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Journal ArticleDOI

Controlling cell interactions by micropatterning in co-cultures: hepatocytes and 3T3 fibroblasts.

TLDR
This co-culture technique allowed manipulation of the initial cellular microenvironment without variation of cell number and was able to control the level of homotypic interaction in cultures of a single cell type and the degree of heterotypic contact in co-cultures over a wide range.
Abstract
The repair or replacement of damaged tissues using in vitro strategies has focused on manipulation of the cell environment by modulation of cell-extracellular matrix interactions, cell-cell interactions, or soluble stimuli. Many of these environmental influences are easily controlled using macroscopic techniques; however, in co-culture systems with two or more cell types, cell-cell interactions have been difficult to manipulate precisely using similar methods. Although microfabrication has been widely utilized for the spatial control of cells in culture, these methods have never been adapted to the simultaneous co-cultivation of more than one cell type. We have developed a versatile technique for micropatterning of two different cell types based on existing strategies for surface modification with aminosilanes linked to biomolecules and the manipulation of serum content of cell culture media. This co-culture technique allowed manipulation of the initial cellular microenvironment without variation of cell number. Specifically, we were able to control the level of homotypic interaction in cultures of a single cell type and the degree of heterotypic contact in co-cultures over a wide range. This methodology has potential applications in tissue engineering, implant biology, and developmental biology, both in the arena of basic science and optimization of function for technological applications.

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Citations
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Journal ArticleDOI

Hydrogels in Biology and Medicine: From Molecular Principles to Bionanotechnology†

TL;DR: This work highlights recent developments in engineering uncrosslinked and crosslinked hydrophilic polymers for biomedical and biological applications and shows how such systems' intelligent behavior can be used in sensors, microarrays, and imaging.
Journal ArticleDOI

Probing the Cytotoxicity Of Semiconductor Quantum Dots.

TL;DR: This work found that CdSe-core QDs were indeed acutely toxic under certain conditions and modulated by processing parameters during synthesis, exposure to ultraviolet light, and surface coatings, and suggests that cytotoxicity correlates with the liberation of free Cd2+ ions due to deterioration of the Cd Se lattice.
Journal ArticleDOI

Soft Lithography in Biology and Biochemistry

TL;DR: Soft lithography offers the ability to control the molecular structure of surfaces and to pattern the complex molecules relevant to biology, to fabricate channel structures appropriate for microfluidics, and topattern and manipulate cells.
Journal ArticleDOI

Cells on chips

TL;DR: Highly integrated microdevices show great promise for basic biomedical and pharmaceutical research, and robust and portable point-of-care devices could be used in clinical settings, in both the developed and the developing world.
Journal ArticleDOI

Patterning proteins and cells using soft lithography

TL;DR: This review describes the pattering of proteins and cells using a non-photolithographic microfabrication technology, which consists of a set of related techniques, each of which uses stamps or channels fabricated in an elastomeric ('soft') material for pattern transfer.
References
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Book ChapterDOI

Preparation of isolated rat liver cells.

TL;DR: This chapter discusses preparation of isolated rat liver cells by incubation of rat liver minces with pronase, which results in most of the liver parenchyma is digested, while nonparenchymal cells remain intact and can be recovered from the incubate.
Journal ArticleDOI

Engineering Cell Shape and Function

TL;DR: An elastomeric stamp was used to imprint gold surfaces with specific patterns of self-assembled monolayers of alkanethiols and, thereby, to create islands of defined shape and size that support extracellular matrix protein adsorption and cell attachment.
Journal ArticleDOI

Hepatocyte function and extracellular matrix geometry: long-term culture in a sandwich configuration.

TL;DR: Adult rat hepatocytes cultured in a collagen sandwich system maintained normal morphology and a physiological rate of albumin secretion for at least 42 days and provided a simple method for their long‐term maintenance.
Journal ArticleDOI

Long-term in vitro function of adult hepatocytes in a collagen sandwich configuration.

TL;DR: It is suggested that simple manipulations of the configuration of extracellular elements can dramatically alter the behavior of cultured hepatocytes.
Journal ArticleDOI

Controlled outgrowth of dissociated neurons on patterned substrates

TL;DR: A set of procedures for patterning the outgrowth of cells cultured on 2-dimensional substrates showed that glia are patterned along with the associated granule cells, and Interestingly, the GFAP-positive glia that proliferated on surfaces bound with amine derivatives attained primarily a tile-shaped, fibroblast-like morphology, while those proliferating on glass coated with poly(D-lysine) developed primarily a spindle- shaped, process-bearing morphology.
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