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PMID: 11920672 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S. Research Support, U.S. Gov't, P.H.S.

In vitro generation of differentiated cardiac myofibers on micropatterned laminin surfaces.

Journal of biomedical materials research ·Vol. 60 ·No. 3 ·2002-06-05 ·Pages 472-9

McDevitt TC, Angello JC, Whitney ML, Reinecke H, Hauschka SD, Murry CE, Stayton PS

Abstract

Cardiac muscle fibers consist of highly aligned cardiomyocytes containing myofibrils oriented parallel to the fiber axis, and successive cardiomyocytes are interconnected at their ends through specialized junctional complexes (intercalated disks). Cell culture studies of cardiac myofibrils and intercalated disks are complicated by the fact that cardiomyocytes become extremely flattened and exhibit disorganized myofibrils and diffuse intercellular junctions with neighboring cells. In this study we sought to direct the organization of cultured cardiomyocytes to more closely resemble that found in vivo. Lanes of laminin 5-50 microm wide were microcontact-printed onto nonadhesive (BSA-coated) surfaces. Adherent cardiomyocytes responded to the spatial constraints by forming elongated, rod-shaped cells whose myofibrils aligned parallel to the laminin lanes. Patterned cardiomyocytes displayed a striking, bipolar localization of the junction molecules N-cadherin and connexin43 that ultrastructurally resembled intercalated disks. When laminin lanes were widely spaced, each lane of cardiomyocytes beat independently, but with narrow-spacing cells bridged between lanes, yielding aligned fields of synchronously beating cardiomyocytes. Similar cardiomyocyte patterns were achieved on the biodegradable polymer PLGA, suggesting that patterned cardiomyocytes could be used in myocardial tissue engineering. Such highly patterned cultures could be used in cell biology and physiology studies, which require accurate reproduction of native myocardial architecture.

MeSH Terms
Animals Cell Differentiation Cells, Cultured Lactic Acid Laminin Muscle Fibers, Skeletal/cytology Myocardium/cytology Polyglycolic Acid Polylactic Acid-Polyglycolic Acid Copolymer Polymers Rats Surface Properties
Chemicals
Laminin Polymers Polylactic Acid-Polyglycolic Acid Copolymer Polyglycolic Acid Lactic Acid
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
McDevitt Todd C
Department of Bioengineering, University of Washington, Seattle, Washington 98195, USA.
Angello John C
Whitney Marsha L
Reinecke Hans
Hauschka Stephen D
Murry Charles E
Stayton Patrick S
Article Info
Journal
Journal of biomedical materials research
Abbr.
J Biomed Mater Res
ISSN
0021-9304
Published
2002-06-05
Pages
472-9
Language
English
Region
United States
NLM ID
0112726
Subset
IM
Grants
NHLBI NIH HHS · HL61553 · United States
NHLBI NIH HHS · HL64387-01 · United States
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