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Establishment of Vascular Networks in Biochips Using Co-cultures of Adipose Derived Stem Cells and Endothelial Cells in a 3D Fibrin Matrix

机译:使用脂肪衍生的干细胞和3D纤维蛋白基质内皮细胞的共培养,在生物芯片中建立血管网络

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The development of novel vascularization strategies for tissue constructs is still one of the major challenges in tissue engineering and regeneration. In the present study we investigate the establishment of vascular networks in the absence and presence of fluid flow conditions using a microfluidic co-culture system. In the presented configuration adipose derived stem cells (ASCs) and human umbilical vein cells (HUVEC) are embedded within a 3D fibrin matrix to study accumulation and depletion of ASCs secreted paracrine pro-angiogenic factors on vascular tube formation. Initial experiments using fluorescently labelled bovine serum albumin confirmed rapid transport of biomolecules within the fibrin matrix over a distance of various millimeters. Results using 3D co-cultures showed that even in the presence of low fluid mechanical shear forces of 0.025 dyn/mm~2 the onset and maturation of vascular endothelial networks formation were significantly affected, leading to altered tube size and tube length.
机译:组织结构的新型血管化策略的发展仍然是组织工程和再生中的主要挑战之一。在本研究中,我们使用微流体共培养系统在缺乏和存在的情况下调查血管网络的建立。在所呈现的构型衍生的衍生干细胞(ASCS)和人脐静脉细胞(HUVEC)中嵌入在3D纤维蛋白基质中,以研究ASCS分泌的副血管血管生成因子对血管管形成的分泌和耗尽。使用荧光标记的牛血清白蛋白的初始实验证实了在各种毫米的距离内纤维蛋白基质内的生物分子的快速运输。使用3D共培养的结果表明,即使在低流体机械剪切力的情况下为0.025达克/ mm〜2的血管内皮网络的开始和成熟也显着影响,导致管尺寸和管长度改变。

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