Altay Gizem, Batlle Eduard, Fernández-Majada Vanesa, Martinez Elena
Biomimetic Systems for Cell Engineering Laboratory, Institute for Bioengineering of Catalonia (IBEC), The Barcelona Institute of Science and Technology (BIST), Barcelona, Spain.
Colorectal Cancer Laboratory, Institute for Research in Biomedicine (IRB Barcelona), The Barcelona Institute of Science and Technology (BIST), Baldiri Reixac 10-12, Barcelona 08028, Spain.
Bio Protoc. 2020 Feb 5;10(3):e3514. doi: 10.21769/BioProtoc.3514.
Developing protocols to obtain intestinal epithelial monolayers that recapitulate physiology to overcome the limitations of the organoids' closed geometry has become of great interest during the last few years. Most of the developed culture models showed physiological-relevant cell composition but did not prove self-renewing capacities. Here, we show a simple method to obtain mouse small intestine-derived epithelial monolayers organized into proliferative crypt-like domains, containing stem cells, and differentiated villus-like regions, closely resembling the cell composition and distribution. In addition, we adapted our model to a tissue culture format compatible with functional studies and prove close to physiological barrier properties of our epithelial monolayers. Thus, we have set-up a protocol to generate physiologically relevant intestinal epithelial monolayers to be employed in assays where independent access to both luminal and basolateral compartments is needed, such as drug absorption, intracellular trafficking and microbiome-epithelium interaction assays.
在过去几年中,开发能够重现生理学特征以克服类器官封闭结构局限性的肠道上皮单层培养方案已成为研究热点。大多数已开发的培养模型显示出与生理相关的细胞组成,但未证明具有自我更新能力。在此,我们展示了一种简单方法,可获得源自小鼠小肠的上皮单层,其组织成含有干细胞的增殖性隐窝样结构域以及分化的绒毛样区域,与细胞组成和分布极为相似。此外,我们将模型调整为与功能研究兼容的组织培养形式,并证明我们的上皮单层具有接近生理的屏障特性。因此,我们建立了一种生成与生理相关的肠道上皮单层的方案,可用于需要独立接触管腔和基底外侧隔室的实验,如药物吸收、细胞内运输和微生物群 - 上皮细胞相互作用实验。