Literature DB >> 12672651

Inhibition of fibroblast proliferation in cardiac myocyte cultures by surface microtopography.

Samuel Y Boateng1, Thomas J Hartman, Neil Ahluwalia, Himabindu Vidula, Tejal A Desai, Brenda Russell.   

Abstract

Cardiac myocyte cultures usually require pharmacological intervention to prevent overproliferation of contaminating nonmyocytes. Our aim is to prevent excessive fibroblast cell proliferation without the use of cytostatins. We have produced a silicone surface with 10-microm vertical projections that we term "pegs," to which over 80% of rat neonatal cardiac fibroblasts attach within 48 h after plating. There was a 50% decrease in cell proliferation by 5 days of culture compared with flat membranes (P < 0.001) and a concomitant 60% decrease (P < 0.01) in cyclin D1 protein levels, suggesting a G1/S1 cell cycle arrest due to microtopography. Inhibition of Rho kinase with 5 or 20 microM Y-27632 reduced attachment of fibroblasts to the pegs by over 50% (P < 0.001), suggesting that this signaling pathway plays an important role in the process. Using mobile and immobile 10-microm polystyrene spheres, we show that reactive forces are important for inhibiting fibroblast cell proliferation, because mobile spheres failed to reduce cell proliferation. In primary myocyte cultures, pegs also inhibit fibroblast proliferation in the absence of cytostatins. The ratio of aminopropeptide of collagen protein from fibroblasts to myosin from myocytes was significantly reduced in cultures from pegged surfaces (P < 0.01), suggesting an increase in the proportion of myocytes on the pegged surfaces. Connexin43 protein expression was also increased, suggesting improved myocyte-myocyte interaction in the presence of pegs. We conclude that this microtextured culture system is useful for preventing proliferation of fibroblasts in myocyte cultures and may ultimately be useful for tissue engineering applications in vivo.

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Year:  2003        PMID: 12672651     DOI: 10.1152/ajpcell.00013.2003

Source DB:  PubMed          Journal:  Am J Physiol Cell Physiol        ISSN: 0363-6143            Impact factor:   4.249


  40 in total

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Authors:  Lixin Qi; Samuel Y Boateng
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3.  Stimulus interval, rate and direction differentially regulate phosphorylation for mechanotransduction in neonatal cardiac myocytes.

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4.  CapZ dynamics are altered by endothelin-1 and phenylephrine via PIP2- and PKC-dependent mechanisms.

Authors:  Thomas J Hartman; Jody L Martin; R John Solaro; Allen M Samarel; Brenda Russell
Journal:  Am J Physiol Cell Physiol       Date:  2009-03-18       Impact factor: 4.249

5.  Isolation and cryopreservation of neonatal rat cardiomyocytes.

Authors:  Adam C Vandergriff; Michael Taylor Hensley; Ke Cheng
Journal:  J Vis Exp       Date:  2015-04-09       Impact factor: 1.355

6.  Nanopattern-induced changes in morphology and motility of smooth muscle cells.

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7.  Quantitative comparison of sarcomeric phosphoproteomes of neonatal and adult rat hearts.

Authors:  Chao Yuan; Quanhu Sheng; Haixu Tang; Yixue Li; Rong Zeng; R John Solaro
Journal:  Am J Physiol Heart Circ Physiol       Date:  2008-06-13       Impact factor: 4.733

8.  Actin dynamics is rapidly regulated by the PTEN and PIP2 signaling pathways leading to myocyte hypertrophy.

Authors:  Jieli Li; Elaine J Tanhehco; Brenda Russell
Journal:  Am J Physiol Heart Circ Physiol       Date:  2014-09-26       Impact factor: 4.733

9.  Phosphatidylinositol 4,5-bisphosphate regulates CapZβ1 and actin dynamics in response to mechanical strain.

Authors:  Jieli Li; Brenda Russell
Journal:  Am J Physiol Heart Circ Physiol       Date:  2013-09-16       Impact factor: 4.733

10.  Cyclic strain dominates over microtopography in regulating cytoskeletal and focal adhesion remodeling of human mesenchymal stem cells.

Authors:  Golnar Doroudian; Matthew W Curtis; Anjulie Gang; Brenda Russell
Journal:  Biochem Biophys Res Commun       Date:  2012-12-17       Impact factor: 3.575

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