Center for Advanced Laser Technologies (CETAL), National Institute for Laser, Plasma and Radiation Physics, RO-077125 Magurele-Ilfov, Romania.
Faculty of Applied Sciences, University Politehnica of Bucharest, RO-060042 Bucharest, Romania.
Int J Mol Sci. 2021 May 26;22(11):5653. doi: 10.3390/ijms22115653.
We report the design and fabrication by laser direct writing via two photons polymerization of innovative hierarchical structures with cell-repellency capability. The structures were designed in the shape of "mushrooms", consisting of an underside (mushroom's leg) acting as a support structure and a top side (mushroom's hat) decorated with micro- and nanostructures. A ripple-like pattern was created on top of the mushrooms, over length scales ranging from several µm (microstructured mushroom-like pillars, MMP) to tens of nm (nanostructured mushroom-like pillars, NMP). The MMP and NMP structures were hydrophobic, with contact angles of (127 ± 2)° and (128 ± 4)°, respectively, whereas flat polymer surfaces were hydrophilic, with a contact angle of (43 ± 1)°. The cell attachment on NMP structures was reduced by 55% as compared to the controls, whereas for the MMP, a reduction of only 21% was observed. Moreover, the MMP structures preserved the native spindle-like with phyllopodia cellular shape, whereas the cells from NMP structures showed a round shape and absence of phyllopodia. Overall, the NMP structures were more effective in impeding the cellular attachment and affected the cell shape to a greater extent than the MMP structures. The influence of the wettability on cell adhesion and shape was less important, the cellular behavior being mainly governed by structures' topography.
我们通过双光子聚合的激光直写技术设计并制造了具有抗细胞黏附能力的新型分层结构。这些结构设计成“蘑菇”形状,由一个充当支撑结构的底面(蘑菇腿)和一个带有微纳结构的顶面(蘑菇帽)组成。在蘑菇的顶部形成波纹状图案,其长度尺度范围从几微米(微结构蘑菇状支柱,MMP)到几十纳米(纳米结构蘑菇状支柱,NMP)。MMP 和 NMP 结构具有疏水性,接触角分别为(127 ± 2)°和(128 ± 4)°,而平坦聚合物表面具有亲水性,接触角为(43 ± 1)°。与对照相比,NMP 结构上的细胞黏附减少了 55%,而 MMP 结构上的细胞黏附仅减少了 21%。此外,MMP 结构保持了原始的带有伪足的梭形细胞形状,而来自 NMP 结构的细胞呈现圆形且没有伪足。总体而言,NMP 结构在阻止细胞黏附方面更有效,并且比 MMP 结构更能显著影响细胞形状。润湿性对细胞黏附和形状的影响较小,细胞行为主要由结构的形貌决定。