DocumentCode :
3777589
Title :
Tumor cellular behaviors regulated by controlled microenvionment
Author :
Wenguang Yang;Haibo Yu;Yuechao Wang;Wenxue Wang;Lianqing Liu
Author_Institution :
State Key Laboratory of Robotics, Shenyang Institute of Automation, Chinese Academy of Sciences, Shenyang 110016, China
fYear :
2015
Firstpage :
57
Lastpage :
61
Abstract :
Recognizing the microenvironmental cues that affect cellular morphology and mechanical properties will contribute to our general understanding of tumor cells, as well as provide approaches to develop effective anti-cancer therapies. Constructing the designated physical microenvironment in which the tumor cells exist is important for cancer cell studies. Although numerous studies have examined how the local interactions between tumor cells and their surrounding microenvironment can regulate cellular behavior, the methods required are very complex and time-consuming. In this manuscript, we describe a light-addressable method to pattern poly-(ethylene) glycol diacrylate (PEGDA) for constructing the surrounding microenvironment of cancer cells, enabling investigation of the effect of the external environment on cancer cell behavior including cell morphology, proliferation, and migration. This is the first method that can be used to simultaneously study all of these behaviors. Using programmable UV exposure, polymerization of the PEGDA solution was induced to create arbitrary shapes with high biocompatibility, and the resistance to cell attachment enabled the PEGDA-coat film to hinder cell adhesion, while the cells grew in the blank area. Moreover, cancer cell morphology, proliferation, and migration were regulated by the controlled microenvironment as determined by our method.
Keywords :
"Computer architecture","Microprocessors","Cancer","Shape","Morphology","Tumors","Mechanical factors"
Publisher :
ieee
Conference_Titel :
Nano/Molecular Medicine & Engineering (NANOMED), 2015 9th IEEE International Conference on
Electronic_ISBN :
2159-6972
Type :
conf
DOI :
10.1109/NANOMED.2015.7492503
Filename :
7492503
Link To Document :
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