY - 2023/1/14
Y1 - 2023/1/14
N2 - It has been shown that phosphodiesterase 5 (PDE5) inhibitors have anticancer effects in a variety of malignancies in both in vivo and in vitro experiments. The role of cGMP elevation in colorectal carcinoma (CRC) has been extensively studied. Additionally, DNA topoisomerase II (Topo II) inhibition is a well-established mechanism of action that mediates the effects of several approved anticancer drugs such as doxorubicin and mitoxantrone. Herein, we present 9-benzylaminoacridine derivatives as dual inhibitors of the PDE5 and Topo II enzymes. We synthesized 31 derivatives and evaluated them against PDE5, whereby 22 compounds showed micromolar or sub-micromolar inhibition. The anticancer activity of the compounds was evaluated with the NCI 60-cell line testing. Moreover, the effects of the compounds on HCT-116 colorectal carcinoma (CRC) were extensively studied, and potent compounds against HCT-116 cells were studied for their effects on Topo II, cell cycle progression, and apoptosis. In addition to exhibiting significant growth inhibition against HCT116 cells, compounds 11, 12, and 28 also exhibited the most superior Topo II inhibitory activity and low micromolar PDE5 inhibition and affected cell cycle progression. Knowing that compounds that combat cancer through multiple mechanisms are among the best candidates for effective therapy, we believe that the current class of compounds merits further optimization and investigation to unleash their full therapeutic potential.
AB - It has been shown that phosphodiesterase 5 (PDE5) inhibitors have anticancer effects in a variety of malignancies in both in vivo and in vitro experiments. The role of cGMP elevation in colorectal carcinoma (CRC) has been extensively studied. Additionally, DNA topoisomerase II (Topo II) inhibition is a well-established mechanism of action that mediates the effects of several approved anticancer drugs such as doxorubicin and mitoxantrone. Herein, we present 9-benzylaminoacridine derivatives as dual inhibitors of the PDE5 and Topo II enzymes. We synthesized 31 derivatives and evaluated them against PDE5, whereby 22 compounds showed micromolar or sub-micromolar inhibition. The anticancer activity of the compounds was evaluated with the NCI 60-cell line testing. Moreover, the effects of the compounds on HCT-116 colorectal carcinoma (CRC) were extensively studied, and potent compounds against HCT-116 cells were studied for their effects on Topo II, cell cycle progression, and apoptosis. In addition to exhibiting significant growth inhibition against HCT116 cells, compounds 11, 12, and 28 also exhibited the most superior Topo II inhibitory activity and low micromolar PDE5 inhibition and affected cell cycle progression. Knowing that compounds that combat cancer through multiple mechanisms are among the best candidates for effective therapy, we believe that the current class of compounds merits further optimization and investigation to unleash their full therapeutic potential.
KW - acridine derivatives
KW - anticancer agents
KW - colorectal carcinoma
KW - phosphodiesterase 5
KW - topoisomerase II
KW - Cell Proliferation
KW - Humans
KW - Cyclic Nucleotide Phosphodiesterases, Type 5/metabolism
KW - Structure-Activity Relationship
KW - Phosphodiesterase 5 Inhibitors/pharmacology
KW - Antineoplastic Agents/pharmacology
KW - Topoisomerase II Inhibitors/pharmacology
KW - Cell Line, Tumor
KW - Molecular Structure
KW - DNA Topoisomerases, Type II/metabolism
KW - Colonic Neoplasms/drug therapy
KW - Drug Screening Assays, Antitumor
UR - https://www.scopus.com/pages/publications/85146660780
U2 - 10.3390/molecules28020840
DO - 10.3390/molecules28020840
M3 - 文章
C2 - 36677898
AN - SCOPUS:85146660780
SN - 1420-3049
VL - 28
JO - Molecules
JF - Molecules
IS - 2
M1 - 840
ER -