改进小鼠神经视网膜外植体培养的处理和包埋方案。

Pub Date : 2022-10-12 DOI:10.1080/01478885.2022.2119639
Susan Haller, Rebecca M Marton, Kevin A Marroquin, Eliah R Shamir
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引用次数: 0

摘要

外伤性、遗传性和与年龄有关的视网膜退行性疾病,如视网膜脱离、视网膜色素变性和老年性黄斑变性,都以视网膜神经元不可逆转的丧失为特征。虽然目前的治疗方法旨在防止神经元退化,但还没有治疗方法能在神经元丧失后恢复其功能。培养的小鼠神经视网膜组织外植体可模拟视网膜损伤,并提供一种高通量方法来确定能够再生神经元的实验干预措施。福尔马林固定石蜡包埋(FFPE)制备的小鼠神经视网膜外植体可用于鉴定视网膜各层细胞,以提供暴露于治疗药物后细胞增殖和活性的信息。然而,视网膜外植体易碎,尤其是在体外培养后,样本处理和 FFPE 处理步骤会导致组织损失和损坏。易碎性还阻碍了在培养后将样本一分为二,以显示多个感兴趣区进行分析。我们开发了一种使用 HistogelTM 处理和包埋培养小鼠神经视网膜外植体的样本处理和包埋技术,该技术结合了后处理修剪步骤,可消除组织损失,增加视网膜横截面的代表性,并在一张载玻片上捕获近端和中心视网膜,便于分析受神经营养化合物影响的外植体。
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Improved handling and embedding schemes for cultured murine neuroretinal explants.

Traumatic, inherited, and age-related degenerative diseases of the retina, such as retinal detachment, retinitis pigmentosa, and age-related macular degeneration, are characterized by the irreversible loss of retinal neurons. While current treatments aim to prevent neuronal degeneration, there are no available treatments to restore neurons after loss. Cultured murine neuroretinal tissue explants model retinal injury and offer a high throughput approach to identify experimental interventions capable of regenerating neurons. Formalin-fixed paraffin-embedded (FFPE) preparations of murine neuroretinal explants can be used to identify cells throughout the retinal layers to provide information on proliferation and activity following exposure to therapeutics. However, retinal explants are friable, particularly after ex vivo culture, sample handling and FFPE processing steps can result in tissue loss and damage. Friability also prohibits bisecting samples post-culture to display more than one region of interest for analysis. We developed a sample handling and embedding technique for cultured murine neuroretinal explants using HistogelTM in combination with a post-processing trimming step that eliminates tissue loss, increases cross-sectional retinal representation, and captures proximal and central retina on one slide to facilitate analysis of explants subjected to neurotrophic compounds.

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