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Zou, Duo-Bing,Wei, Xiao,Hu, Ruo-Lei,Yang, Xiao-Ping,Zuo, Li,Zhang, Su-Mei,Zhu, Hua-Qing,Zhou, Qing,Gui, Shu-Yu,Wang, Yuan Asian Pacific Journal of Cancer Prevention 2015 Asian Pacific journal of cancer prevention Vol.16 No.14
Background: Melatonin, which is mainly produced by the pineal gland, has a good inhibitory effect on cell growth of multiple cancer types. However, the underlying molecular mechanisms of anti-tumor activity for colon cancer have not been fully elucidated. In this study, we investigated the effects of melatonin on migration in human colon cancer RKO cells and the potential molecular mechanisms. Materials and Methods: The viability of RKO cells was investigated by MTT assay after treatment with melatonin, SB203580 (p38 inhibitor) and phorbol 12-myristate 13-acetate (PMA, MAPK activator) alone or in combination for 48h. The effects of melatonin, and ML-7, a selective inhibitor of myosin light chain kinase (MLCK), and SB203580, and PMA on the migration of RKO cells were analyzed by in vitro scratch-wound assay. The relative mRNA levels of MLCK was assessed by real-time quantitative RT-PCR. Western blotting analysis was performed to examine the expression of MLCK, phosphorylation of myosin light chain (pMLC) and p38 (pp38). Results: The proliferation and migration of human colon cancer RKO cells were inhibited significantly after treatment with melatonin. The expression levels of MLCK and phosphorylation of MLC of RKO cells were reduced, and real-time quantitative RT-PCR showed that melatonin had significant effects on suppressing the expression of MLCK. Furthermore, the phosphorylation level of p38, which showed the same trend, was also reduced when cells were treated by melatonin. In addition, ML-7 (25umol/l) could down-regulate the phosphorylation of p38. Conclusions: Melatonin could inhibit the proliferation and migration of RKO cells, and further experiments confirmed that p38 MAPK plays an important role in regulating melatonin-induced migration inhibition through down-regulating the expression and activity of MLCK.
Mathematical Simulation of Spray Forming Process
( Jun Fei Fan ),( Yin Zhang ),( San Bing Ren ),( You Duo He ),( Hai Rong Le ) 한국액체미립화학회 2005 한국액체미립화학회 학술강연회 논문집 Vol.2005 No.-
In this paper, an integrated approach for modeling the entire spray forming process is presented and the program for the simulation is written by hand. The whole spray forming process can be divided into four calculate process and the basis for the analysis is classical k-ε turbulence model which used to simulate the flow field of gas formed in the chamber. The other three mathematical models are atomization model,deposition model and solidification model. In the atomization model coupled the flow field of gas and formation、velocity and location of droplet. By means of integrate above mathematical model the process of spraying forming was simulated in detail.