首页> 外文期刊>Yonsei Medical Journal >Temperature-Responsive surface for novel co-culture systems of hepatocytes with endothelial cells: 2-D patterned and double layered co-cultures
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Temperature-Responsive surface for novel co-culture systems of hepatocytes with endothelial cells: 2-D patterned and double layered co-cultures

机译:新型肝细胞与内皮细胞共培养系统的温度响应表面:二维图案化和双层共培养

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We have developed two novel cell co-culture system, without any on cell type combination limitation, utilizing a polymer surface which is temperature-sensitive with respect to its cell adhesion characteristics. One system involves a patterned co-culture of primary hepatocytes with endothelial cells utilizing patterned masked of the electron-beam cured, temperature-responsive polymer, poly ( N -isopropylacrylamide) (PIPAAm) by masked electron beam irradiation. Hepatocytes were cultured to confluency at 37℃ on these surfaces. When the culture temperature was reduced below 32℃, cells detached from the PIPAAm-grafted areas without any need for trypsin. Endothelial cells were then seeded onto the same surfaces at 37℃. These subsequently seeded endothelial cells adhered only to the now-exposed PIPAAm-grafted domains and could be co-cultured with the hepatocytes initially seeded at 37℃ in well-ordered patterns. The other system involves a double layered co-culture obtained by overlaying endothelial cell sheets of the designed shape onto hepatocyte monolayers. The endothelial cells adhered and proliferated on the PIPAAm-grafted surface, as on polystyrene tissue culture dishes at 37℃. By reducing the temperature, confluent monolayers of cells detached from the PIPAAm surfaces without trypsin. Because the recovered cells maintaed intact cell-cell junctions together with deposited extracellular matrix, the harvested endothelial cell sheets, with designed shapes, were transferable and readily adhered to hepatocyte monolayers. Stable double layered cell sheets could be co-cultivated. These two co-culture methods enabled long-term co-culture of primary hepatocytes with endothelial cells. Hepatocytes so co-cultured with endothelial cells maintained their differentiated functions, such as albumin synthesis for unexpectedly long periods. These novel two co-culture systems offer promising techniques for basic biologic researches upon intercellular communications, and for the clinical applications of tissue engineered constructs.
机译:我们已经开发了两种新颖的细胞共培养系统,没有任何细胞类型组合的限制,利用了对细胞粘附特性具有温度敏感性的聚合物表面。一种系统涉及通过图案化遮盖电子束固化的温度响应性聚合物,聚(N-异丙基丙烯酰胺)(PIPAAm)的图案化遮盖电子束辐射,使原代肝细胞与内皮细胞图案化共培养。在37℃下将这些肝细胞培养至汇合。当培养温度降至32℃以下时,细胞从PIPAAm移植区脱离,无需胰蛋白酶。然后将内皮细胞接种到37℃的相同表面上。这些随后播种的内皮细胞仅粘附于现已暴露的PIPAAm移植结构域,并且可以与最初在37℃播种的肝细胞以有序模式共培养。另一系统涉及通过将设计形状的内皮细胞片覆盖在肝细胞单层上而获得的双层共培养。内皮细胞粘附在PIPAAm移植表面并在37℃的聚苯乙烯组织培养皿上增殖。通过降低温度,融合细胞单层从PIPAAm表面脱离,而没有胰蛋白酶。因为回收的细胞与沉积的细胞外基质一起保持完整的细胞-细胞连接,所以具有设计形状的收获的内皮细胞片是可转移的,并且易于粘附至肝细胞单层。稳定的双层细胞片可以共培养。这两种共培养方法能够使原代肝细胞与内皮细胞长期共培养。如此与内皮细胞共培养的肝细胞保持了其分化的功能,例如白蛋白合成的出乎意料的长时间。这些新颖的两种共培养系统为细胞间通讯基础生物学研究以及组织工程构建体的临床应用提供了有前途的技术。

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