首页> 外文会议>Conference on Biophotonics New Frontier: From Genome to Proteome; 20040427; Strasbourg; FR >Polypeptide/polysaccharides holographic micro-structuration for biophysics applications
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Polypeptide/polysaccharides holographic micro-structuration for biophysics applications

机译:多肽/多糖全息微结构在生物物理学中的应用

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Protein and polysaccharide nano-patterning is of prime interest for biological applications but also for applications in the field of diffractive optics. In this work, we used a photo-nano-patterning process based on light interferences through a photo-sensitive material for patterning polysaccharides and polypeptides pure and mixed gels of gelatin, hyaluronan, and chitosan. Chromium ions were incorporated in the gels to render them photo-sensitive. Polyelectrolyte multilayer thin films of poly(L-lysine)/hyaluronan were also investigated either by incorporating chromium ions or by adsorbing a photo-sensitive hyaluronan. Depending on the weights ratios of the polymers, respectively gelatin/chitosan and gelatin/hyaluronan, the gel surfaces exhibit different fringe patterns, as can be visualized by atomic force microscopy. The diffracted intensity characterizing the holographic grating was also depending on gel type. Pure gelatin gels was taken as the reference material. The best results in terms of surface patterns and diffracted intensities were obtained for the gelatin/chitosan gels prepared at acidic pH and exposed at energies ranging from 100 to 400 mJ/cm~2. Our results show that surface patterns of various depths and structures can be created by the photo-patterning technique on biological polymers. These results open new perspectives for the surface control of biological materials but also for making use of the optical properties of these biocompatible biopolymers.
机译:蛋白质和多糖纳米图案在生物学应用中非常重要,但在衍射光学领域也很重要。在这项工作中,我们使用了基于光敏材料的光干扰的光纳米图案化工艺,以对明胶,透明质酸和壳聚糖的纯凝胶和混合凝胶的多糖和多肽进行图案化。铬离子被掺入凝胶中以使其具有光敏性。聚(L-赖氨酸)/乙酰透明质酸的聚电解质多层薄膜也通过掺入铬离子或吸附光敏透明质酸来研究。取决于聚合物的重量比,分别是明胶/壳聚糖和明胶/乙酰透明质酸,凝胶表面表现出不同的条纹图案,可以通过原子力显微镜观察。表征全息光栅的衍射强度还取决于凝胶类型。将纯明胶作为参考材料。对于明胶/壳聚糖凝胶,在酸性pH下制备并在100至400 mJ / cm〜2的能量下暴露,可获得最佳的表面图案和衍射强度结果。我们的结果表明,可以通过在生物聚合物上进行光图案化技术来创建各种深度和结构的表面图案。这些结果为生物材料的表面控制以及利用这些生物相容性生物聚合物的光学性质开辟了新的前景。

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