Obesity/Type 2 Diabetes-Associated Liver Tumors Are Sensitive to Cyclin D1 Deficiency
CANCER RESEARCH
Authors: Luo, Chi; Liang, Jiaxin; Sharabi, Kfir; Hatting, Maximilian; Perry, Elizabeth A.; Tavares, Clint D. J.; Goyal, Lipika; Srivastava, Amitabh; Bilodeau, Marc; Zhu, Andrew X.; Sicinski, Piotr; Puigserver, Pere
Abstract
Type 2 diabetes, which is mainly linked to obesity, is associated with increased incidence of liver cancer. We have previously found that in various models of obesity/diabetes, hyperinsulinemia maintains heightened hepatic expression of cyclin D1, suggesting a plausible mechanism linking diabetes and liver cancer progression. Here we show that cyclin D1 is greatly elevated in human livers with diabetes and is among the most significantly upregulated genes in obese/diabetic liver tumors. Liver-specific cyclin D1 deficiency protected obese/diabetic mice against hepatic tumorigenesis, whereas lean/nondiabetic mice developed tumors irrespective of cyclin D1 status. Cyclin D1 dependency positively correlated with liver cancer sensitivity to palbociclib, an FDA-approved CDK4 inhibitor, which was effective in treating orthotopic liver tumors under obese/diabetic conditions. The antidiabetic drug metformin suppressed insulin-induced hepatic cyclin D1 expression and protected against obese/diabetic hepatocarcinogenesis. These results indicate that the cyclin D1-CDK4 complex represents a potential selective therapeutic vulnerability for liver tumors in obese/diabetic patients. Significance: Obesity/diabetes-associated liver tumors are specifically vulnerable to cyclin D1 deficiency and CDK4 inhibition, suggesting that the obese/diabetic environment confers cancer-selective dependencies that can be therapeutically exploited.
Carvacrol Promotes Cell Cycle Arrest and Apoptosis through PI3K/AKT Signaling Pathway in MCF-7 Breast Cancer Cells
CHINESE JOURNAL OF INTEGRATIVE MEDICINE
Authors: Mari, Ashok; Mani, Gopikrishnan; Nagabhishek, Sirpu Natesh; Balaraman, Gopalakrishnan; Subramanian, Nirmala; Mirza, Fathima Bushra; Sundaram, Jagan; Thiruvengadam, Devaki
Abstract
Objective To examine the role of carvacrol in modulating PI3K/AKT signaling involved in human breast cancer pathogenesis usingin vitroexperimental model MCF-7 cells. Methods MTT and lactate dehydrogenase assays were performed with cells treated with different doses of carvacrol (0-250 p mol/L) at different time points (24 and 48 h). The nuclear morphology was assessed in MCF-7 cells with propidium iodide (PI) and acridine orange/ethidium bromide (AO/EB) staining and analyzed by fluorescence microscopy. Events like cell cycle arrest, apoptosis was observed by flow cytometric analysis and expressions of p-Rb, cyclin D1, cyclin-dependent kinase 4 (CDK4), CDK6, Bax, Bcl-2, PI3K/p-AKT was analyzed by immunoblot. Results Carvacrol significantly reduced cell viability with the half maximal inhibitory concentration value of 200 mu mol/L at 24 and 48 h (P<0.05). importantly, there was a significant increase in the accumulation of the G(0)/G(1)phase upon treatment with carvacrol in MCF-7 cells (PP<0.01). A remarkable decrease in protein expressions of p-Rb, cyclin D1, CDK4 and CDK6 denotes cell cycle arrest (PP<0.01). In addition, carvacrol treatment significantly inhibited PI3K/p-AKT protein expressions leading to induction of apoptosis mediated by decreased Bcl2 and increased Bax protein expressions. Further, Annexin V/PI staining by FACS analysis, dual staining by AO/EB and PI staining studies suggests induction of apoptosis by carvacrol through PI3K/Akt signaling pathway in MCF-7 cells. Conclusion Carvacrol significantly inhibited the breast cancer MCF-7 cell proliferation and induced apoptosis via suppressing PI3/AKT signaling pathway.