Cytotoxicity, genotoxicity and oxidative stress of malachite green on the kidney and gill cell lines of freshwater air breathing fish Channa striata

2014 ◽  
Vol 21 (23) ◽  
pp. 13539-13550 ◽  
Author(s):  
S. Abdul Majeed ◽  
K. S. N. Nambi ◽  
G. Taju ◽  
S. Vimal ◽  
C. Venkatesan ◽  
...  
Cancers ◽  
2019 ◽  
Vol 11 (1) ◽  
pp. 115 ◽  
Author(s):  
Ewelina Majewska ◽  
Javier Márquez ◽  
Jan Albrecht ◽  
Monika Szeliga

GLS-encoded glutaminase promotes tumorigenesis, while GLS2-encoded glutaminase displays tumor-suppressive properties. In glioblastoma (GBM), the most aggressive brain tumor, GLS is highly expressed and in most cases GLS2 is silenced. Previously, it was shown that transfection with a sequence encoding GAB, the main GLS2 isoform, decreased the survival, growth, and ability to migrate of human GBM cells T98G and increased their sensitivity towards an alkylating agent temozolomide (TMZ) and oxidative stress compared to the controls, by a not well-defined mechanism. In this study we report that GAB transfection inhibits growth and increases susceptibility towards TMZ and H2O2-mediated oxidative stress of two other GBM cell lines, U87MG and LN229. We also show that in GAB-transfected cells treated with H2O2, the PI3K/AKT pathway is less induced compared to the pcDNA-transfected counterparts and that pretreatment with PDGF-BB, an activator of AKT, protects GAB-transfected cells from death caused by the H2O2 treatment. In conclusion, our results show that (i) GAB suppresses the malignant phenotype of the GBM cells of different tumorigenic potentials and genetic backgrounds and (ii) the GAB-mediated increase of sensitivity to oxidative stress is causally related to the inhibition of the PI3K/AKT pathway. The upregulation of the GLS2 expression and the inhibition of the PI3K/AKT pathway may become a novel combined therapeutic strategy for anti-glioma preclinical investigations.


Chemosphere ◽  
2017 ◽  
Vol 184 ◽  
pp. 1-12 ◽  
Author(s):  
G. Taju ◽  
S. Abdul Majeed ◽  
K.S.N. Nambi ◽  
A.S. Sahul Hameed

2021 ◽  
Vol 15 (3) ◽  
pp. 157-164
Author(s):  
Mahsa Daneshmand ◽  
◽  
Jamileh Salar Amoli ◽  
Tahereh Ali Esfahani ◽  
◽  
...  

Background: Cotton seed is one of the main sources of protein in animal feeds, containing gossypol, which has been shown to have toxic effects. Results reported by various studies also indicate the anti-cancer effects of gossypol on various cell types. However, its toxic effects on human and animal cells have not been fully established. This study was planned to investigate, for the first time, the cytotoxic effects and oxidative stress induced by gossypol on normal Bovine Kidney (BK) and HeLa cell lines, representing typical healthy and cancer cells, respectively. Methods: The BK and HeLa cell lines were treated for 24, 48 or 72 hours with 5, 10 or 20 ppm of gossypol (+/-). The cellular bio-availability and cytotoxicity were measured by MTT assay. The catalase and Malondialdehyde (MDA) levels were also measured to represent the oxidative stress parameters. Results: The percentages of cytotoxicity in BK and HeLa cell lines were calculated at a gossypol concentration of 5, 10 and 20 ppm over 24, 48 or 72 hours of incubation, respectively. The Lethal Concentration 50 (lC50) values were also determined for the two cell lines. No changes in the catalase and lipid peroxidase activities were observed in either cell line. Conclusion: The percentage of the gossypol cytotoxicity was concentration-dependent. By comparing the IC50 in both cell lines using one-way Analysis of Variance (ANOVA) analysis, a significant difference was observed, suggesting that Hela cells were less sensitive to gossypol than the BK cells. Lack of changes in the oxidative stress, as tested by catalase and MDA assays, demonstrated that gossypol did not induce oxidative stress in either cell line.


Blood ◽  
2015 ◽  
Vol 126 (23) ◽  
pp. 1284-1284
Author(s):  
Ravi Dashnamoorthy ◽  
Afshin Beheshti ◽  
Nassera Abermil ◽  
Frederick Lansigan ◽  
William Kinlaw ◽  
...  

