首页> 外文期刊>Journal of biomedical materials research, Part A >Aligned 3D human aortic smooth muscle tissue via layer by layer technique inside microchannels with novel combination of collagen and oxidized alginate hydrogel
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Aligned 3D human aortic smooth muscle tissue via layer by layer technique inside microchannels with novel combination of collagen and oxidized alginate hydrogel

机译:通过胶原蛋白和氧化藻酸盐水凝胶的新型组合在微通道内逐层对齐3D人主动脉平滑肌组织

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Tissue engineering of the small diameter blood vessel medial layer has been challenging. Recreation of the circumferentially aligned multilayer smooth muscle tissue has been one of the major technical difficulties. Some research has utilized cyclic stress to align smooth muscle cells (SMCs) but due to the long time conditioning needed, it was not possible to use primary human cells because of expeditious senescence occured. We demonstrate rapid buildup of a homogeneous relatively thick (30-40 μm) aligned smooth muscle tissue via layer by layer (LBL) technique within microchannels and a soft cell-adhesive hydrogel. Using a microchannelled scaffold with gapped microwalls, two layers of primary human SMCs separated by an interlayer hydrogel were cultured to confluence within the microchannels. The SMCs aligned along the microchannels because of the physically constraining microwalls. A novel double layered gel consisting of a mixture of pristine and oxidized alginate hydrogel coated with collagen was designed to place between each layer of cells, leading to a thicker tissue in a shorter time. The SMCs penetrated the soft thin interlayer hydrogel within 6 days of seeding of the 2nd cell layer so that the entire construct became more or less homogeneously populated by the SMCs. The unique LBL technique applied within the micropatterned scaffold using a soft cell-adhesive gel interlayer allows rapid growth and confluence of SMCs on 2D surface but at the same time aligns the cells and builds up multiple layers into a 3D tissue. This pseudo-3D buildup method avoids the typical steric resistance of hydrogel embedding.
机译:小直径血管内侧层的组织工程学一直具有挑战性。周向对齐的多层平滑肌组织的重建一直是主要的技术难题之一。一些研究利用循环应力来排列平滑肌细胞(SMC),但是由于需要长时间的调节,由于发生了迅速的衰老,因此无法使用原代人细胞。我们演示了通过微通道内的层状(LBL)技术和柔软的细胞粘附水凝胶,快速形成均质相对较厚(30-40μm)对齐的平滑肌组织。使用具有带间隙的微壁的微通道支架,将两层由层间水凝胶分隔的原代人SMC进行培养以在微通道内汇合。由于物理约束的微壁,SMC沿着微通道排列。一种新颖的双层凝胶,由纯净的和涂有胶原蛋白的氧化藻酸盐水凝胶的混合物组成,旨在放置在每层细胞之间,从而在较短的时间内形成更厚的组织。在植入第二个细胞层后的6天之内,SMC穿透了柔软的薄层间水凝胶,因此整个构建体或多或少地被SMC均匀填充。使用软细胞粘附凝胶夹层在微模式支架中应用的独特LBL技术允许SMC在2D表面上快速生长和融合,但同时对齐细胞并在3D组织中建立多层。这种伪3D堆积方法避免了水凝胶嵌入的典型空间阻力。

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