Cell seeding accelerates the vascularization of tissue engineering constructs in hypertensive mice

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作者
Maximilian E. H. Wagner
Andreas Kampmann
Kathrin Schumann-Moor
Nils-Claudius Gellrich
Frank Tavassol
Friederike Schmeltekop
Martin Rücker
Martin Lanzer
Thomas Gander
Harald Essig
Paul Schumann
机构
[1] Division of Cranio-Maxillo-Facial and Oral Surgery,
[2] University Hospital Zurich,undefined
[3] University of Zurich,undefined
[4] Department of Oral and Maxillofacial Surgery,undefined
[5] Hannover Medical School,undefined
[6] Schuhstraße 40,undefined
来源
Hypertension Research | 2021年 / 44卷
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摘要
Rapid blood vessel ingrowth into transplanted constructs represents the key requirement for successful tissue engineering. Seeding three-dimensional scaffolds with suitable cells is an approved technique for this challenge. Since a plethora of patients suffer from widespread diseases that limit the capacity of neoangiogenesis (e.g., hypertension), we investigated the incorporation of cell-seeded poly-L-lactide-co-glycolide scaffolds in hypertensive (BPH/2J, group A) and nonhypertensive (BPN/3J, group B) mice. Collagen-coated scaffolds (A1 and B1) were additionally seeded with osteoblast-like (A2 and B2) and mesenchymal stem cells (A3 and B3). After implantation into dorsal skinfold chambers, inflammation and newly formed microvessels were measured using repetitive intravital fluorescence microscopy for 2 weeks. Apart from a weak inflammatory response in all groups, significantly increased microvascular densities were found in cell-seeded scaffolds (day 14, A2: 192 ± 12 cm/cm2, A3: 194 ± 10 cm/cm2, B2: 249 ± 19 cm/cm2, B3: 264 ± 17 cm/cm2) when compared with controls (A1: 129 ± 10 cm/cm2, B1: 185 ± 8 cm/cm2). In this context, hypertensive mice showed reduced neoangiogenesis in comparison with nonhypertensive animals. Therefore, seeding approved scaffolds with organ-specific or pluripotent cells is a very promising technique for tissue engineering in hypertensive organisms.
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页码:23 / 35
页数:12
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