2015
DOI: 10.1021/ac503716z
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Effects of Physiologic Mechanical Stimulation on Embryonic Chick Cardiomyocytes Using a Microfluidic Cardiac Cell Culture Model

Abstract: Hemodynamic mechanical cues play a critical role in the early development and functional maturation of cardiomyocytes (CM). Therefore, tissue engineering approaches that incorporate immature CM into functional cardiac tissues capable of recovering or replacing damaged cardiac muscle require physiologically relevant environments to provide the appropriate mechanical cues. The goal of this work is to better understand the subcellular responses of immature cardiomyocytes using an in vitro cardiac cell culture mod… Show more

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Cited by 42 publications
(31 citation statements)
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“…Fractional shortening was estimated using video analysis and Lagrangian strain calculations for finitely small displacement, as previously described by Bonet and Wood [2008] and used by our group [Nguyen et al, 2009[Nguyen et al, , 2015. Briefly, if p1 and p2 are 2 nearby points defined on the first frame and d1 denotes the Euclidian distance between p1 and p2 at the first frame (i.e., reference frame), then dj denotes the Euclidian distance between these 2 points at time frame j.…”
Section: Fractional Shorteningmentioning
confidence: 99%
“…Fractional shortening was estimated using video analysis and Lagrangian strain calculations for finitely small displacement, as previously described by Bonet and Wood [2008] and used by our group [Nguyen et al, 2009[Nguyen et al, , 2015. Briefly, if p1 and p2 are 2 nearby points defined on the first frame and d1 denotes the Euclidian distance between p1 and p2 at the first frame (i.e., reference frame), then dj denotes the Euclidian distance between these 2 points at time frame j.…”
Section: Fractional Shorteningmentioning
confidence: 99%
“…Microfluidic devices have been designed to investigate the influence of biomechanical forces on the gene expression in stem cells 68 and cardiac cells, 69 but no similar…”
Section: Micro-technologiesmentioning
confidence: 99%
“…In addition, this system can be exploited to complement animal studies and also more accurately predict pharmacological effects in patients and, in the future, could be used to bypass the use of animal testing completely [110]. Organ-on-a-chip has been developed for several organs, including the lung [111,112], heart [113,114], liver [115], neuron [116], kidney [117,118], gut [14,43,119], blood vessel [120,121], tumour-on-a-chip [122], bone marrow-on-a-chip [123], liver-tumour-bone marrow-on-a-chip [124], and liver-skin-intestine-kidney-on-a-chip [125]. These systems can be extended to disease modelling, pharmaceutical analysis, drug development strategies [6, 118,122], and understanding host-microbe interactions [14,111,122].…”
Section: Organ-on-a-chipmentioning
confidence: 99%