scholarly journals Inhibition of HDAC1 and DNMT1 Modulate RGS10 Expression and Decrease Ovarian Cancer Chemoresistance

PLoS ONE ◽  
2014 ◽  
Vol 9 (1) ◽  
pp. e87455 ◽  
Author(s):  
Ercan Cacan ◽  
Mourad W. Ali ◽  
Nathaniel H. Boyd ◽  
Shelley B. Hooks ◽  
Susanna F. Greer
Oncogene ◽  
2019 ◽  
Vol 39 (7) ◽  
pp. 1600-1616 ◽  
Author(s):  
Meshach Asare-Werehene ◽  
Kiran Nakka ◽  
Arkadiy Reunov ◽  
Chen-Tzu Chiu ◽  
Wei-Ting Lee ◽  
...  

Abstract Ovarian cancer (OVCA) is the most lethal gynecological cancer, due predominantly to late presentation, high recurrence rate and common chemoresistance development. The expression of the actin-associated protein cytosolic gelsolin (GSN) regulates the gynecological cancer cell fate resulting in dysregulation in chemosensitivity. In this study, we report that elevated expression of plasma gelsolin (pGSN), a secreted isoform of GSN and expressed from the same GSN gene, correlates with poorer overall survival and relapse-free survival in patients with OVCA. In addition, it is highly expressed and secreted in chemoresistant OVCA cells than its chemosensitive counterparts. pGSN, secreted and transported via exosomes (Ex-pGSN), upregulates HIF1α–mediated pGSN expression in chemoresistant OVCA cells in an autocrine manner as well as confers cisplatin resistance in otherwise chemosensitive OVCA cells. These findings support our hypothesis that exosomal pGSN promotes OVCA cell survival through both autocrine and paracrine mechanisms that transform chemosensitive cells to resistant counterparts. Specifically, pGSN transported via exosomes is a determinant of chemoresistance in OVCA.


2019 ◽  
Vol 9 (1) ◽  
Author(s):  
Jiang Yang ◽  
Munir M. Zaman ◽  
Iliyan Vlasakov ◽  
Roopali Roy ◽  
Lan Huang ◽  
...  

Abstract Ovarian cancer (OvCa), while accounting for only 3% of all women’s cancer, is the fifth leading cause of cancer death among women. One of the most significant obstacles to successful OvCa treatment is chemoresistance. The current lack of understanding of the driving mechanisms underlying chemoresistance hinders the development of effective therapeutics against this obstacle. Adipocytes are key components of the OvCa microenvironment and have been shown to be involved in OvCa cell proliferation, however, little is known about their impact on OvCa chemoresistance. In the current study, we found that adipocytes, of both subcutaneous and visceral origin, secrete factors that enhance the resistance of OvCa cells against chemotherapeutic drugs by activating the Akt pathway. Importantly, we have demonstrated that secreted lipids mediate adipocyte-induced chemoresistance. Through a comprehensive lipidomic analysis, we have identified this chemo-protective lipid mediator as arachidonic acid (AA). AA acts on OvCa cells directly, not through its downstream derivatives such as prostaglandins, to activate Akt and inhibit cisplatin-induced apoptosis. Taken together, our study has identified adipocytes and their secreted AA as important mediators of OvCa chemoresistance. Strategies that block the production of AA from adipocytes or block its anti-apoptotic function may potentially inhibit chemoresistance in OvCa patients.


Antioxidants ◽  
2020 ◽  
Vol 9 (2) ◽  
pp. 133 ◽  
Author(s):  
Adriana Cruz ◽  
Pedro Mota ◽  
Cristiano Ramos ◽  
Rita F. Pires ◽  
Cindy Mendes ◽  
...  

Ovarian cancer is a highly lethal disease, mainly due to chemoresistance. Our previous studies on metabolic remodeling in ovarian cancer have supported that the reliance on glutathione (GSH) bioavailability is a main adaptive metabolic mechanism, also accounting for chemoresistance to conventional therapy based on platinum salts. In this study, we tested the effects of the in vitro inhibition of GSH synthesis on the restoration of ovarian cancer cells sensitivity to carboplatin. GSH synthesis was inhibited by exposing cells to l-buthionine sulfoximine (l-BSO), an inhibitor of γ-glutamylcysteine ligase (GCL). Given the systemic toxicity of l-BSO, we developed a new formulation using polyurea (PURE) dendrimers nanoparticles (l-BSO@PUREG4-FA2), targeting l-BSO delivery in a folate functionalized nanoparticle.


Theranostics ◽  
2021 ◽  
Vol 11 (4) ◽  
pp. 1795-1813
Author(s):  
Yiping Wen ◽  
Yaya Hou ◽  
Xiaoqing Yi ◽  
Si Sun ◽  
Jing Guo ◽  
...  

2021 ◽  
Vol 35 (S1) ◽  
Author(s):  
Carolina Mejia Peña ◽  
Thomas Skipper ◽  
Jeffrey Hsu ◽  
Ilexa Schechter ◽  
Deepraj Ghosh ◽  
...  

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