Microcontact Printing

Microcontact printing is a soft-lithography technique that transfers patterned materials onto a surface, enabling precise control of chemical and biological interfaces. A patterned elastomeric stamp, commonly made from polydimethylsiloxane, is coated with an “ink,” brought into contact with a substrate, and used to deposit the material in defined microscale features. In biology, these patterns can organize extracellular matrix proteins, adhesive molecules, or cells to control cell attachment, spreading, and spatial arrangement. The method supports studies of cell behavior, tissue organization, biosensor development, and engineered cellular environments while requiring relatively simple equipment and gentle processing conditions.

Microcontact Printing - Related Videos

Research

JoVE Journal - Biology

Microcontact Printing of Proteins for Cell Biology

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Cited by 31 •

2008

Microcontact printing is used extensively to pattern proteins and other molecules on material surfaces. We demonstrate the basic steps of this process, stamping patterns of fibronectin onto glass.

Generation of Aligned Functional Myocardial Tissue Through Microcontact Printing

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Cited by 19 •

2013

The generation of aligned myocardial tissue is a key requirement for adapting the recent advances in stem cell biology to clinically useful purposes. Herein we describe a microcontact printing approach for the precise control of cell shape and function. Using highly purified populations of embryonic stem cell derived cardiac progenitors, we then generate anisotropic functional myocardial tissue.

Fabricating Complex Culture Substrates Using Robotic Microcontact Printing (R-µCP) and Sequential Nucleophilic Substitution

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Cited by 9 •

2014

Cell culture substrates functionalized with microscale patterns of biological ligands have immense utility in the field of tissue engineering. Here, we demonstrate the versatile and automated manufacture of tissue culture substrates with multiple, micropatterned poly(ethylene glycol) brushes presenting orthogonal chemistries that enable spatially precise and site-specific immobilization of biological ligands.

Research

JoVE Journal - Bioengineering
Free Sample

Planar and Three-Dimensional Printing of Conductive Inks

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Cited by 58 •

2011

Planar and three-dimensional printing of conductive metallic inks is described. Our approach provides new avenues for fabricating printed electronic, optoelectronic, and biomedical devices in unusual layouts at the microscale.

Inkjet-printed Polyvinyl Alcohol Multilayers

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Cited by 4 •

2017

An inkjet printer was used to manufacture polyvinyl alcohol multilayers. Polyvinyl alcohol water-based ink was formulated, and the main physical properties were investigated.

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