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Glycerol-Mediated Nanostructure Modification Leading to Improved Transparency of Porous Polymeric Scaffolds for High Performance 3D Cell Imaging

机译:甘油介导的纳米结构修饰导致用于高性能3D细胞成像的多孔聚合物支架的透明度提高

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摘要

Glycerol is among the most commonly used optical clearing agents for tissues clearance largely due to refractive index (RI) matching between glycerol and the submerged tissues. Here we applied glycerol as structure modifier at both macroscopic (as porogen) and nanoscopic (as nanostructure ameliorant) scales to fabricate transparent porous scaffolds made from polyethylene glycol) (PEG) as well as other widely used biomaterials (e.g., PLGA, PA, or gelatin), whose nahostructures, in the scale of light wavelength, dominantly improved the optical transmittance of the scaffolds even when immersed in RI mismatched medium (e.g., culture medium or water). We further exploited the clearing mechanisms based on Mie scattering theory, illustrating that conformational changes of polymer chains induced by solvent effects of glycerol enhanced the anisotropy (i.e, directional alignment) of the nanostructures, leading to reduced crystallinity and scattering of the resulted PEG scaffolds. Our findings represent the first and systematic demonstration with both experimental and theoretical evidence in effectively clearing porous polymeric scaffolds by mechanisms other than RI matching, which could tackle the limitations of current optical imaging of cells cultured within three-dimensional (3D) opaque porous scaffolds, such as poor visibility, low spatial resolution, and small penetration depth.
机译:甘油是用于组织清除的最常用的光学清除剂,这在很大程度上是由于甘油与浸没组织之间的折射率(RI)匹配。在这里,我们在宏观(作为致孔剂)和纳米(作为纳米结构改良剂)规模上应用甘油作为结构改性剂,以制造由聚乙二醇(PEG)以及其他广泛使用的生物材料(例如PLGA,PA或明胶),其鼻结构在光波长范围内,即使浸入RI不匹配的培养基(如培养基或水)中,也能显着提高支架的透光率。我们进一步利用基于Mie散射理论的清除机制,阐明了甘油溶剂作用引起的聚合物链构象变化增强了纳米结构的各向异性(即方向排列),导致结晶度降低和所得PEG支架的散射。我们的发现代表了首次实验性和系统性的实验和理论证据,它们通过RI匹配以外的机制有效清除了多孔聚合物支架,这可以解决目前在三维(3D)不透明多孔支架中培养的细胞的光学成像的局限性,例如可见性差,空间分辨率低和穿透深度小。

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