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Cell Growth on ('Janus') Density Gradients of Bifunctional Zeolite L Crystals

机译:双功能沸石L晶体在(“ Janus”)密度梯度上的细胞生长

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Nanoparticle density gradients on surfaces have attracted interest as two-dimensional material surfaces that can mimic the complex nano-/microstructure of the native extracellular matrix, including its chemical and physical gradients, and can therefore be used to systematically study cell material interactions. In this respect, we report the preparation of density gradients made of bifunctional zeolite L crystals on glass surfaces and the effects of the density gradient and biopolymer functionalization of zeolite L crystals on cell adhesion. We also describe how we created "Janus" density gradient surfaces by gradually depositing two different types of zeolite L crystals that were functionalized and loaded with different chemical groups and guest molecules onto the two distinct sides of the same glass substrate. Our results show that more cells adhered on the density gradient of biopolymer-coated zeolites than on uncoated ones. The number of adhered cells increased up to a certain surface coverage of the glass by the zeolite L crystals, but then it decreased beyond the zeolite density at which a higher surface coverage decreased fibroblast cell adhesion and spreading. Additionally, cell experiments showed that cells gradually internalized the guest-molecule-loaded zeolite L crystals from the underlying density gradient containing bifunctional zeolite L crystals.
机译:表面上的纳米粒子密度梯度已成为二维材料表面的关注点,它可以模拟天然细胞外基质的复杂纳米/微观结构,包括其化学和物理梯度,因此可用于系统地研究细胞材料之间的相互作用。在这方面,我们报道了在玻璃表面上由双功能沸石L晶体制成的密度梯度的制备以及沸石L晶体的密度梯度和生物聚合物功能化对细胞粘附的影响。我们还描述了如何通过将两种功能不同的L型沸石L晶体逐渐沉积并作用于同一玻璃基板的两个不同侧面上来创建“ Janus”密度梯度表面的方法。我们的结果表明,与未涂覆的沸石相比,在生物聚合物涂覆的沸石的密度梯度上粘附的细胞更多。粘附的细胞数量增加到通过沸石L晶体达到玻璃的一定表面覆盖率,但随后下降到超过沸石密度时,在该密度下较高的表面覆盖率会降低成纤维细胞的粘附和扩散。另外,细胞实验表明,细胞从包含双功能沸石L晶体的潜在密度梯度中逐渐内化了载有客体分子的沸石L晶体。

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