首页> 外文期刊>Journal of artificial organs: The official journal of the Japanese Society for Artificial Organs >In-body optical stimulation formed connective tissue vascular grafts, 'biotubes,' with many capillaries and elastic fibers.
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In-body optical stimulation formed connective tissue vascular grafts, 'biotubes,' with many capillaries and elastic fibers.

机译:体内光刺激形成具有许多毛细血管和弹性纤维的结缔组织血管移植物“生物管”。

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摘要

The autologous biotube, developed by using in-body tissue architecture technology, is one of the most promising small-diameter vascular grafts in regenerative medicine. The walls of the biotubes obtained by a traditional silicone mold-based method were very thin, and this is still the primary obstacle while handling anastomosis, even though these biotubes have adequate pressure resistance ability. This pilot study showed the effect of optical stimulation of subcutaneous tissue formation in the body during the preparation of the biotubes. A blue light-emitting diode (LED) was embedded into a silicone rod as a mold. The biotube was prepared by placing the luminescent molds into the dorsal subcutaneous pouches of a pair of beagles (each weighing ~10 kg) for 2 weeks under photoirradiation. The wall thickness of the obtained biotubes was 506.9 +/- 185.7 mum, which was remarkably more than that of the previous biotubes prepared by 2 months of embedding similarly in beagles' subcutaneous pouches (thickness, 77.2 +/- 14.8 mum). Many capillaries with smooth muscle cells were infiltrated into the wall and concentrated in the internal layer. Interestingly, the formation of elastic fibers had already started along with collagen fibers, mostly with a regular circumferential orientation. The short-term in-body optical stimulation resulted in the rapid formation of a biotube. These phenomena will allow easy surgical handling and may induce vascular maturation in histology during the acute phase after implantation.
机译:通过使用体内组织构造技术开发的自体生物管是再生医学中最有希望的小直径血管移植物之一。通过传统的基于硅树脂模具的方法获得的生物管壁非常薄,即使这些生物管具有足够的耐压能力,这仍然是处理吻合时的主要障碍。这项初步研究显示了光刺激生物管制备过程中机体内皮下组织形成的作用。将蓝色发光二极管(LED)嵌入到硅胶棒中作为模具。通过将发光模具放入一对比格犬(每只体重约10 kg)的背侧皮下袋中,在光照射下放置2周来制备生物管。所获得的生物管的壁厚为506.9 +/- 185.7微米,这明显比通过类似地埋入比格犬的皮下袋中2个月而制备的先前生物管的壁厚(厚度为77.2 +/- 14.8毫米)。许多具有平滑肌细胞的毛细血管被渗入壁并浓缩在内层。有趣的是,弹性纤维的形成已经与胶原纤维一起开始,大部分具有规则的圆周方向。短期体内光学刺激导致生物管的快速形成。这些现象将使手术操作变得容易,并且可能在植入后的急性期在组织学上引起血管成熟。

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