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1.
Cancer Research and Treatment ; : 195-201, 2012.
Article in English | WPRIM | ID: wpr-68139

ABSTRACT

PURPOSE: Current treatment of glioblastoma after surgery consists of a combination of fractionated radiotherapy and temozolomide. However, it is difficult to completely remove glioblastoma because it has uncertain boundaries with surrounding tissues. Moreover, combination therapy is not always successful because glioblastoma has diverse resistances. To overcome these limitations, we examined the combined effects of chemotherapy and knockdown of mitogen-activated protein kinase phosphatase-1 (MKP-1). MATERIALS AND METHODS: We used ten different anti-cancer drugs (cisplatin, cyclophosphoamide, doxorubicin, epirubicin, etoposide, 5-fluorouracil, gemcitabine, irinotecan, mitomycin C, and vincristine) to treat glioblastoma multiforme (GBM) cells. Knockdown of MKP-1 was performed using siRNA and lipofectamine. The basal level of MKP-1 in GBM was analyzed based on cDNA microarray data obtained from the Gene Expression Omnibus (GEO) databases. RESULTS: Anti-cancer drug-induced cell death was significantly enhanced by knockdown of MKP-1, and this effect was most prominent in cells treated with irinotecan and etoposide. Treatment with these two drugs led to significantly increased phosphorylation of c-Jun N-terminal kinase (JNK) in a time-dependent manner, while pharmacological inhibition of JNK partially inhibited drug-induced cell death. Knockdown of MKP-1 also enhanced drug-induced phosphorylation of JNK. CONCLUSION: Increased MKP-1 expression levels could be the cause of the high resistance to conventional chemotherapeutics in human GBM. Therefore, MKP-1 is an attractive target for overcoming drug resistance in this highly refractory malignancy.


Subject(s)
Humans , Apoptosis , Camptothecin , Cell Death , Dacarbazine , Deoxycytidine , Doxorubicin , Drug Resistance , Drug Resistance, Multiple , Dual Specificity Phosphatase 1 , Epirubicin , Etoposide , Fluorouracil , Gene Expression , Glioblastoma , JNK Mitogen-Activated Protein Kinases , Lipids , Mitomycin , Oligonucleotide Array Sequence Analysis , Phosphorylation , Phosphotransferases , Protein Kinases , RNA, Small Interfering
2.
Experimental & Molecular Medicine ; : 378-386, 2012.
Article in English | WPRIM | ID: wpr-57562

ABSTRACT

12(S)-Hydroxyheptadeca-5Z,8E,10E-trienoic acid (12-HHT) is an enzymatic product of prostaglandin H2 (PGH2) derived from cyclooxygenase (COX)-mediated arachidonic acid metabolism. Despite the high level of 12-HHT present in tissues and bodily fluids, its precise function remains largely unknown. In this study, we found that 12-HHT treatment in HaCaT cells remarkably down-regulated the ultraviolet B (UVB) irradiation-induced synthesis of interleukin-6 (IL-6), a pro-inflammatory cytokine associated with cutaneous inflammation. In an approach to identify the down-stream signaling mechanism by which 12-HHT down-regulates UVB-induced IL-6 synthesis in keratinocytes, we observed that 12-HHT inhibits the UVB-stimulated activation of p38 mitogen-activated protein kinase (MAPK) and nuclear factor kappa B (NF-kappaB). In addition, we found that 12-HHT markedly up-regulates MAPK phosphatase-1 (MKP-1), a critical negative regulator of p38 MAPK. When MKP-1 was suppressed by siRNA knock-down, the 12-HHT-mediated inhibitory effects on the UVB-stimulated activation of p38 MAPK and NF-kappaB, as well as the production of IL-6, were attenuated in HaCaT cells. Taken together, our results suggest that 12-HHT exerts anti-inflammatory effect via up-regulation of MKP-1, which negatively regulates p38 MAPK and NF-kappaB, thus attenuating IL-6 production in UVB-irradiated HaCaT cells. Considering the critical role of IL-6 in cutaneous inflammation, our findings provide the basis for the application of 12-HHT as a potential anti-inflammatory therapeutic agent in UV-induced skin diseases.


Subject(s)
Humans , Anti-Inflammatory Agents, Non-Steroidal/pharmacology , Cell Line , Dual Specificity Phosphatase 1/biosynthesis , Enzyme Activation , Fatty Acids, Unsaturated/pharmacology , Interleukin-6/biosynthesis , Keratinocytes/metabolism , NF-kappa B/metabolism , RNA Interference , RNA, Small Interfering , Receptors, Leukotriene B4/genetics , Signal Transduction/drug effects , Skin Diseases/drug therapy , Ultraviolet Rays , Up-Regulation , p38 Mitogen-Activated Protein Kinases/metabolism
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