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无标记分析前列腺小囊样 3D 结构的 lensfree 成像技术。

Label-free analysis of prostate acini-like 3D structures by lensfree imaging.

机构信息

CEA, DSV iRTSV, Biologie à Grande Echelle, Biomics, 17 rue des Martyrs, F-38054 Grenoble, France.

出版信息

Biosens Bioelectron. 2013 Nov 15;49:176-83. doi: 10.1016/j.bios.2013.05.001. Epub 2013 May 21.

Abstract

We present a lensfree imaging method to analyze polarity in RWPE1 prostate epithelial cells that form polarized acini with lumen under standard tridimensional (3D) culture conditions. The first event in epithelial carcinogenesis is loss of polarity, followed by uncontrolled proliferation leading to metastasis. We demonstrate that it is possible to use optical signatures to discriminate 3D objects with distinct polarities in a large field of view. The three metrics we present here are designed as image processing tools to discriminate acini from spheroids without any 3D reconstruction. To demonstrate that our lensfree imaging platform may be used to study the 3D organization of epithelial cells, we analyzed and quantified the modulation of dynamic processes, e.g., the polarity of acini and the merging of polarized structures, upon transforming growth factor beta-1 (TGF beta-1) addition to the culture media. Hence, coupling lensfree microscopy with 3D cell culture provides an innovative tool to study epithelial tissue morphogenesis in a large field of view and to elucidate the regulation of growth, morphogenesis and differentiation in normal and cancerous human prostate cells. Moreover, such biosensor would be a powerful tool to follow cancer progression and to evaluate anti-cancer drugs.

摘要

我们提出了一种无透镜成像方法,用于分析 RWPE1 前列腺上皮细胞在标准三维(3D)培养条件下形成具有腔的极化小泡的极性。上皮癌发生的第一个事件是极性丧失,随后是不受控制的增殖导致转移。我们证明,使用光学特征有可能在大视场中区分具有不同极性的 3D 物体。我们在这里提出的三个指标旨在作为图像处理工具,无需进行任何 3D 重建即可区分小泡和球体。为了证明我们的无透镜成像平台可用于研究上皮细胞的 3D 组织,我们分析和量化了动态过程的调制,例如 TGF-β1 添加到培养基中后小泡的极性和极化结构的融合。因此,将无透镜显微镜与 3D 细胞培养相结合提供了一种创新工具,可用于在大视场中研究上皮组织形态发生,并阐明正常和癌变的人前列腺细胞中生长、形态发生和分化的调节。此外,这种生物传感器将是一种强大的工具,可用于跟踪癌症进展和评估抗癌药物。

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