首页> 外文期刊>American Journal of Physiology >Development of a three-dimensional physiological model of the internal anal sphincter bioengineered in vitro from isolated smooth muscle cells.
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Development of a three-dimensional physiological model of the internal anal sphincter bioengineered in vitro from isolated smooth muscle cells.

机译:从孤立的平滑肌细胞体外生物工程的内部肛门括约肌的三维生理模型的开发。

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摘要

Fecal incontinence affects people of all ages and social backgrounds and can have devastating psychological and economic consequences. This disorder is largely attributed to decreased mechanical efficiency of the internal anal sphincter (IAS), yet little is known about the pathophysiological mechanisms responsible for the malfunction of sphincteric smooth muscle at the cellular level. The object of this study was to develop a three-dimensional (3-D) physiological model of the IAS bioengineered in vitro from isolated smooth muscle cells. Smooth muscle cells isolated from the IAS of rabbits were seeded in culture on top of a loose fibrin gel, where they migrated and self-assembled in circumferential alignment. As the cells proliferated, the fibrin gel contracted around a 5-mm-diameter SYLGARD mold, resulting in a 3-D cylindrical ring of sphincteric tissue. We found that 1) the bioengineered IAS rings generated a spontaneous basal tone, 2) stimulation with 8-bromo-cAMP (8-Br-cAMP) caused a sustained decrease in the basal tone (relaxation) that was calcium-independent, 3) upon stimulation with ACh, bioengineered IAS rings showed a calcium- and concentration-dependent peak contraction at 30 s that was sustained for 4 min, 4) addition of 8-Br-cAMP induced rapid relaxation of ACh-induced contraction and force generation of IAS rings, and 5) bioengineered sphincter rings show striking functional differences when compared with bioengineered rings made from isolated colonic smooth muscle cells. This is the first report of a 3-D in vitro model of a gastrointestinal smooth muscle IAS. Bioengineered IAS rings demonstrate physiological functionality and may be used in the elucidation of the mechanisms causing sphincter malfunction.
机译:粪便失禁会影响各个年龄段和社会背景的人,并可能造成毁灭性的心理和经济后果。该病症主要归因于肛门内括约肌(IAS)的机械效率降低,但对引起括约肌平滑肌功能异常的病理生理机制了解甚少。这项研究的目的是从离体的平滑肌细胞中建立IAS生物工程体外的三维(3-D)生理模型。从家兔的IAS分离出的平滑肌细胞在松散的纤维蛋白凝胶上播种培养,然后在周向排列中迁移并自组装。随着细胞的增殖,血纤蛋白凝胶在直径5毫米的SYLGARD霉菌周围收缩,形成括约肌组织的3-D圆柱环。我们发现1)生物工程IAS环产生自发的基调,2)用8-溴-cAMP(8-Br-cAMP)刺激引起基调的持续降低(松弛),而钙基独立,3)受ACh刺激后,生物工程IAS环在30 s处显示出钙和浓度依赖性的峰值收缩,持续4分钟,4)添加8-Br-cAMP诱导ACh诱导的收缩迅速松弛并产生IAS力环和5)与从孤立的结肠平滑肌细胞制成的生物工程环相比,生物工程括约肌环显示出惊人的功能差异。这是胃肠平滑肌IAS的3-D体外模型的首次报道。生物工程IAS环具有生理功能,可用于阐明引起括约肌功能异常的机制。

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