Abstract Introduction: Fatty acid (FA) metabolism is altered in many solid tumor cancers in part through increased de novo synthesis of lipids via up-regulation of FASN as well as via increased utilization of lipids via β-oxidation. The dependence of DLBCL on FA metabolism, and potential associated oncogenic signaling pathways, are largely unknown. Methods: Cerulenin (FASN inhibitor), orlistat (combined FASN and lipoprotein lipase inhibitor), and BKM120 (PI3K inhibitor) small molecules were studied in OCI-LY3, OCI-LY19, SUDHL4, SUDHL6, and SUDHL10 DLBCL cell lines as well as in primary DLBCL cells for the impact on FA inhibition signaling and the induction of cell death (by MTT, cleaved caspases, and AnnexinV/PI by flow cytometric analysis). Synergy was assessed via Calcusyn software. All effects were compared by DLBCL cell of origin (COO). In addition, global transcriptome analyses of FASN inhibition were examined on Affymetrix Human 2.0 ST Genechip. Results: FASN protein was constitutively upregulated across all DLBCL cell lines, independent of COO. Treatment with pharmacological inhibitors of FASN (i.e., cerulenin or orlistat) resulted in dose- and time-dependent reduction in cell viability in all DLBCL cell lines. To further examine the dependence of DLBCL on fatty acids, OCI-LY3, SUDHL4, and SUDHL6 grown in presence of lipoprotein-depleted serum showed exquisite sensitivity to lipid deprivation resulting in near complete cytotoxicity (i.e., >98%) as determined by MTT, cleaved caspase 3 and PARP, and AnnexinV/PI. Moreover, these effects were completely rescued by Very Low Density Lipoprotein (VLDL) supplementation to growth medium. These effects were markedly more prominent in primary DLBCL cells compared with control non-malignant lymphocytes. Analysis of differentially expressed gene sets comparing germinal center (GC) and non-germinal center (non-GC) B-cell tumors with normal cells showed significant over expression of genes related to PI3K and lipid metabolism in GC B-cell tumors. Furthermore, global transcriptome analysis following cerulenin exposure revealed activation of carbohydrate and oxidative stress metabolism in GC-derived SUDHL6 and SUDHL10 cells. In the non-GC cell line, OCI-LY3, there was favorable biology induced with inhibition of progression when treated with cerulenin, with downregulated significant key genes representing growth promoting cytokines (Figure 1). Analysis of key significant genes in cerulenin-treated SUDHL10 cells resulted in induction of antioxidant genes (GSR, TXNRD1, NQO1, AIFM1) and oxidative stress responsive PHB, DHX9, HSP90 and PMPCA genes, which are upstream components of PI3K signaling. Western blot analysis with prohibitin (PHB) inhibitor rocoglamide in the presence of cerulenin inhibited phosphorylation of PI3K-p85 and also prominently downregulated FASN expression of GC-derived DLBCL, suggesting the role of PHB in PI3K response to cerulenin. In addition, inhibition of PI3K with BKM120 was shown to strongly down-regulate FASN expression in OCI-LY3, SUDHL6, and SUDHL10 DLBCL cells. Furthermore, treatment with BKM120 in combination with cerulenin was strongly synergistic (CI<1), by MTT and potentiated apoptosis (by Annexin/V flow cytometry) in GC-derived SUDHL10 cells. Conclusions: Multiple FA pathways are constitutively activated in DLBCL and cell survival appears strongly dependent on lipid metabolism, which appeared to occur independent of COO. Additionally, inhibition of FASN was regulated in part through PHB/PI3K-dependent pathways. Collectively, this work indicates that targeting FA metabolism may be considered as a valid therapeutic strategy for DLBCL. Further investigation is required to delineate the precise mechanisms through which PHB/PI3K regulates FASN and also to identify potential rational therapeutic combinations leveraging the addiction of DLBCL to FA signaling. Figure 1. Key significant gene analysis ofFASN inhibition inDLBCL cells. Cerulenin treatment in ABC OCI-LY3 shows (A) downregulation of growth promoting cytokines and growth factors and favorable tumor biology with predicted inhibition of tumor progression. In the GC derived SUDHL10 cells, (B) cerulenin resulted in activation of genes associated with oxidative stress response and PI3K associated mitochondrial genes with adverse tumor biology predicting tumor progression in GC DLBCL. Figure 1. Key significant gene analysis ofFASN inhibition inDLBCL cells. Cerulenin treatment in ABC OCI-LY3 shows (A) downregulation of growth promoting cytokines and growth factors and favorable tumor biology with predicted inhibition of tumor progression. In the GC derived SUDHL10 cells, (B) cerulenin resulted in activation of genes associated with oxidative stress response and PI3K associated mitochondrial genes with adverse tumor biology predicting tumor progression in GC DLBCL. Disclosures No relevant conflicts of interest to declare.


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