A Novel Dialkylamino-Functionalized Chalcone, DML6, Inhibits Cervical Cancer Cell Proliferation, In Vitro, via Induction of Oxidative Stress, Intrinsic Apoptosis and Mitotic Catastrophe.
Jenna M LenNoor HusseinSaloni MallaKyle McintoshRahul PatidarManivannan ElangovanKarthikeyan ChandraboseN S Hari Narayana MoorthyManoj PandeyDayanidhi RamanPiyush TrivediAmit K TiwariPublished in: Molecules (Basel, Switzerland) (2021)
In this study, we designed, synthesized and evaluated, in vitro, novel chalcone analogs containing dialkylamino pharmacophores in the cervical cancer cell line, OV2008. The compound, DML6 was selective and significantly decreased the proliferation of OV2008 and HeLa cells in sub-micromolar concentrations, compared to prostate, lung, colon, breast or human embryonic kidney cell line (HEK293). DML6, at 5 μM, arrested the OV2008 cells in the G2 phase. Furthermore, DML6, at 5 μM, increased the levels of reactive oxygen species and induced a collapse in the mitochondrial membrane potential, compared to OV2008 cells incubated with a vehicle. DML6, at 5 μM, induced intrinsic apoptosis by significantly (1) increasing the levels of the pro-apoptotic proteins, Bak and Bax, and (2) decreasing the levels of l the anti-apoptotic protein, Bcl-2, compared to cell incubated with a vehicle. Furthermore, DML6, at 5 and 20 μM, induced the cleavage of caspase-9, followed by subsequent cleavage of the executioner caspases, caspase-3 and caspase-7, which produced OV2008 cell death. Overall, our data suggest that DML6 is an apoptosis-inducing compound that should undergo further evaluation as a potential treatment for cervical cancer.
Keyphrases
- cell death
- cell cycle arrest
- induced apoptosis
- oxidative stress
- endoplasmic reticulum stress
- diabetic rats
- high glucose
- pi k akt
- cell proliferation
- signaling pathway
- reactive oxygen species
- prostate cancer
- high resolution
- electronic health record
- stress induced
- anti inflammatory
- mesenchymal stem cells
- mass spectrometry
- climate change
- artificial intelligence
- cell therapy
- amino acid
- quantum dots
- human health
- heat stress
- bone marrow