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Toward fabrication of vascularized tissues using a bilayer co-culture approach achieved by a mesh culture technique

机译:使用网状培养技术实现的双层共培养方法来制造血管化组织

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We have previously reported on a novel mesh culture method that enables fabrication of standalone cell sheets that can be easily integrated with microfluidics to realize tissue-on-a-chip for in vitro studies [1]. Here we report on the fabrication of a bilayer tissue consisting of fibroblasts and HUVECs using a mesh culture approach which permits direct cross-layer cell-cell interaction and communication, unlike in existing co-culture systems where this is impeded by an interfacing substrate between the cell layers. We show that the direct cross-layer interaction induces fibrotic-like swelling of the fibroblast layer and micro-vessel formation by HUVECs. Thus, we present a model that can recapitulate the development of fibrosis, which is a disease condition affecting many organs in the body.
机译:我们以前曾报道过一种新型的网状培养方法,该方法能够制造独立的细胞片,该细胞片可以轻松地与微流控技术集成,以实现用于体外研究的单片组织。在这里,我们报道了使用网状培养方法制造由成纤维细胞和HUVEC组成的双层组织的方法,该方法允许直接的跨层细胞与细胞的相互作用和交流,而与现有的共培养系统不同,在这种共培养系统中,这受到组织之间的界面基质的阻碍。细胞层。我们表明,直接的跨层相互作用会诱导成纤维细胞层的纤维化样肿胀和HUVECs形成的微血管。因此,我们提出了一个可以概括纤维化发展的模型,纤维化是一种影响人体许多器官的疾病。

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