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Biological super-resolution imaging by using novel microsphere-embedded coverslips

机译:使用新型微球嵌入盖玻片进行生物超分辨率成像

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Optical super-resolution imaging is a desirable technique in many fields, including medical and material sciences and nanophotonics. We demonstrated feasibility of optical microscopy, with resolution improvement by a factor of 2-3, by using microsphere-embedded coverslips composed of barium titanate glass microspheres (refractive index n~1.9-2.1) fixed in a transparent layer of polydimethylsiloxane. Imaging was performed by a conventional microscope and a fluorescent microscope with the microsphere-embedded layer placed in a contact position with various biological specimens and semiconductor nanostructures. We investigated a biomedical application of microsphere-assisted imaging technique by imtnunostaining of kidney sections where cellular distribution of a motor protein Myolc and a podocyte specific protein ZO-1 was analyzed. A significant visual enhancement in the distribution pattern of the proteins was noted in the stained glomeruli by using microsphere-assisted imaging technique. Our results suggest that microsphere-assisted imaging technique is a promising candidate for applications in medical and cancer research, as well as in microfluidics and nanophotonics.
机译:光学超分辨率成像是许多领域的理想技术,包括医学和材料科学以及纳米光子学。通过使用固定在聚二甲基硅氧烷透明层中的钛酸钡玻璃微球(折射率n〜1.9-2.1)组成的微球嵌入盖玻片,我们证明了光学显微镜的可行性,分辨率提高了2-3倍。通过常规显微镜和荧光显微镜进行成像,将微球嵌入层放置在与各种生物样本和半导体纳米结构接触的位置。我们通过对肾脏切片进行免疫染色研究了微球辅助成像技术的生物医学应用,其中分析了运动蛋白Myolc和足细胞特异性蛋白ZO-1的细胞分布。通过使用微球辅助成像技术,在染色的肾小球中发现了蛋白质分布模式的显着视觉增强。我们的结果表明,微球辅助成像技术是在医学和癌症研究以及微流体和纳米光子学中应用的有前途的候选者。

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