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优化视网膜神经节细胞核染色以实现自动细胞计数。

Optimizing retinal ganglion cell nuclear staining for automated cell counting.

机构信息

Department of Ophthalmology, Emory University, 1365B Clifton Road NE, Atlanta, GA, 30322, USA.

Department of Ophthalmology, Emory University, 1365B Clifton Road NE, Atlanta, GA, 30322, USA.

出版信息

Exp Eye Res. 2024 May;242:109881. doi: 10.1016/j.exer.2024.109881. Epub 2024 Mar 28.

Abstract

The retinal ganglion cells (RGCs) serve as the critical pathway for transmitting visual information from the retina to the brain, yet they can be dramatically impacted by diseases such as glaucoma. When investigating disease processes affecting RGCs in mouse models, accurately quantifying affected cells becomes essential. However, the use of pan RGC markers like RBPMS or THY1 presents challenges in accurate total cell counting. While Brn3a serves as a reliable RGC nuclear marker for automated counting, it fails to encompass all RGC subtypes in mice. To address this limitation and enable precise automated counting, our research endeavors to develop a method for labeling nuclei in all RGC subtypes. Investigating RGC subtypes labeled with the nuclear marker POU6F2 revealed that numerous RGCs unlabeled by Brn3a were, in fact, labeled with POU6F2. We hypothesize that using antibodies against both Brn3a and POU6F2 would label virtually all RGC nuclei in the mouse retina. Our experiments confirmed that staining retinas with both markers resulted in the labeling of all RGCs. Additionally, when using the cell body marker RBPMS known to label all mouse RGCs, all RBPMS-labeled cells also exhibited Brn3a or POU6F2 labeling. This combination of Brn3a and POU6F2 antibodies provides a pan-RGC nuclear stain, facilitating accurate automated counting by labeling cell nuclei in the retina.

摘要

视网膜神经节细胞 (RGCs) 是将视觉信息从视网膜传输到大脑的关键途径,但它们会受到青光眼等疾病的严重影响。在研究影响小鼠模型中 RGC 的疾病过程时,准确量化受影响的细胞变得至关重要。然而,使用 RBPMS 或 THY1 等泛 RGC 标志物在准确进行总细胞计数方面存在挑战。虽然 Brn3a 是用于自动计数的可靠 RGC 核标记物,但它无法涵盖小鼠中的所有 RGC 亚型。为了解决这个限制并实现精确的自动计数,我们的研究旨在开发一种标记所有 RGC 亚型核的方法。研究用核标记物 POU6F2 标记的 RGC 亚型表明,许多未被 Brn3a 标记的 RGC 实际上被 POU6F2 标记。我们假设使用 Brn3a 和 POU6F2 的抗体将标记小鼠视网膜中的几乎所有 RGC 核。我们的实验证实,用两种标志物对视网膜进行染色会导致所有 RGC 被标记。此外,当使用已知标记所有小鼠 RGC 的细胞体标记物 RBPMS 时,所有 RBPMS 标记的细胞也表现出 Brn3a 或 POU6F2 标记。Brn3a 和 POU6F2 抗体的这种组合提供了一种泛 RGC 核染色剂,通过标记视网膜中的细胞核,促进准确的自动计数。

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