Role of 4-Thiazolidinone-Pyrazoline/Indoline Hybrids Les-4369 and Les-3467 in BJ and A549 Cell Lines.
Karolina KosińskaBartosz SkóraSerhii HolotaYulia ShepetaAnna Tabęcka-ŁonczyńskaRoman LesykKonrad A SzychowskiPublished in: Cells (2024)
Cancer is one of the most important problems of modern societies. Recently, studies have reported the anticancer properties of rosiglitazone related to its ability to bind peroxisome proliferator receptor γ (PPARγ), which has various effects on cancer and can inhibit cell proliferation. In this study, we investigated the effect of new 4-thiazolidinone (4-TZD) hybrids Les-4369 and Les-3467 and their effect on reactive oxygen species (ROS) production, metabolic activity, lactate dehydrogenase (LDH) release, caspase-3 activity, and gene and protein expression in human foreskin fibroblast (BJ) cells and lung adenocarcinoma (A549) cells. The ROS production and caspase-3 activity were mainly increased in the micromolar concentrations of the studied compounds in both cell lines. Les-3467 and Les-4369 increased the mRNA expression of PPARG , P53 (tumor protein P53), and ATM (ATM serine/threonine kinase) in the BJ cells, while the mRNA expression of these genes (except PPARG ) was mainly decreased in the A549 cells treated with both of the tested compounds. Our results indicate a decrease in the protein expression of AhR, PPARγ, and PARP-1 in the BJ cells exposed to 1 µM Les-3467 and Les-4369. In the A549 cells, the protein expression of AhR, PPARγ, and PARP-1 increased in the treatment with 1 µM Les-3467 and Les-4369. We have also shown the PPARγ modulatory properties of Les-3467 and Les-4369. However, both compounds prove weak anticancer properties evidenced by their action at high concentrations and non-selective effects against BJ and A549 cells.
Keyphrases
- induced apoptosis
- cell cycle arrest
- cell death
- cell proliferation
- endoplasmic reticulum stress
- dna damage
- reactive oxygen species
- signaling pathway
- type diabetes
- oxidative stress
- squamous cell carcinoma
- mental health
- gene expression
- insulin resistance
- dna repair
- endothelial cells
- adipose tissue
- skeletal muscle
- cell cycle
- genome wide
- fatty acid
- pi k akt
- dna damage response
- copy number
- single molecule
- tyrosine kinase
- childhood cancer
- protein kinase
- genome wide identification