| 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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| Dissecting the Rat Mammary Gland: Isolation, Characterization, and Culture of Purified Mammary Epithelial Cells and Fibroblasts
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Author:
Date:
2020-11-20
[Abstract] With the advent of CRISPR-Cas and the ability to easily modify the genome of diverse organisms, rat models are being increasingly developed to interrogate the genetic events underlying mammary development and tumorigenesis. Protocols for the isolation and characterization of mammary epithelial cell subpopulations have been thoroughly developed for mouse and human tissues, yet there is an increasing need for rat-specific protocols. To date, there are no standard protocols for isolating rat mammary epithelial subpopulations. Analyzing changes in the rat mammary hierarchy will help us elucidate the molecular events in breast cancer, the cells of origin for breast cancer subtypes, and the impact of the tumor microenvironment. Here we describe several methods developed for 1) rat mammary ...
[摘要] [摘要]随着CRISPR-Cas的出现以及能够轻松修饰各种生物的基因组的能力,越来越多地开发大鼠模型来询问乳腺发育和肿瘤发生的遗传事件。已经为小鼠和人类组织彻底开发了用于分离和表征乳腺上皮细胞亚群的方案,但是对大鼠特异性方案的需求却在不断增长。迄今为止,还没有用于分离大鼠乳腺上皮亚群的标准方案。分析大鼠乳腺层次的变化将有助于我们阐明乳腺癌中的分子事件,乳腺癌亚型的起源细胞以及肿瘤微环境的影响。在这里,我们描述为1)大鼠乳腺上皮细胞分离开发的几种方法;2)大鼠乳腺成纤维细胞分离;3)培养大鼠乳腺上皮细胞;通过4)流式细胞仪分析和鉴定大鼠乳腺细胞;5)免疫荧光。源自该协议的细胞可用于多种目的,包括RNAseq ,药物研究,功能测定,基因/蛋白质表达分析和图像分析。
[背景]大多数与乳腺有关的研究都是在小鼠模型和人体样品中进行的。然而,由于其具有类似于人的药代动力学特征和乳腺发育,该疾病的大鼠模型正变得越来越流行(Russo等人,1990;Jiunn等人,2008; Smalley等人,2016)。像人类腺癌一样,大鼠乳腺癌也经历组织学发展阶段(Russo等,1990; Singh等,2000),并且是卵巢激素依赖性的(Thompson等,1998; ...
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| Super-resolution Imaging of the T cell Central Supramolecular Signaling Cluster Using Stimulated Emission Depletion Microscopy
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Author:
Date:
2020-11-05
[Abstract] Supramolecular signaling assemblies are of interest for their unique signaling properties. A µm scale signaling assembly, the central supramolecular signaling cluster (cSMAC), forms at the center interface of T cells activated by antigen presenting cells (APC). The adaptor protein linker for activation of T cells (LAT) is a key cSMAC component. The cSMAC has widely been studied using total internal reflection fluorescence microscopy of CD4+ T cells activated by planar APC substitutes. Here we provide a protocol to image the cSMAC in its cellular context at the interface between a T cell and an APC. Super resolution stimulated emission depletion microscopy (STED) was utilized to determine the localization of LAT, that of its active, phosphorylated form and its entire pool. Agonist ...
[摘要] [摘要]超分子信号组装体因其独特的信号传导特性而受到关注。在抗原呈递细胞(APC)激活的T细胞的中心界面处形成一个微米级的信号传导组件,即中央超分子信号簇(cSMAC )。用于激活T细胞(LAT)的衔接子蛋白接头是关键的cSMAC组件。所述CSMAC已被广泛使用的CD4全内反射荧光显微镜研究+由平面APC替代活化的T细胞。在这里,我们提供了一种协议,可以在T细胞和APC之间的接口在其细胞上下文中成像cSMAC 。超分辨率激发发射耗尽显微镜(STED)用于确定LA T的定位,其活性,磷酸化形式及其整个池的位置。在固定和抗体染色之前,将载有激动剂肽的APC与TCR转基因CD4 + T细胞孵育4.5分钟。固定的细胞对在Leica SP8 AOBS共聚焦激光扫描显微镜上使用100x 1.4 NA物镜成像。LAT聚集在多个超分子复合物中,并确定了它们的数量和大小分布。使用此协议,可以量化在T细胞和APC之间的界面在其细胞环境中的cSMAC属性。
[背景] ...
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