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首页> 外文期刊>Science and technology of advanced materials >Thermo-responsive cell culture carriers based on poly(vinyl methyl ether)—the effect of biomolecular ligands to balance cell adhesion and stimulated detachment
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Thermo-responsive cell culture carriers based on poly(vinyl methyl ether)—the effect of biomolecular ligands to balance cell adhesion and stimulated detachment

机译:基于聚(乙烯基甲基醚)的热敏细胞培养载体—生物分子配体平衡细胞粘附和刺激脱离的作用

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Two established material systems for thermally stimulated detachment of adherent cells were combined in a cross-linked polymer blend to merge favorable properties. Through this approach poly(N-isopropylacrylamide) (PNiPAAm) with its superior switching characteristic was paired with a poly(vinyl methyl ether)-based composition that allows adjusting physico-chemical and biomolecular properties in a wide range. Beyond pure PNiPAAm, the proposed thermo-responsive coating provides thickness, stiffness and swelling behavior, as well as an apposite density of reactive sites for biomolecular functionalization, as effective tuning parameters to meet specific requirements of a particular cell type regarding initial adhesion and ease of detachment. To illustrate the strength of this approach, the novel cell culture carrier was applied to generate transplantable sheets of human corneal endothelial cells (HCEC). Sheets were grown, detached, and transferred onto planar targets. Cell morphology, viability and functionality were analyzed by immunocytochemistry and determination of transepithelial electrical resistance (TEER) before and after sheet detachment and transfer. HCEC layers showed regular morphology with appropriate TEER. Cells were positive for function-associated marker proteins ZO-1, Na+/K+-ATPase, and paxillin, and extracellular matrix proteins fibronectin, laminin and collagen type IV before and after transfer. Sheet detachment and transfer did not impair cell viability. Subsequently, a potential application in ophthalmology was demonstrated by transplantation onto de-endothelialized porcine corneas in vitro. The novel thermo-responsive cell culture carrier facilitates the generation and transfer of functional HCEC sheets. This paves the way to generate tissue engineered human corneal endothelium as an alternative transplant source for endothelial keratoplasty.
机译:将两个已建立的用于热刺激的贴壁细胞脱离的材料系统合并在交联的聚合物共混物中,以合并有利的性能。通过这种方法,具有出色切换特性的聚(N-异丙基丙烯酰胺)(PNiPAAm)与基于聚乙烯(甲基甲基醚)的组合物配对,该组合物可在很大范围内调节理化和生物分子特性。除了纯PNiPAAm以外,拟议的热响应涂层还提供厚度,刚度和溶胀行为,以及用于生物分子功能化的反应位点的适当密度,作为有效的调节参数,可以满足特定细胞类型在初始粘附性和易用性方面的特定要求。分离。为了说明这种方法的优势,将新型细胞培养载体应用于生成人角膜内皮细胞(HCEC)的可移植薄片。将薄片生长,分离并转移到平面目标上。通过片状脱离和转移之前和之后的免疫细胞化学和测定跨上皮电阻(TEER)来分析细胞形态,活力和功能。 HCEC层显示规则的形态,并带有适当的TEER。细胞在与功能相关的标记蛋白ZO-1,Na + / K + -ATPase和paxillin以及细胞外基质蛋白纤连蛋白,层粘连蛋白和IV型胶原阳性时呈阳性和转移后。床单的分离和转移不会损害细胞活力。随后,通过在体外去内皮化猪角膜移植,证明了其在眼科领域的潜在应用。新型的热响应细胞培养载体有助于功能性HCEC片的产生和转移。这为产生组织工程化的人角膜内皮铺平了道路,作为内皮角膜移植的替代移植来源。

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