Mechanically- and Chemically-Tunable Cell Culture System to Study Myofibroblast Phenotype

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lumican
hepatic stellate cell
hydrogel
polyacrylamide
elastic modulus
liver fibrosis
layer-by-layer assembly
Cell and Developmental Biology
Medical Neurobiology
Neurology
Neuroscience and Neurobiology

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Saums, Michele K
Wang, Weifeng
Han, Biao
Madhavan, Lakshmi
Han, Lin

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Abstract

Cell culture systems for studying the combined effects of matrix proteins and mechanical forces on the behavior of soft tissue cells have not been well developed. Here, we describe a new biomimetic cell culture system that allows for the study of mixtures of matrix proteins while controlling mechanical stiffness in a range that is physiological for soft tissues. This system consists of layer-by-layer (LbL)-assembled films of native matrix proteins atop mechanically tunable soft supports. We used hepatic stellate cells, which differentiate to myofibroblasts in liver fibrosis, for proof-of-concept studies. By culturing cells on collagen and lumican LbL-modified hydrogels, we demonstrate that this system is noncytotoxic and offers a valid control substrate, that the hydrogel determines the overall system mechanics, and that the addition of lumican to collagen influences the stellate cell phenotype. LbL-modified hydrogels offer the potential to study the influence of complex environmental factors on soft-tissue cells in culture.

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2014-05-01

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Langmuir

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