Hormophysa triquerta polyphenol, an elixir that deters CXCR4-and COX2-dependent dissemination destiny of treatment-resistant pancreatic cancer cells

被引:12
作者
Aravindan, Sheeja [1 ,2 ]
Ramraj, Satishkumar [3 ]
Kandasamy, Kathiresan [1 ]
Thirugnanasambandan, Somasundaram S. [1 ]
Somasundaram, Dinesh Babu [3 ]
Herman, Terence S. [2 ,3 ]
Aravindan, Natarajan [3 ]
机构
[1] Annamalai Univ, Ctr Adv Study Marine Biol, Dept Marine Sci, Parangipettai, TN, India
[2] Stephenson Canc Ctr, Oklahoma City, OK USA
[3] Univ Oklahoma, Hlth Sci Ctr, Dept Radiat Oncol, Oklahoma City, OK 73104 USA
关键词
pancreatic cancer; seaweed polyphenols; tumor invasion and metastasis; residual pancreatic cancer; tumor relapse and recurrence; NF-KAPPA-B; HUMAN-BREAST-CANCER; CYCLOOXYGENASE-2; EXPRESSION; SIGNAL-TRANSDUCTION; RASPBERRY EXTRACT; INSULIN-RECEPTOR; OVER-EXPRESSION; NATURAL-PRODUCT; BETA-CATENIN; RAT MODEL;
D O I
10.18632/oncotarget.13900
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Therapy-resistant pancreatic cancer (PC) cells play a crucial role in tumor relapse, recurrence, and metastasis. Recently, we showed the anti-PC potential of an array of seaweed polyphenols and identified efficient drug deliverables. Herein, we investigated the benefit of one such deliverable, Hormophysa triquerta polyphenol (HT-EA), in regulating the dissemination physiognomy of therapy-resistant PC cells in vitro, and residual PC in vivo. Human PC cells exposed to ionizing radiation (IR), with/without HT-EA pre-treatment were examined for the alterations in the tumor invasion/metastasis (TIM) transcriptome (93 genes, QPCR-profiling). Utilizing a mouse model of residual PC, we investigated the benefit of HT-EA in the translation regulation of crucial TIM targets (TMA-IHC). Radiation activated 30, 50, 15, and 38 TIM molecules in surviving Panc-1, Panc-3.27, BxPC3, and MiaPaCa-2 cells. Of these, 15, 44, 12, and 26 molecules were suppressed with HT-EA pre-treatment. CXCR4 and COX2 exhibited cell-line-independent increases after IR, and was completely suppressed with HT-EA, across all PC cells. HT-EA treatment resulted in translational repression of IR-induced CXCR4, COX2, beta-catenin, MMP9, Ki-67, BAPX, PhPT-1, MEGF10, and GRB10 in residual PC. Muting CXCR4 or COX2 regulated the migration/invasion potential of IR-surviving cells, while forced expression of CXCR4 or COX2 significantly increased migration/invasion capabilities of PC cells. Further, treatment with HT-EA significantly inhibited IR-induced and CXCR4/COX2 forced expression-induced PC cell migration/invasion. This study (i) documents the TIM blueprint in therapy-resistant PC cells, (ii) defines the role of CXCR4 and COX2 in induced metastatic potential, and (iii) recognizes the potential of HT-EA in deterring the CXCR4/COX2-dependent dissemination destiny of therapy-resistant residual PC cells.
引用
收藏
页码:5717 / 5734
页数:18
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