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Forced alignment of mesenchymal stem cells undergoing cardiomyogenic differentiation affects functional integration with cardiomyocyte cultures
- Source :
- Circulation research. 103(2)
- Publication Year :
- 2008
-
Abstract
- Alignment of cardiomyocytes (CMCs) contributes to the anisotropic (direction-related) tissue structure of the heart, thereby facilitating efficient electrical and mechanical activation of the ventricles. This study aimed to investigate the effects of forced alignment of stem cells during cardiomyogenic differentiation on their functional integration with CMC cultures. Labeled neonatal rat (nr) mesenchymal stem cells (nrMSCs) were allowed to differentiate into functional heart muscle cells in different cell-alignment patterns during 10 days of coculture with nrCMCs. Development of functional cellular properties was assessed by measuring impulse transmission across these stem cells between 2 adjacent nrCMC fields, cultured onto microelectrode arrays and previously separated by a laser-dissected channel (230±10 μm) for nrMSC transplantation. Coatings in these channels were microabraded in a direction (1) parallel or (2) perpendicular to the channel or were (3) left unabraded to establish different cell patterns. Application of cells onto microabraded coatings resulted in anisotropic cell alignment within the channel. Application on unabraded coatings resulted in isotropic (random) alignment. After coculture, conduction across seeded nrMSCs occurred from day 1 (perpendicular and isotropic) or day 6 (parallel) onward. Conduction velocity across nrMSCs at day 10 was highest in the perpendicular (11±0.9 cm/sec; n=12), intermediate in the isotropic (7.1±1 cm/sec; n=11) and lowest in the parallel configuration (4.9±1 cm/sec; n=11) ( P
- Subjects :
- Male
Patch-Clamp Techniques
Physiology
Cellular differentiation
Connexin
Cell Communication
Biology
Heart Conduction System
Myocyte
Animals
Myocytes, Cardiac
Patch clamp
Rats, Wistar
Cells, Cultured
Myocardium
Mesenchymal stem cell
Cell Differentiation
Mesenchymal Stem Cells
Anatomy
Fibroblasts
Coculture Techniques
Rats
Transplantation
Cell culture
Connexin 43
Models, Animal
Biophysics
Stem cell
Cardiology and Cardiovascular Medicine
Microelectrodes
Subjects
Details
- ISSN :
- 15244571
- Volume :
- 103
- Issue :
- 2
- Database :
- OpenAIRE
- Journal :
- Circulation research
- Accession number :
- edsair.doi.dedup.....47e0f9dede5d55676c7378229ce216f6