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The microwell-mesh: A novel device and protocol for the high throughput manufacturing of cartilage microtissues

机译:微孔网:一种用于软骨微组织高通量生产的新型设备和协议

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Microwell platforms are frequently described for the efficient and uniform manufacture of 3-dimensional (3D) multicellular microtissues. Multiple partial or complete medium exchanges can displace microtissues from discrete microwells, and this can result in either the loss of microtissues from culture, or microtissue amalgamation when displaced microtissues fall into common microwells. Herein we describe the first microwell platform that incorporates a mesh to retain microtissues within discrete microwells; the microwell-mesh. We show that bonding a nylon mesh with an appropriate pore size over the microwell openings allows single cells to pass through the mesh into the microwells during the seeding process, but subsequently retains assembled microtissues within discrete microwells. To demonstrate the utility of this platform, we used the microwell-mesh to manufacture hundreds of cartilage microtissues, each formed from 5 x 10(3) bone marrow-derived mesenchymal stem/stromal cells (MSC). The microwell-mesh enabled reliable microtissue retention over 21-day cultures that included multiple full medium exchanges. Cartilage-like matrix formation was more rapid and homogeneous in microtissues than in conventional large diameter control cartilage pellets formed from 2 x 10(5) MSC each. The microwell-mesh platform offers an elegant mechanism to retain microtissues in microwells, and we believe that this improvement will make this platform useful in 3D culture protocols that require multiple medium exchanges, such as those that mimic specific developmental processes or complex sequential drug exposures. (c) 2015 The Authors. Published by Elsevier Ltd.
机译:经常描述微孔平台,以高效,均匀地制造3维(3D)多细胞微组织。多次部分或完全培养基交换可以使离散的微孔中的微组织移位,并且这可能导致从培养中丢失微组织,或者当置换的微组织落入普通微孔中时导致微组织融合。在这里,我们描述了第一个微孔平台,该平台结合了一个网孔以将微组织保留在离散的微孔中;微孔网。我们表明,在微孔开口上粘合具有适当孔径的尼龙网允许单个细胞在播种过程中穿过网进入微孔,但随后将组装的微组织保留在离散的微孔中。为了演示该平台的实用性,我们使用微孔网制造了数百个软骨微组织,每个组织由5 x 10(3)骨髓间充质干/基质细胞(MSC)形成。微孔网能够在21天的培养过程(包括多次完全培养基交换)中可靠地保留微组织。与常规大直径对照软骨小球(每个小球由2 x 10(5)MSC形成)相比,微组织中的软骨样基质形成更快,更均匀。微孔网平台为将微组织保留在微孔中提供了一种优雅的机制,我们相信这一改进将使该平台可用于需要多种培养基交换的3D培养方案,例如模拟特定发育过程或复杂顺序药物暴露的培养基。 (c)2015作者。由Elsevier Ltd.发布

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