Large area micropatterning of cells on polydimethylsiloxane surfaces

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Large area micropatterning of cells on polydimethylsiloxane surfaces

BACKGROUND Precise spatial control and patterning of cells is an important area of research with numerous applications in tissue engineering, as well as advancing an understanding of fundamental cellular processes. Poly (dimethyl siloxane) (PDMS) has long been used as a flexible, biocompatible substrate for cell culture with tunable mechanical characteristics. However, fabrication of suitable p...

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Liver cells culture on three-dimensional micropatterned polydimethylsiloxane surfaces

Current in vitro cell culture technologies present some limitations as they can't simulate or mimic in vivo situations. Indeed, in vivo cells function in a three-dimensional (3D) structure where they have a close contact with adjacent cells. In this study, human hepatocarcinoma Hep G2 cells were cultured on 3D micropatterned polydimethylsiloxane (PDMS) substrates. Using soft-lithography techniq...

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Lithographic patterning on polydimethylsiloxane surfaces using polydimethylglutarimide.

We present a method for high fidelity lithographic patterning on polydimethylsiloxane (PDMS) surfaces employing traditional cleanroom equipment and commercially available materials that overcomes previous problems in PDMS processing. To illustrate this method, an electrostatically actuated microfluidic pump and rectangular diffraction gratings were fabricated on PDMS.

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Nanofabrication of nonfouling surfaces for micropatterning of cell and microtissue.

Surface engineering techniques for cellular micropatterning are emerging as important tools to clarify the effects of the microenvironment on cellular behavior, as cells usually integrate and respond the microscale environment, such as chemical and mechanical properties of the surrounding fluid and extracellular matrix, soluble protein factors, small signal molecules, and contacts with neighbor...

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ژورنال

عنوان ژورنال: Journal of Biological Engineering

سال: 2014

ISSN: 1754-1611

DOI: 10.1186/1754-1611-8-24