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Monitoring collagen transcription by vascular smooth muscle cells in fibrin-based tissue constructs. | LitMetric

Monitoring collagen transcription by vascular smooth muscle cells in fibrin-based tissue constructs.

Tissue Eng Part C Methods

Department of Biomedical Engineering, University of Minnesota, Minneapolis, MN, USA.

Published: June 2010

AI Article Synopsis

  • Current collagen measurement methods for engineered tissues require tissue destruction, making it hard to monitor collagen production over time.
  • A new luciferase-based approach allows for noninvasive tracking of collagen production in tissue constructs made from smooth muscle cells, showing comparable collagen content to controls.
  • This method enables real-time monitoring of collagen production in response to growth factors, thereby aiding in the optimization of engineered tissues without damaging them.

Article Abstract

Current methods for measuring collagen content in engineered tissues are incompatible with monitoring of collagen production because they require destruction of the tissue. We have implemented a luciferase-based strategy to monitor collagen production noninvasively. Fibrin-based tissue constructs made using vascular smooth muscle cells stably transfected with a collagen I promoter/luciferase transgene developed with collagen content comparable to control cells, but could be imaged noninvasively to follow collagen transcription during tissue growth in vitro. We showed that these cells reported collagen I production at the transcriptional level in response to the growth factor transforming growth factor-beta1 and fibrinolytic inhibition by epsilon-aminocaproic acid and that these changes were consistent with changes at the mRNA and protein levels. As these cells report collagen changes instantly and without tissue destruction, they will facilitate construct optimization using multiple stimuli to produce functional engineered tissues.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2945866PMC
http://dx.doi.org/10.1089/ten.TEC.2009.0112DOI Listing

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