| Optimized Immunostaining of Embryonic and Early Postnatal Mouse Brain Sections
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Author:
Date:
2021-01-05
[Abstract] The mammalian neocortex, the outer layer of the cerebrum and most recently evolved brain region, is characterized by its unique areal and laminar organization. Distinct cortical layers and areas can be identified by the protein expression of graded transcription factors and molecular determinants that define the identity of different projection neurons. Thus, specific detection and visualization of protein expression is crucial for assessing the identity of neocortical neurons and, more broadly, for understanding early and late developmental mechanisms and function of this complex system. Several immunostaining/immunofluorescence methods exist to detect protein expression. Published protocols vary with regard to subtle details, which may impact the final outcome of the immunofluorescence. ...
[摘要] [摘要]哺乳动物的新皮层是大脑的外层,也是最近进化的大脑区域,其特征在于其独特的区域和层状组织。不同的皮质层和区域可以通过分级转录因子的蛋白质表达和定义不同投射神经元身份的分子决定簇来鉴定。因此,蛋白质表达的特异性检测和可视化对于评估新皮层神经元的身份至关重要,更广泛地来说,对于理解这个复杂系统的早期和晚期发育机制和功能至关重要。一些 存在免疫染色/免疫荧光方法来检测蛋白质表达。已发布的方案在细节方面有所不同,可能会影响免疫荧光的最终结果。在这里,我们提供了详细的协议,适用于低温恒温器薄切片和厚振动切片器薄切片,该协议已成功地开发了针对新皮质发育关键分子的抗体。从早期的技术措施测距的大脑采集到的图像分析和统计,我们包括有关样品包容和每一个细节部分ING,幻灯片存储和旨在减少非特异性背景最佳抗体稀释。在实验室中常规使用的,我们的背景优化的免疫染色协议允许区域的有效检测-和层-独特新皮层投射神经元的特定的分子决定因素。
图形摘要:
优化的小鼠脑切片免疫染色方案的工作流程图。一。一个流程图的不同步骤的优化免疫染色协议薄低温恒温器和厚振动切片。乙。例如,用于在薄冠状免疫染色对SATB2和CTIP2部(20 μ ...
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| Whole-mount Immunohistochemistry of Adult Zebrafish Retina for Advanced Imaging
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Author:
Date:
2020-12-20
[Abstract] Immunohistochemistry is a widely used technique to examine the expression and subcellular localization of proteins. This technique relies on the specificity of antibodies and requires adequate penetration of antibodies into tissues. The latter is especially challenging for thick specimens, such as embryos and other whole-mount preparations. Here we describe an improved method of immunohistochemistry for retinal whole-mount preparations. We report that a cocktail of three reagents, Triton X-100, Tween-20, and DMSO, in blocking and antibody dilution buffers strongly enhances immunolabeling in whole-mount retinas from adult zebrafish. In addition, we establish that in whole retinal tissues, a classic epitope retrieval method, based on citrate buffer, is effective for immunolabeling ...
[摘要] Abstra CT ]免疫组织化学是一种广泛使用的技术来检验表达和蛋白质的亚细胞定位。该技术依赖于抗体的特异性,并且需要抗体充分渗透到组织中。对于厚的标本,例如胚胎和其他整装样品,后者尤其具有挑战性。在这里,我们描述了一种用于视网膜整装制剂的免疫组织化学的改进方法。我们报告说,三种试剂鸡尾酒,曲通X - 封闭和抗体稀释缓冲液中的100,Tween-20和DMSO强烈增强了成年斑马鱼整个视网膜中的免疫标记。此外,我们建立了在整个视网膜组织中,基于柠檬酸盐缓冲液的经典表位检索方法,可以有效地免疫标记膜相关蛋白。总的来说,这种简单的修饰可以对视网膜整装中的蛋白质进行精确且可重复的免疫标记。
[背景]为了理解复杂的生物过程,形态学和组织学分析能够进行切合实际的定性和quantitativ ë接近。免疫组织化学是一种用于可视化细胞内和细胞外蛋白表达和定位的强大技术。尽管常规组织学切片可提供高分辨率的免疫染色蛋白图像,但对3维组织进行切片会导致组织结构保存不佳。在各节中,不容易理解完整的细胞结构和对蛋白质3维分布的完整理解。相反,整装制剂可提供大量3D信息,包括完整的细胞结构以及复杂组织中细胞和分子的空间关系。然而,使免疫组织化学适合与完整组织一起使用通常会导致抗体的渗透性差,导致标记不完全和高度的非特异性背景。
在视网膜,径向M的细胞体ü米勒胶质细胞跨度视网膜的整个厚度(Bringmann等人,2006)。小胶质细胞是中枢神经系统的先天免疫细胞,具有小的细胞体和分叉的过程,分布在整个视网膜实质中(Li等人,2015; ...
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