2017
DOI: 10.1186/s12860-017-0131-2
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Mesenchymal stem cells and myoblast differentiation under HGF and IGF-1 stimulation for 3D skeletal muscle tissue engineering

Abstract: BackgroundVolumetric muscle loss caused by trauma or after tumour surgery exceeds the natural regeneration capacity of skeletal muscle. Hence, the future goal of tissue engineering (TE) is the replacement and repair of lost muscle tissue by newly generating skeletal muscle combining different cell sources, such as myoblasts and mesenchymal stem cells (MSCs), within a three-dimensional matrix. Latest research showed that seeding skeletal muscle cells on aligned constructs enhance the formation of myotubes as we… Show more

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Cited by 89 publications
(80 citation statements)
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“…Hepatocyte growth factor (HGF) is another significant cytokine that participate in angiogenesis, anti-inflammation and anti-apoptosis. MSCs overexpressing HGF are reported to have high therapeutic influence in cardiovascular diseases [54], liver injuries [55], lungs conditions [56], stabilizing endothelial barrier function [57,58], skeletal muscle tissue regeneration [59], and even regeneration of damaged neurons in a Parkinson's disease model [60]. Jang and colleagues investigate the protective role of HGF gene-transfected MSCs in acetaminophen induced hepatocytes injury.…”
Section: Improving Survivalmentioning
confidence: 99%
“…Hepatocyte growth factor (HGF) is another significant cytokine that participate in angiogenesis, anti-inflammation and anti-apoptosis. MSCs overexpressing HGF are reported to have high therapeutic influence in cardiovascular diseases [54], liver injuries [55], lungs conditions [56], stabilizing endothelial barrier function [57,58], skeletal muscle tissue regeneration [59], and even regeneration of damaged neurons in a Parkinson's disease model [60]. Jang and colleagues investigate the protective role of HGF gene-transfected MSCs in acetaminophen induced hepatocytes injury.…”
Section: Improving Survivalmentioning
confidence: 99%
“…Such matrices can be worked into desired shapes using micromolding, microfluidics, electrostatic droplet extrusion, or bioprinting (Kim et al, 2019). MSC based scaffolds systems have been used for bone and cartilage regeneration (Kim et al, 2019), as well as for the reproduction of blood vessels (Pinnock et al, 2016), cardiac tissue (Rashedi et al, 2017;Ichihara et al, 2018;Joshi et al, 2018), and skeletal muscle (Witt et al, 2017). Optimal tissue replacement efficiency relies on the physical characteristics of the scaffolds (Alakpa et al, 2017;Jeon et al, 2017;Mouser et al, 2018), as each mechanical property can modify the fate of the transplanted cells.…”
Section: Alternative Approaches To Msc Administrationmentioning
confidence: 99%
“…Diese werden zur Ver vielfältigung meist im Labor kultiviert, um sie dann in den Emp fängerorganismus zu implantieren [6][7][8][9][10][11][12]. In vitro unter Laborbe dingungen und im Kleintiermodell [13] hat diese Methode teils erstaunliche Ergebnisse gezeigt [14][15][16]. U.a.…”
Section: Warum Biofabrikation Und Nicht Tissue Engineering?unclassified