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Methodology for Quantitative Characterization of Fluorophore Photoswitching to Predict Superresolution Microscopy Image Quality

机译:荧光团光开关的定量表征以预测超分辨率显微镜图像质量的方法学

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摘要

Single-molecule localization microscopy (SMLM) image quality and resolution strongly depend on the photoswitching properties of fluorophores used for sample labeling. Development of fluorophores with optimized photoswitching will considerably improve SMLM spatial and spectral resolution. Currently, evaluating fluorophore photoswitching requires protein-conjugation before assessment mandating specific fluorophore functionality, which is a major hurdle for systematic characterization. Herein, we validated polyvinyl alcohol (PVA) as a single-molecule environment to efficiently quantify the photoswitching properties of fluorophores and identified photoswitching properties predictive of quality SMLM images. We demonstrated that the same fluorophore photoswitching properties measured in PVA films and using antibody adsorption, a protein-conjugation environment analogous to labeled cells, were significantly correlated to microtubule width and continuity, surrogate measures of SMLM image quality. Defining PVA as a fluorophore photoswitching screening platform will facilitate SMLM fluorophore development and optimal image buffer assessment through facile and accurate photoswitching property characterization, which translates to SMLM fluorophore imaging performance.
机译:单分子定位显微镜(SMLM)的图像质量和分辨率在很大程度上取决于用于样品标记的荧光团的光开关特性。具有最佳光开关功能的荧光团的开发将大大改善SMLM空间和光谱分辨率。当前,评估荧光团的光开关需要在评估之前要求蛋白质缀合,以强制特定的荧光团功能,这是系统表征的主要障碍。在本文中,我们验证了聚乙烯醇(PVA)作为单分子环境,可以有效地量化荧光团的光开关特性,并确定可预测高质量SMLM图像的光开关特性。我们证明了在PVA膜中测得的相同的荧光团光开关特性,以及使用抗体吸附(类似于标记细胞的蛋白质结合环境)与微管宽度和连续性显着相关,是SMLM图像质量的替代指标。将PVA定义为荧光团光电转换筛选平台,将通过便捷,准确的光开关特性表征,促进SMLM荧光团的开发和最佳图像缓冲液评估,从而转化为SMLM荧光团成像性能。

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