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首页> 外文期刊>Science Advances >Biomimetic human small muscular pulmonary arteries
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Biomimetic human small muscular pulmonary arteries

机译:仿生肌肉小肌肉肺动脉

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摘要

Changes in structure and function of small muscular arteries play a major role in the pathophysiology of pulmonary hypertension, a burgeoning public health challenge. Improved anatomically mimetic in vitro models of these microvessels are urgently needed because nonhuman vessels and previous models do not accurately recapitulate the microenvironment and architecture of the human microvascular wall. Here, we describe parallel biofabrication of photopatterned self-rolled biomimetic pulmonary arterial microvessels of tunable size and infrastructure. These microvessels feature anatomically accurate layering and patterning of aligned human smooth muscle cells, extracellular matrix, and endothelial cells and exhibit notable increases in endothelial longevity and nitric oxide production. Computational image processing yielded high-resolution 3D perspectives of cells and proteins. Our studies provide a new paradigm for engineering multicellular tissues with precise 3D spatial positioning of multiple constituents in planar moieties, providing a biomimetic platform for investigation of microvascular pathobiology in human disease.
机译:小型肌动脉结构和功能的变化在肺动脉高压病理学中发挥了重要作用,蓬勃发展的公共卫生挑战。改善了迫切需要这些微血管的解剖学模拟性模型,因为非人类血管和以前的模型不准确地重新延长人体微血管壁的微环境和架构。在这里,我们描述了可调谐尺寸和基础设施的PhotoPatterned自轧仿真肺动脉微型肌的平行生物制造。这些微血管具有解剖学上精确的分层和图案化的对齐的人平滑肌细胞,细胞外基质和内皮细胞,并且具有显着的内皮寿命和一氧化氮产生增加。计算图像处理产生了细胞和蛋白质的高分辨率3D透视图。我们的研究为工程多细胞组织提供了一种新的范式,具有平面部分的多个成分的精确3D空间定位,为人类疾病中的微血管病理学研究提供了一种仿生性平台。

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