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Use of Self-Assembled Monolayers of Different Wettabilities To Study Surface Selection and Primary Adhesion Processes of Green Algal (Enteromorpha) Zoospores

机译:使用自组装的不同润湿性的单分子膜来研究绿色藻类(Enteromorpha)游动孢子的表面选择和主要粘附过程

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摘要

We investigated surface selection and adhesion of motile zoospores of a green, macrofouling alga (Enteromorpha) to self-assembled monolayers (SAMs) having a range of wettabilities. The SAMs were formed from alkyl thiols terminated with methyl (CH3) or hydroxyl (OH) groups or mixtures of CH3- and OH-terminated alkyl thiols and were characterized by measuring the advancing contact angles and by X-ray photoelectron spectroscopy. There was a positive correlation between the number of spores that attached to the SAMs and increasing contact angle (hydrophobicity). Moreover, the sizes of the spore groups (adjacent spores touching) were larger on the hydrophobic SAMs. Video microscopy of a patterned arrangement of SAMs showed that more zoospores were engaged in swimming and “searching” above the hydrophobic sectors than above the hydrophilic sectors, suggesting that the cells were able to “sense” that the hydrophobic surfaces were more favorable for settlement. The results are discussed in relation to the attachment of microorganisms to substrata having different wettabilities.
机译:我们调查了绿色,大型污垢藻(Enteromorpha)的运动选择游动孢子对具有一定润湿性的自组装单分子膜(SAMs)的表面选择和粘附力。 SAM由末端为甲基(CH3)或羟基(OH)的烷基硫醇或CH3-和OH封端的烷基硫醇的混合物形成,并通过测量前进的接触角和X射线光电子能谱进行表征。附着在SAM上的孢子数量与增加的接触角(疏水性)之间呈正相关。此外,在疏水性SAM上,孢子基团的大小(相邻的孢子接触)更大。 SAM的图案排列的视频显微镜显示,参与游动和“搜索”疏水区段上方的游动孢子比亲水区段上方的游动孢子更多,这表明细胞能够“感觉到”疏水表面更有利于沉降。讨论了有关微生物与具有不同润湿性的基质的附着的结果。

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